9 research outputs found
Electrification properties of human body for walking-motion
- Author
- Publication venue
- 'Wiley'
- Publication date
- 01/01/1991
- Field of study
Life-cycle-cost methodology for the Space Station propulsion system
- Author
- Publication venue
- 'American Institute of Aeronautics and Astronautics (AIAA)'
- Publication date
- Field of study
A measurement method for visualization of static electricity distribution
- Author
- Publication venue
- 'Wiley'
- Publication date
- 01/01/1989
- Field of study
Ion-Imprinted Polymer-Based Receptors for Sensitive and Selective Detection of Mercury Ions in Aqueous Environment
- Author
- Asghar Nazia (Sulaiman Bin Abdullah Aba Al-Khail-Centre for Interdisciplinary Research in Basic Sciences, Faculty of Basic and Applied Sciences, International Islamic University)
- Han Dongxue (Engineering Laboratory for Modern Analytical Techniques, Changchun Institute of Applied Chemistry, Chinese Academy of Science)
- Latif Usman (Interdisciplinary Research Centre in Biomedical Materials (IRCBM), COMSATS Institute of Information Technology (CIIT))
- Lieberzeit Peter A. (Department of Physical Chemistry, Faculty of Chemistry, University of Vienna)
- Mustafa Ghulam (Department of Physical Chemistry, Faculty of Chemistry, University of Vienna)
- Ullah Ikram (Sulaiman Bin Abdullah Aba Al-Khail-Centre for Interdisciplinary Research in Basic Sciences, Faculty of Basic and Applied Sciences, International Islamic University)
- Yasinzai Maimoona (Sulaiman Bin Abdullah Aba Al-Khail-Centre for Interdisciplinary Research in Basic Sciences, Faculty of Basic and Applied Sciences, International Islamic University)
- Zahid Muhammad (Department of Chemistry, University of Agriculture, Faisalabad)
- Publication venue
- 'Hindawi Limited'
- Publication date
- 01/01/2018
- Field of study
Interdigital electrodes (IDE) coated with ion-imprinted polymers (IIP) as recognition materials have been tested for screening and ion quantification. For screening of receptors, three polymer systems based on styrene (Sty), N-vinylpyrrolidone (NVP), and Sty-co-NVP were examined to identify an efficient recognition system for mercury ions in an aqueous environment. Results showed that all these polymeric systems can detect analyte even in very low concentration, that is, 10 ppm. Ion-imprinted polystyrene system proved to be an ideal receptor for detecting mercury ions in solution with a detection limit of 2 ppm. The sensitivity of ion-imprinted copolymeric system was further enhanced by making its composite with graphene oxide, and estimated detection limit of composite system was around 1 ppm. Ion- imprinted Sty-co-NVP graphene composite-based sensor system exhibits 2 to 5 times higher sensor response towards templated analyte in comparison to other polymer-based sensor systems. Moreover, the composite-based sensor shows very low or negligible response to competing metal ions with similar or different oxidation states such as Zn, Mg, Na, and As metal ions.© 2018 Maimoona Yasinzai et a
On-Probe Digestion of Bacterial Proteins for MALDI-MS
- Author
- Analytical Microbiology Methods A.
- Anhalt J. P.
- Arnold R. J.
- Arnold R. J.
- Arnold R. J.
- Basile F.
- Beardsley R. L.
- Beardsley R. L.
- Brancia F. L.
- Büttner K.
- Chong B. E.
- Claydon M. A.
- Current Protocols
- Dai Y.
- Dogruel D.
- Domin M. A.
- Eng J. K.
- Ericsson D.
- Fountoulakis
- Gabel D.
- Gas Chromatography
- Goa J.
- Gobom J.
- Henzel W. J.
- Holland R. D.
- Holland R. D.
- Holland R. D.
- Immobilized Enzyme Principles
- James P.
- Jensen O. N.
- Karty J. A.
- Keough T.
- Kinter M.
- Krause E.
- Krishnamurthy T.
- Krishnamurthy T.
- Krishnamurthy T.
- Krishnamurthy T.
- Larsson T.
- Lay J. O.
- Loboda A. V.
- Locke S.
- Marie G.
- Medzihradszky K. F.
- Methods
- Modern Techniques
- Neidhardt F. C.
- Nelson R. W.
- Okpodu C. M.
- Patterson S. D.
- Pedersen S.
- Pucci P.
- Quadroni M.
- Rasmussen H. H.
- Rice R. H.
- Roepstorff P.
- Saenz A. J.
- Schuerenberg M.
- Shevchenko A.
- Shevchenko A.
- Stead D. E.
- Tischer W.
- van Baar B. L. M.
- Wall D. B.
- Wang C.
- Wang Z.
- Zoungrana T.
- Publication venue
- 'American Chemical Society (ACS)'
- Publication date
- Field of study
Variable Neighborhood Search for Extremal Graphs. 2. Finding Graphs with Extremal Energy
- Author
- Babić D.
- Beasley J. E
- Berge C.
- Boese K. D.
- Brimberg J.
- Caporossi G.
- Cioslowski J
- Cioslowski J
- Cioslowski J
- Cioslowski J.
- Cvetković D.
- Cvetković D.
- Cvetković D.
- Cvetković D.
- Dias J. R.
- Dorigo M.
- Dragoš Cvetković
- du Merle O.
- Fajtlowicz S
- Fajtlowicz S.
- Feo T.
- Fisher R. A
- Gendreau M.
- Gendreau M.
- Gilles Caporossi
- Glover F.
- Glover F.
- Glover F.
- Glover F.
- Glover F.
- Graovac A.
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I
- Gutman I.
- Gutman I.
- Gutman I.
- Gutman I.
- Hansen P.
- Hansen P.
- Hansen P.
- Hansen P.
- Holland J. H.
- Ivan Gutman
- Kirkpatrick S.
- Lin S
- McClelland B. J
- Mladenović N.
- Modern Heuristic Techniques
- Osman I. H.
- Papadimitriou C. H.
- Pierre Hansen
- Rolland E.
- Rosing K. E
- Shearer W.
- Tang A.
- Thabet N.
- Trinajstić N.
- Türker L
- Türker L
- Türker L
- Türker L
- Voss S
- Whitaker R
- Publication venue
- 'American Chemical Society (ACS)'
- Publication date
- Field of study
Infrared spectrometry
- Author
- (A3) Determination of the Phenyl Group in Organosilicon Compounds Kreshkov, A. P., Ponomarev, V. S., Kirichenko, E. A., Damaeva, A. D., Shaplna, T. N„ Plast. Massy, 49-50
- (A39) JR Spectroscopic Method for Determining Nitro Group Impurities in Aromatic Diisocyanates Caraculacu, Adrian, Barba lata, Alla, Grigoriu, George E.
- (A53) Determination of the Hydroxyl Number of Polyurethane Prepolymers with Terminal Hydroxyl Groups
- (A55) Quantitative Determination of Isocyanurate Groups in Polyurethane Foam Putnins, E., Putnina, V., Karlivans, V., Latv. PSR Zinat. Akad. VestÃs, Kim. Ser., 367-8
- (A64) Infrared and Ultraviolet Spectroscopic Determination of the Composition of Groups of Compounds in Lubricating Oils of High Sulfur Content Belafi-Rethy, Katalin
- (A67) Determination of Hydroxyl Group Content in Cottonseed Oil Yunusova, S. G., Kantsepol'skaya, F. M., Kristallovich, E. L, Glushenkova, A. I., Umarov, A. U., Khim. Prir. Soedin., 300-3
- (B19) Atlas of Long-Wave Infrared Absorption Spectra of Complex Group III-V Metal and Uranyl Fluorides Kharitonov, Yu. Ya„ Davidovich, R. L., Kostin, V. I., (Nauka
- (B29) The Coblentz Society Desk Book of Infrared Spectra Graver, Clara D.
- (B30) NATO Advanced Study Institute Series Vol.
- (B37) NATO Advanced Study Institutes Series C
- (B4) Proceedings of the Society of Photo-Optical Instrumentation Engineers Vol.
- (B6) International Center of Information on Antibiotics Inf, Bull. 16, Pt.
- (C37) Separation of the Raman or JR Lines of a Group Constituting Several Superimposed Lines Fahys, B., Rondot, D., Mignot, J
- (L9) Broadly Tunable Pulsed Laser for the Infrared Using Color Centers
- (M17) Infrared Studies of some Analgesic Group Commercial Tablet Samples Lai, B. B„ Varma
- (P80) State of Water in Cellulose Acetate Membranes Toprak, Chris, Agar, John N., Falk, Michael
- (R151) Some Wider Uses of Group Frequencies Bellamy, L. J.
- (R25) Fourier Transform Infrared: Applications to National Technical Problems Ferraro, John R., Basile, Louis J.
- (R28) Characteristic Vibrational Frequencies of Compounds Containing Main-Group Elements Gans, P.
- (T116) High Resolution Study of the Group V Impurities Absorption in Silicon Pajot, B., Kauppinen, J., Anttila, R.
- (T37) Infrared Group
- Absorption Effects Naylor
- Absorption Infrared Spectroscopy Pritchard
- Absorption Scanning Matare
- Absorption Spectra Lin
- Absorption Spectrum Chang
- Absorption System Using Topographic
- Actinides Goffart
- Activation
- Activation Analysis Hoffmann
- Adsorbed Species Dignam
- Air Dispersion Filters Vereshchagin
- Airplane Appel
- Alkali Metal Methacrylates III
- Alkyds Frazee
- Aluminum Single Crystals Mertens
- Ambient Temperature Griffiths
- Amorphous Semiconductors Brodsky
- An Audio-Visual Program Maas
- An Infrared Method Iyer
- An Iterative
- Analysis Dally
- Analytical Chemistry Geick
- Analytical Chemistry Hirschfeld
- Analytical Laboratory Manocha
- Analyzer Lang
- Analyzers Refine Process Control Jones
- Anesthetic Chemicals Zeller
- Anharmonic Vibrations Durig
- Anisotropic Branched Polyethylene
- Answer Box'Approach Obremski
- Application Chaney
- Applications
- Applications Carlsson
- Applied Infrared Spectroscopy
- Aragonite-Calcite Transformation Rao
- Aromatic Chlorocarbons Ballester
- Aromatic Polyamide Fibers King
- Aromatic Polyamides Shablygin
- Artifact Strassburger
- Atactic Polystyrene Enns
- Atactic Polystyrene Jasse
- Atmosphere
- Atmosphere Cappellani
- Atmosphere Lukshin
- Atmosphere Maker
- Atmospheric Formaldehyde Marche
- Atmospheric Halocarbon Monitoring Techniques Rasmussen
- Atmospheric Reactions Niki
- Atmospheric Sensing Restelli
- Atmospheric Trace Constituents I.
- Atmospheric Trace Gases Sebacher
- Attenuated Total Internal Reflection Dorofeev
- Attenuated Total Reflection Crawford
- Attenuated Total Reflection Escolar
- Automated Interpretation Heite
- Avail
- Band Filters Chamberlain
- Band Resolution V.
- Bandpass Mesh Interference Filters Holah
- Barley Allison
- Based File Searching Powell
- Biological Interest Vergoten
- Biological Macromolecules D'Esposito
- Biological Membranes A
- Block Copolymers West
- Blown Polypropylene Films Bottin
- Boehm S.
- Buback Z. Naturforsch.
- Bulk Materials Hass
- Calcium Fluoride Surfaces Palik
- Calculating Molecular Vibrations Dement'ev
- Calibration Curves I.
- Carbon Dioxide Determination Paul
- Carbon Dioxide Huddleston
- Carbon Dioxide Measurements Bischof
- Carbon Dioxide Parkinson
- Carbon Painter
- Carbon Zawadzkl
- Cellulose Vakulyuk
- Cement De Luxan
- Cement Manufacture Ghosh
- Chain Structure Dobos
- Chemical Analysis Butler
- Chemistry Griffiths
- Chenery D. H.
- Chloramphenicol Namigohar
- Chloroform Halothane
- Chromatograms Hanna
- Chromatography
- Chromatography Versaud
- Chrtins Galat
- Coal A Novel
- Coal Bartle
- Coker Gasoline Distillate Hanna
- Column Eluates Vldrlne
- Commercial Dlvlnylbenzene Witt
- Compensational Spectra Baumgarten
- Complex Organic Mixtures Lynch
- Component Metals Mertens
- Composite Matrix Resins May
- Compound Identification System Hanna
- Compounds Von Eijk
- Computer Assisted Vibrational Spectroscopy Coleman
- Computer-Readable Form Penca
- Conservation I. General Principles
- Contaminants Using Grating Spectrometers Obremski
- Conventional Gas Chromatograph Shaps
- Copper Light Pipes Griffiths
- Correlation Functions Lester
- Correlation Infrared Process Analyzer Garfunkel
- Correlation Spectroscopy Wiens
- Cost Infrared Data Systems Coates
- Counter Imaging System Krasutsky
- Cryogenic Solutions Freund
- Crystalline Polymers Tadakoro
- Crystals Hexter
- Crystals Vakulenko
- Cyclic Loading Leksovskll
- Dairy Laboratory Hoffer
- Danielsson Bengt
- Data Collections A. Condensed Phases
- Defect Polymer Solids Loginov
- der Tensile Loads Gudim
- Desiccant Samish
- Detailed Intensity Information Rasmussen
- Detection Claspy
- Detection Kreuzer
- Detection Pao
- Detector Talmi
- Deuterated Lipids Smith
- Diameter Tungsten Wire Mok
- Diamond Anvil Cell Klaeboe
- Differential Infrared Spectrophotometry Naqvi
- Differential Infrared Spectroscopy Rousseaux
- Diketones Valiere
- Dimov N.
- Dioxide Hirano
- Dispersive Fourier Transform Spectrometry Birch
- Dispersive Fourier Transform Spectroscopy Birch
- Dye Laser Hartig
- Dynamic Infrared Studies I.
- Effects In Difference Spectra Aliara
- Effluents Curbelo
- Effluents Mattson
- Electric Field Courtois
- Electrical Insulating Materials Blahnlk
- Electrolytic Extraction-Infrared Spectrometry Yoshida
- Electron Energy Loss Spectroscopy Froitzheim
- Elevated Temperatures Terlemezyan
- Ellipsometric Method Batavin
- Emission Measurements Baumgarten
- Enamel C
- Environmental Analysis Griffiths
- Environmental Protection Schunck
- Epoxy Resin Formulations Hagnauer
- Ethylene Fukumi
- External Calibration Koenig
- Far Infrared Absorption Spectra Tateyama
- Far Infrared Astronomical Observations Houck
- Far Infrared Fourier Spectroscopy Kitade
- Far Infrared Kilp
- Far Infrared Radostitz
- Far Infrared Spectroscopy K'rtade
- Far Infrared Spectroscopy Otsuka
- Far-Infrared Interferometry Durig
- Farhat Shamim
- Fat Protein
- Fiber-Forming Polymers Marupov
- Fibers
- Fibrous Materials Aronson
- Films Stas'kov
- Filter Correlation Methods Gryvnak
- Flame-Retardant Fabrics McCall
- Fleming John
- Flip Raman Laser Smith
- Fluorescence Spectroscopy Gottardi
- Forensic Analysis Griffiths
- Forensic Science Grieve
- Formulation Quality Control Obremski
- Fourier Air Monitor Smith
- Fourier Spectroscopy Fonck
- Fourier Transform Infrared
- Fourier Transform Infrared Green
- Fourier Transform Infrared Griffiths
- Fourier Transform Infrared Spectra Antoon
- Fourier Transform Infrared Spectrometer Baumgarten
- Fourier Transform Infrared Spectrometer Kuehl
- Fourier Transform Infrared Spectrometer Kuehl
- Fourier Transform Infrared Spectrometer Mattson
- Fourier Transform Infrared Spectrometers Anderson
- Fourier Transform Infrared Spectrometry
- Fourier Transform Infrared Spectrometry Grieble
- Fourier Transform Infrared Spectrometry Hembree
- Fourier Transform Infrared Spectrometry Hirschfeld
- Fourier Transform Infrared Spectrometry Hirschfeld
- Fourier Transform Infrared Spectrometry Hirschfeld
- Fourier Transform Infrared Spectrometry Lowry
- Fourier Transform Infrared Spectrometry Matsul
- Fourier Transform Infrared Spectrometry Taylor
- Fourier Transform Infrared Spectroscopy
- Fourier Transform Infrared Spectroscopy
- Fourier Transform Infrared Spectroscopy D'Esposito
- Fourier Transform Infrared Spectroscopy Genzel
- Fourier Transform Infrared Spectroscopy Ishida
- Fourier Transform Infrared Spectroscopy Sprouse
- Fourier Transform Infrared Spectroscopy Wehry
- Fourier Transform Infrared System Krishnan
- Fourier Transform Spectrometer Scanlon
- Fourier Transform Spectroscopy Cooper
- Fourier Transform Spectroscopy Larson
- Fourier Transform Spectroscopy Ñafie
- Fractionated Coal Liquids Painter
- Free Carrier Infrared Absorption Schwartz
- Free Radicals Hester
- Fuels Spectroscopic
- Gain Ranging Hirschfeld
- Gas Chromatographic Peaks Delaney
- Gas Chromatographic Peaks Wall
- Gas Chromatography Delaney
- Gas Chromatography Delaney
- Gas Chromatography Effluents Clark
- Gas-Chromatographic Methods Sklyar
- Gaseous Pollutants Laurent
- Gel Permeation Chromatography Birley
- General Concepts Buechi
- Germanium Compounds Nauka
- Glass Fiber Ishida
- Glass Surfaces Fink
- Glycerides Using Infrared Detection Parris
- Gravimetric Study Careri
- Harmonic Generator Zuidberg
- Hemiellipsoidal Mirror Infrared Reflectometer Wood
- Hemocyanins Carbon
- Hemoglobin Alben
- Hemoglobin Alben
- Heterodyne Interferometer Kristal
- Heterodyne Spectrometers Betz
- High Grade Quartz Lipson
- High Magnetic Fields Kotthaus
- High Pressure Obriot
- High Pressures Ferraro
- High Sensitivity Huber-Waelchll
- High Spectral Resolution Spaenkuch
- High Temperatures Hattori
- High-Power CW
- High-Pressure Polyethylene Stas'kov
- Highest Possible Performance Seeley
- Hot Teflon Coating A
- Hydrated Films Heathman
- Hydrogen Bonding A Semi-Quantitative
- Important Pesticides Giang
- In Loaded Composite Material Regel
- In Melt Crystallized Polyethylene Rueda
- In Polyethylene Rueda
- Inclusion Compounds Davies
- Induced Cholesteric Solutions Korte
- Industrial Analysis Peitscher
- Industrial Aqueous Effluents Kotarski
- Industrial Carbonylation Reactions Hagen
- Industrial Infrared Analysis Grasselli
- Information Bulletin No.
- Information Theory Dupuis
- Infrared
- Infrared Absorption
- Infrared Absorption A Review
- Infrared Absorption Band Shapes II.
- Infrared Absorption Band Shapes Methods
- Infrared Absorption Gauge Edgar
- Infrared Absorption Photometry Terashima
- Infrared Analysis White
- Infrared Applications Reich
- Infrared Astronomy Beckman
- Infrared Data Bases Fisk
- Infrared Data Files Penca
- Infrared Detection Hwang
- Infrared Detectors Levinstein
- Infrared Diffuse Reflectance Spectrometer Niwa
- Infrared Emission
- Infrared Emission Spectroscopy Bates
- Infrared Emission Spectroscopy Lauer
- Infrared Emission Spectroscopy Maulhardt
- Infrared Emission Spectroscopy Pham Van
- Infrared Extinction Using Lidar Murray
- Infrared Fourier Transform Spectrometry
- Infrared Fourier Transform• Spectrometry Fuller
- Infrared Heavy-Water Instruments
- Infrared Heterodyne Radiometer Davies
- Infrared Heterodyne Spectrometer Abbas
- Infrared Heterodyne Spectroscopy Abbas
- Infrared Heterodyne Spectroscopy Abbas
- Infrared Intensities Steele
- Infrared Interference Morosanu
- Infrared Lees
- Infrared Matrix Isolation Spectrometry Reedy
- Infrared Measurements Greve
- Infrared Methods Black
- Infrared Methods Taleb-Bendiab
- Infrared Moorwood
- Infrared Photography Using Semiconductors Pinson
- Infrared Polarization Measurements Krishnan
- Infrared Raman Sources De Martino
- Infrared Reflectance Shenk
- Infrared Region Vol
- Infrared Schaber
- Infrared Schroeder
- Infrared Spectra Clark
- Infrared Spectra De Biasi
- Infrared Spectra Eckert
- Infrared Spectra Schaarschmidt
- Infrared Spectra Simons
- Infrared Spectra Veszpremi
- Infrared Spectra Zupan
- Infrared Spectral Data Clerc
- Infrared Spectral Region Kossova
- Infrared Spectral Studies Balllntine
- Infrared Spectrometry Adam
- Infrared Spectrometry Bessler
- Infrared Spectrometry Cyr
- Infrared Spectrometry Paxson
- Infrared Spectrometry Rethy
- Infrared Spectrometry Vance
- Infrared Spectrophotometry AM B
- Infrared Spectrophotometry Bondoli
- Infrared Spectrophotometry Carbon Monoxide
- Infrared Spectrophotometry Hirayama
- Infrared Spectrophotometry Namigohar
- Infrared Spectrophotometry Ohmacht
- Infrared Spectrophotometry Trinler
- Infrared Spectroscopic
- Infrared Spectroscopy A Monograph
- Infrared Spectroscopy Andrews
- Infrared Spectroscopy Ataman
- Infrared Spectroscopy Casy
- Infrared Spectroscopy Cleverley
- Infrared Spectroscopy Cook
- Infrared Spectroscopy Endrle
- Infrared Spectroscopy Estep-Barnes
- Infrared Spectroscopy Fultz
- Infrared Spectroscopy Goldfarb
- Infrared Spectroscopy Golfier
- Infrared Spectroscopy Hlavay
- Infrared Spectroscopy Krejcar
- Infrared Spectroscopy Liquier
- Infrared Spectroscopy McRae
- Infrared Spectroscopy Mizrahi
- Infrared Spectroscopy Mori
- Infrared Spectroscopy Reed
- Infrared Spectroscopy Rollins
- Infrared Spectroscopy Rudnaya
- Infrared Spectroscopy Schnepel
- Infrared Spectroscopy Using Preconcentration Separation
- Infrared Spectroscopy Zuzi
- Infrared Studies Schneider
- Infrared Transmission PÃnnow
- Infrared Truett
- Infrared Vibrational Circular Dichroism Ñafie
- Inorganic Chemistry Farmer
- Instrumental Methods Sachdev
- Instrumentation Measurement Techniques
- Insulating Film Thickness Measurement Hlnze
- Intensity Data Tanabe
- Interatomic Bonds In Polymers Voroboyev
- Interfering Gases Perlmutter
- Interferograms Small
- Interferometric Spectroscopy Chamberlain
- Internal Reflection Spectroscopy Sung
- Internal-Reflection Spectroscopy Holm
- Internal-Reflection Spectroscopy Palik
- Interpretation Sheppard
- Intrinsic Semiconductors Longo
- Inversion
- Ion Clustering In Ionomers Rouse
- Ionic Crystals De Wette
- Ionomer Clustering Rouse
- Iqbal Z.
- Isotactlc Polystyrene Painter
- Janicka K.
- Kuiper Airborne Observatory Harvey
- Kupecek P.
- Laboratory Industry
- Landa Isaac
- Lapse Infrared Spectroscopy Hartshorn
- Laser Double-Beam Spectrometer Dubs
- Laser Raman Spectroscopy Srivastava
- Lasers Jones
- Layered Materials Wieting
- Lead Alloys Pujade-Renaud
- Leg Wire Identification Kopec
- Ligands Davidson
- Ligands Gases
- Light-Pipe Type Hansen
- Liquid Argon Solution Jeannotte
- Liquid Crystals I. Surface-Induced
- Liquid Ionization Chamber Media Gruhn
- Liquid Substances Shevchuk
- Liquids Clarke
- Liquids Kanstad
- Long-Path Automatic
- Low Carbon Dioxide Concentrations Bingham
- Low Temperature Infrared Spectrometry Carreau
- Lung Surfactant Krishnan
- Macromolecules Coleman
- Magic Brown
- Matrix Isolation Spectroscopy Mamantov
- Measuring Infrared Emissivity Emilsson
- Meat Products I. Plotting
- Mechanical Measurements I. The
- Mechanical Measurements The
- Mechanical Treatment Terlemezyan
- Medium Rings Rounds
- Melt Extrusion Penwell
- Metal Carbonyls Kettle
- Metal Carbonyls Mauro
- Metal Nucleic Acid Systems Theophanides
- Metal Substrates Aliara
- Metal Surfaces Kanstad
- Metal-Ligand Bond Cheremisina
- Metals Boerio
- Meteor Satellites Pakamov
- Methane Baumgartner
- Methane Sebacher
- Methanol Choppin
- Methods Gribov
- Micro Paint Analysis Audette
- Microcrystalline Cellulose III
- Micrometeorologlcal Studies Daoo
- Middle Infrared Spectroscopic Observations Larson
- Milk Industry Laboratories Hoffer
- Millimeter Waves Vol
- Mineralogist Dietrich
- Minerals Rossman
- Mixtures Lin
- Mixtures Namigohar
- Mixtures Rasmussen
- Modern Infrared Technology Schwickardi
- Molecular Air Pollutants Mooradian
- Molecular Crystals Schrader
- Molecular Fragments Dement'ev
- Molecular Motions Perrot
- Molecular Spectra Gribov
- Molecular Spectra Melkozerova
- Molecular Spectra Serov
- Molecular Spectroscopy
- Molecular Structure
- Molecular Vibrations Koptev
- Molten Sulfur Startsev
- Molybdenum Gratton
- Monitoring Acrylonitrile Jacobs
- Monitoring Chemical Processes Jones
- Monodisperse Aerosols Schroeder
- Monomolecular Layers Chollet
- Multi-Component Multi-Point
- Multicomponent Acrylic Polymers Tomescu
- Mycobacterium Paraffinicum Cells Gusev
- Natural Membranes Cameron
- Natural Quartz Crystals Komov
- Near Infrared Landa
- Near Infrared Procedures Miller
- Near Infrared Reflectance Instrumentation Rotolo
- Near Infrared Region Vechkasov
- Near-Infrared Reflectance Rubenthaler
- Near-Infrared Region Adams
- New Analytical Methods Optoacoustical
- New Technique Bethune
- Nickel Faces Bertolini
- Nitrogen Dioxide Measurements Drummond
- Nitrous
- Nobbs J. H.
- Noninvasive Infrared
- Number Optics Kauppinen
- O'Keefe David H
- Oblique Phonons Freeh
- Oil Identification Adinoff
- Oils Verges
- Ointments Danielak
- Operating Junction Devices White
- Optical Method Malyutenko
- Opto-Acoustic Spectroscopy
- Optoacoustic Spectroscopy Kelley
- Organic
- Organic Compounds Clerc
- Organic Compounds Sasaki
- Organophosphorus Compounds Shagidullin
- Oriented Chemical Information System Zupan
- Oxygen Chance
- Oyster Shells Ramaswamy
- Ozone High Resolution
- Partially-Known Composition Zyat'kov
- Particulate Compounds
- Pectic Substances Filippov
- Performance Liquid Chromatography Sebenik
- Performance Potential Bourne
- Petroleum
- Pharmaceuticals Brlckell
- Phenol Alkylation Products Perov
- Photomechanical Processes Saidov
- Pitch Ruede
- Planetary Atmospheres Fink
- Plastics Analysis Vol
- Plastics Infrared Spectrophotometric
- Pollution Patel
- Polyacrylonitrile Coleman
- Polyamlc Acids A. N.
- Polyatomic Molecules Blanke
- Polyatomic Molecules Gribov
- Polybutadiene Gemmer
- Polychloroprenes Accentuation
- Polychloropropenes Structural
- Polycrystalline Silver Halides Garfunkel
- Polydimethylsiloxane Membranes Kennedy
- Polyesterimlde Resins Singh
- Polyethylene Barnes
- Polyethylene Hart
- Polyethylene Melkumov
- Polyethylene Painter
- Polyethylene The
- Polymer Blends I.
- Polymer Blends II
- Polymer Spectroscopy Brames
- Polymer Systems Antoon
- Polymer Systems Koenig
- Polymeric Materials Coleman
- Polymers A Review
- Polymers Containing Benzene Rings
- Polymers Gribov
- Polymers Loginov
- Polymers Panov
- Polymers Using Vibrational Spectroscopy Jasse
- Polymers Wool
- Polymethylene Chain Snyder
- Polypeptides Peticolas
- Polypropylene Blackwell
- Polypropylene Painter
- Polystyrene Film Polystyrene
- Polystyrene Film Polystyrene
- Polyurethane Block Polymers Srichatraplmuk
- Porous Silica Interface Ishida
- Porphyrins Alben
- Predictions Ackerman
- Pressure
- Pressure Infrared Interferometry Lauer
- Prism Kaiser
- Problems Involved Hirschfeld
- Propantheline Bromide Brannon
- Propylene Copolymers Toader
- Proteins Painter
- Pulse Breeding Programs Williams
- Quality
- Quality
- Quality Assurance McAllister
- Quartz Kaolin
- Quartz Production Kurashige
- Quartz Surfaces Ershova
- Radiation Using Harmonic Generation Huyben
- Raman Lasers Grasyuk
- Raman Optical Activity Ñafie
- Raman Spectroscopy Vol
- Raman Spectroscopy Vol
- Raman Spectroscopy Whalley
- Rapid Scan Fourier Spectroscopy Busse
- Ray Diffractometry Raina
- Ray Scattering Kuepper
- Ray Structure Analysis Steger
- Red Gas Analysis Hauck
- Reference Data Dupuis
- Reflection Spectroscopy
- Reinforced Plastics Chmel
- Related Species Burdett
- Remote
- Resolved Infrared Spectral Photography Bethune
- Resonance Absorption Gerlach
- Respirable Dust Heidermanns
- Retrieval Purposes Dupuis
- Robert S. McDonald
- Rubber Osland
- Rubidium Vapor Nlay
- Saferstein Richard
- Sapphire Cell Infrared Spectrophotometry Read
- Sea Water Kantin
- Sedimented Substances Mineral Oil
- Seeley J. S.
- Segmented Polyurethanes Fourier Transform JR
- Selected Organic Solvents Barbetta
- Semiconductors Gopal
- Semiconductors Stradling
- Semiconductors Weisbuch
- Semiconductors White
- Silicon Containing Oxygen Sari
- Silicon Jastrzebski
- Silicon Schroder
- Silicone Localization
- Single Beam Infrared Spectrometer Syrjala
- Single Crystals Adams
- Small Molecules Lehmann
- Small Ring Molecules Carreira
- Small Strains Jansson
- Soda-Treated Cotton Ferrus
- Sodium Nitrite Solutions Loginov
- Sodium Vapors Solomatin
- Soils Hlavay
- Solid Adsorption Studies Ramamoorthy
- Solid State Analysis Steger
- Solids Baraldl
- Solids Durig
- Solution Coates
- Solution Vincent-Geisse
- Some Practical Considerations Smith
- Source Emissions Herget
- Space Science Library Vol
- Spacelab Bonetti
- Spacelab Witt
- Specialist Periodical Reports
- Specialist Periodical Reports
- Specialist Periodical Reports
- Specialist Periodical Reports
- Spectra
- Spectra Using Pattern Recognition Comerford
- Spectral Data Goehner
- Spectral Infrared Experiment Nadile
- Spectral Range Balashov
- Spectrally Varying Experiments Anderson
- Spectrofluorimetric Methods Ovsepyan
- Spectrometric Method Kempe
- Spectrophotometry Weitkamp
- Spectroscopic Method Lopatkina
- Spectroscopic Method Saidov
- Spectroscopic Method Slukin
- Spectroscopic Surface Studies Foerster
- Spectroscopic Techniques Ward
- Spectroscopy Agibalova
- Spectroscopy Bartlck
- Spectroscopy Benedetti
- Spectroscopy Falzi
- Spectroscopy Grigorovich
- Spectroscopy Hellmann
- Spectroscopy Hellmann
- Spectroscopy Ishida
- Spectroscopy Kellner
- Spectroscopy Kofman
- Spectroscopy Ockman
- Spectroscopy Sackett
- Spectroscopy Siesler
- Spectroscopy Wagner
- Spin-Flip Laser Smith
- Spots Heavy Water Leaks Anon
- Sprays MachÃn
- Stable Isotopes Carbon
- Stainless Steel Wletlng
- Stambaugh B.
- Standard Addition Selective Subtraction
- State Physical Infrared Imaging Walther
- Stratosphere Girard
- Stratospheric Composition I. The Balloon
- Stress Gafurov
- Stressed Polymer Compounds Gabaraeva
- Structure Vol
- Studying Complex Biological Systems Gendreau
- Styrene-Vinylacetate Copolymers Ebdon
- Submillimeter Region Sakai
- Submillimeter Wavelength Pradere
- Subway Air Trattner
- Sulfadimethoxine Using Infrared Spectroscopy Sukhomlinov
- Sulfur Trioxide Majkowski
- Supposed Longwave Limit Seeley
- Surface Analysis I.
- Surface Chemistry Ibach
- Surface Damaged Crystals Nichols
- Surface Electromagnetic Wave Spectroscopy Chabal
- Surface Studies Fedyk
- Surface Studies Jakobsen
- Surface Vibrations Andersson
- Surface-Related Effects Nordal
- Surfaces Palik
- Surfactants Kunkel
- Synchrotron Radiation Lagarde
- Synthetic Atmospheres Tuazon
- Synthetic Fibers Klyushnik
- System Coffey
- System Using Heterodyne Detection Koh
- System Using Heterodyne Detection Pandey
- Tablets Infrared Spectroscopy
- Technical-Grade Dimethyl
- Technique Adrian
- Temperature Thermal Detection Scheme Bailey
- Tetrachloride Extraction-Infrared Spectrophotometry Yamaguchi
- Tetrachloride In Chlorendic Anhydride Fatkullina
- The Experimental Viewpoint Stephens
- The Suspension Procedure Supplementary Sample
- Thionyl Chloride Cells Geronov
- Three Membered Ring Compounds Wurrey
- Three Phase Model Melamies
- Total Body Water Using Infrared
- Total Ozone Prior
- Toxic Dusts Collected
- Trace Gas Analysis Hanst
- Trace Organic Gases Sweger
- Transform Infrared Spectroscopy Applications Erickson
- Transient Systems Durana
- Transients Mantz
- Transition-Element Compounds Goldstein
- Transmission Spectroscopy Penninger
- Trout Ascoll
- Tunable Acousto-Optic Filter Chang
- Tunable Diode Lasers Butler
- Tunable Infrared Lasers Pidgeon
- Tunable Lasers McDowell
- Twisted Infrared Metal Waveguides Garmlre
- Ultrahigh Vacuum Systems Wierenga
- Ultraviolet Horlick
- Undergraduate Curriculum Polyethylene Chain
- Unlaxially Oriented Atactic Polystyrene Jasse
- Unsaturated Hydrocarbons Rang
- Unusual Dextrans Part IX
- Upper Atmosphere Mankin
- Urinary Calculi Ohmacht
- Urinary Stones Klee
- Urinary Stones Sagebiel
- Using Far-Infrared Spectroscopy Rebours
- Using Infrared Absorption Brice
- Using Infrared Frequency Shifts Clark
- Using Infrared Laser Spectroscopy Davies
- Using Nonlinear Optical Upconversion Krishnan
- Using Nonlinear Optical Upconversion Krishnan
- Using Tunable Diode Lasers
- Using Tunable Semiconductor Diodes Kim
- Vacuum Kydd
- Vapor Phase Infrared Spectrophotometry Uden
- ver Long Atmospheric Paths Cuiten
- Very High Pressures IR
- Via Difference-Frequency Generation Pine
- Vibrational Spectra Horak
- Vidrine D. Warren
- Vinyipyrldlne Thin Films Bieg
- Vinyl Acetate Copolymer Kostkova
- Vinylpyrldine Thin Films Bieg
- Voigt-Shaped Lines Lin
- Waste Waters Hellmann
- Water Ershova
- Water Gomez-Taylor
- Water Kaschube
- Water Ranchet
- Water Solution Fabian
- Water Using Heavy Water Basset
- Wavelength Rocketborne Infrared Spectrometer Wyatt
- Wool Fibers Weideman
- Zanzucchi P. J.
- Zeolite Catalysis Naccache
- Publication venue
- 'American Chemical Society (ACS)'
- Publication date
- Field of study
Signaling Recognition Events with Fluorescent Sensors and Switches
- Author
- Abdel-Mottaleb M. S. A.
- Abu-Saleh A.
- Acquavella M. F.
- Acree W. E.
- Acree W. E.
- Adachi G. Y.
- Adams S. R.
- Agbaria R. A.
- Agbaria R. A.
- Ahmad A. R.
- Akkaya E. U.
- Alfimov M. V.
- Alihodzic S.
- Alonso M. T.
- Alpha B.
- Anderson S.
- Anstead G. M.
- Aoki I.
- Aoki I.
- Aoki I.
- Aoki I.
- Aoki I.
- Aoyama Y.
- Arimura T.
- Armaroli N.
- Avouris P.
- Ayadim M.
- Bacon J. R.
- Baldes R.
- Ballardini R.
- Ballardini R.
- Balzani V.
- Balzani V.
- Balzani V.
- Balzani V.
- Bandy J. A.
- Barcellona M. L.
- Bardez E.
- Barigelletti F.
- Barigelletti F.
- Barltrop J. A.
- Barrero J. M.
- Basu G.
- Beddard G. S.
- Beeby A.
- Beecroft R. A.
- Beer P. D.
- Beer P. D.
- Beer P. D.
- Beer P. D.
- Beeson J. C.
- Belser P.
- Belser P.
- Bender C.
- Benniston A. C.
- Benson D. R.
- Berberan-Santos M. N.
- Bernardo M. A.
- Berthon R. A.
- Bignozzi C. A.
- Biochemical Applications
- Biochemical Fluorescence
- Biophysical
- Biosensors
- Birks J. B.
- Bissell R. A.
- Bissell R. A.
- Bissell R. A.
- Bissell R. A.
- Bissell R. A.
- Biwersi J.
- Blackburn C.
- Blacker A. J.
- Blacker A. J.
- Blough N. V.
- Bodenant B.
- Bohne C.
- Bolger J.
- Bolt J. D.
- Bonfantini E. E.
- Bortolus P.
- Bouas-Laurent H.
- Bourson J.
- Bourson J.
- Bourson J.
- Bourson J.
- Brimage D. R. G.
- Broan C.
- Brun A. M.
- Bryan A. J.
- Bunzli J.-C.
- Bystryak I. M.
- Cain C. C.
- Canfi A.
- Canfi A.
- Cao H.
- Chae M. Y.
- Chae M. Y.
- Chae M. Y.
- Chambron J.-C.
- Chand D. K.
- Chang C.-H.
- Chang S. K.
- Chapman C. F.
- Chardon-Noblat S.
- Charles R. G.
- Claude S.
- Cline Love L. J.
- Closs G. L.
- Coates J.
- Coates J.
- Cole K. L.
- Compare
- Constable E. C.
- Cornelius G.
- Costa S. M.
- Coudret C.
- Cowley D.
- Cowley D. J.
- Cowley D. J.
- Cox G. S.
- Cox G. S.
- Coyle P.
- Crosby G. A.
- Crossley R.
- Crossley R.
- Czarnik
- Czarnik A. W.
- Czarnik A. W.
- D'Sousa F.
- Das S.
- Daub J.
- Davidson R. S.
- Davidson R. S.
- De Cola L.
- de Costa M. D. P.
- de Rege P. J. F.
- de Santis G.
- De Santis G.
- De Santis G.
- De Schryver F. C.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- de Silva A. P.
- Debreczeny M. P.
- DeCola L.
- Delgado M.
- Delmond S.
- Demas J. N.
- Deschenaux R.
- Desvergne J.-P.
- Desvergne J.-P.
- Desvergne J.-P.
- Dewar M. J. S.
- Dhaenens M.
- Diamond D.
- Dickins R. S.
- Dickinson T. A.
- Diehl H.
- Dietrich B.
- Dietrich-Buchecker C. O.
- Dixon A. J.
- Dougherty D. A.
- Draxler S.
- Draxler S.
- Dressick W. J.
- Dumon P.
- Duveneck L. G.
- Dürr H.
- Early
- Ebata H.
- El Baraka M.
- Electron
- Emert J.
- Etter E. F.
- Fabbrizzi L.
- Fabbrizzi L.
- Fabbrizzi L.
- Fabbrizzi L.
- Fabbrizzi L.
- Fabian R. H.
- Fages F.
- Fages F.
- Fages F.
- Fages F.
- Fages F.
- Fees J.
- Femia R. A.
- Fendler E. J.
- Fendler J. H.
- Fernandez M. S.
- Fernandez-Gutierrez A.
- Fernando S. R. L.
- Fernando S. R. L.
- Fery-Forgues R.
- Fery-Forgues R.
- Fery-Forgues S.
- Fibre Optic Chemical Sensors
- Filipescu
- Fluorescence Spectroscopy
- Fluorescent Chemosensors
- Fluorescent Probes
- For
- Forst H.
- Frey S. T.
- Fujii I.
- Fujita E.
- Fyles T. M.
- Gallery J.
- Galoppini E.
- Gaugain B.
- Ghosh P.
- Gocmen A.
- Godwin H. A.
- Golchini K.
- Goldenberg M.
- Gonzalez M. C.
- Goodwin P. M.
- Gordon M.
- Goulle V.
- Grabowski Z. R.
- Grabowski Z. R.
- Grabowski Z. R.
- Grady T.
- Grampp G.
- Gravett D. M.
- Greenfield S. R.
- Grigg R.
- Grigg R.
- Grigg R.
- Grosshenny V.
- Grynkiewicz G.
- Gubelmann M.
- Guilbault G. G.
- Gust D.
- Gust G.
- Gutman M.
- Haga M.
- Hahn K. M.
- Hahn K. M.
- Hamai S.
- Hamasaki K.
- Hamasaki K.
- Hamilton A. D.
- Hancock R. D.
- Harada A.
- Harootunian A. T.
- Harriman A.
- Harriman A.
- Harriman A.
- Harriman A.
- Harriman A.
- Hartmann P.
- Hartmann W. K.
- Hassner A.
- Hatfield J. V.
- Hauenstein B. L.
- Haugland R. P.
- Hayashi T.
- Hayashi T.
- He G. X.
- He G. X.
- Heinselmann K. S.
- Hemmila I.
- Hemmila I.
- Hemmila I.
- Hermant R. M.
- Hiratani K.
- Hiratani K.
- Hoffman D. A.
- Holmlin R. E.
- Homsi A.
- Hong S. Y.
- Horrocks W.
- Horvath O.
- Hoshino H.
- Hosseini M. W.
- Hubbard B. K.
- Hungerford G.
- Hunter C. A.
- Hunter C. A.
- Hunter C. A.
- Hurtubise R. J.
- Huston M. E.
- Huston M. E.
- Ide R.
- Illner H.
- Indelli M. T.
- Indicators
- Inouye M.
- Ireland J. F.
- Irie M.
- Itoh M.
- Iwamoto K.
- Iwata S.
- Iyoda T.
- Jacobsen A.
- Jacques P.
- James T. D.
- James T. D.
- James T. D.
- James T. D.
- James T. D.
- James T. D.
- Janout V.
- Jenkins Y.
- Jenneskens L. W.
- Jiang J.-B.
- Jin T.
- Jones G.
- Jones G. R.
- Jonker S. A.
- Jonker S. A.
- Jonker S. A.
- Jordan D. M.
- Jullien L.
- Juris A.
- Kakizawa Y.
- Kalyanasundaram K.
- Kalyanasundaram K.
- Kalyanasundaram K.
- Kalyanasundaram K.
- Kamlet M. J.
- Kaneda T.
- Kano K.
- Kano K.
- Kano K.
- Kasha M.
- Kastenholz F.
- Kavarnos G.
- Kavarnos G. J.
- Kavarnos G. J.
- Kawakami J.
- Kessler M. A.
- Kimura E.
- Kimura E.
- Kimura K.
- Kimura K.
- Klessinger M.
- Klok H.-A.
- Kloppfer W.
- Konopelski J. P.
- Kopecky J.
- Kosower E. M.
- Kosower E. M.
- Kosower E. M.
- Kowalczyk A.
- Krapf R.
- Krasovitskii B. M.
- Kratochvil B.
- Kumar C. V.
- Kumar C. V.
- Kumar C. V.
- Kuroda Y.
- Kutsyna L. M.
- Lakowicz J. R.
- Langhals H.
- Langhals H.
- Larson J. M.
- Lay P. A.
- Le Pecq J.-B.
- Lee L. G.
- Lee Y. F.
- Leezenberg P. B.
- Lehn J.-M.
- Lehn J.-M.
- Lehn J.-M.
- Lehn J.-M.
- Leo A.
- Levy L. A.
- Lewis A.
- Lewis F. D.
- Lewis F. D.
- Li M.
- Lianos P.
- Lieu V. T.
- Linnane P.
- Lippitsch M. E.
- Lis S.
- Liu H. Q.
- Liu H. Q.
- Loew L. M.
- Loew L. M.
- London R. E.
- Lorand J. P.
- Loutfy R. O.
- Luminescence Techniques
- Lytton S. D.
- Lytton S. D.
- Létard J.-F.
- Létard J.-F.
- Macanita A. L.
- MacQueen D. B.
- Marcus R. A.
- Markovits J.
- Marquis D.
- Marquis D.
- Martensson J.
- Martin M. M.
- Martin M. M.
- Martin M. M.
- Matayoshi E. D.
- Mathevet R.
- Matsumoto H.
- Matsumoto H.
- Matsumoto T.
- Mayer A.
- McDermott G.
- McGlynn S. P.
- McLachlan B. G.
- Meares C. F.
- Meech S. R.
- Mes G. F.
- Mets U.
- Meuwis K.
- Michl J.
- Milbradt R.
- Minami T.
- Minta A.
- Minta A.
- Modern Fluorescence Spectroscopy
- Moerner W. E.
- Montalti M.
- Monti S.
- Morawetz H.
- Morimoto M.
- Morrison H.
- Motesharei K.
- Mukkala V.-M.
- Mukkala V.-M.
- Mullins S. T.
- Munoz de la Pena A.
- Murakami H.
- Murakami H.
- Murphy C. J.
- Murray T. J.
- Murru M.
- Nag A.
- Nag A.
- Nagai Y.
- Nagasaki T.
- Nakamura A.
- Nakamura M.
- Nakashima K.
- Nakashima K.
- Nakaya T.
- Nango M.
- Nishida H.
- Nocera D. G.
- Nowick J. S.
- Nowick J. S.
- Nowick J. S.
- Nozaki K.
- Ogawa S.
- Ogawa S.
- Ogoshi H.
- Okahata Y.
- Okamura T.
- Orrit M.
- Oster G.
- Paddon-Row M. N.
- Pardo A.
- Parker C. A.
- Parker D.
- Parker D.
- Parker D.
- Parola A. J.
- Pasman P.
- Paul-Roth C. O.
- Perez-Jimenez C.
- Perez-Jimenez C.
- Petrov J. G.
- Photochromism
- Photoinduced
- Photoinduced
- Pietraszkiewicz
- Pietraszkiewicz M.
- Pikramenou Z.
- Pikramenou Z.
- Pina F.
- Pines E.
- Plenio H.
- Ponce A.
- Probe Design
- Quanten E.
- Quesada M. A.
- Raju B.
- Rampi M. A.
- Rawle S. C.
- Rehm D.
- Reichardt C.
- Remuinan M. J.
- Rettig W.
- Rettig W.
- Richardson F. H.
- Roberts J. A.
- Roman Ceba M.
- Rotman B.
- Roundhill D. M.
- Rurack K.
- Ryder J. D.
- Saavedra S. S.
- Sabbatini N.
- Sabbatini N.
- Sabbatini N.
- Sabbatini N.
- Saeva F.
- Saha A. K.
- Saika T.
- Saltiel J.
- Sammes P. G.
- Sammes P. G.
- Sandanayake K. R. A. S.
- Sandanayake K. R. A. S.
- Sandanayake K. R. A. S.
- Sandanayake K. R. A. S.
- Sandros K.
- Sasaki D. Y.
- Sato N.
- Sato N.
- Sauvage J.-P.
- Scandola F.
- Schneider H.-J.
- Scholes G. D.
- Schulman S. G.
- Scypinski S.
- Scypinski S.
- Seiler M.
- Selinger B. K.
- Selvin P. R.
- Selvin P. R.
- Sessler J. L.
- Shanzer A.
- Shanzer A.
- Sharp S. L.
- Shen Y.
- Shi Y.
- Shin D. M.
- Shinkai S.
- Shinkai S.
- Shinoya M.
- Shinozuka K.
- Shionoya M.
- Shirai M.
- Shirai M.
- Shirai M.
- Shizuka H.
- Shizuka H.
- Shizuka H.
- Siepak J.
- Smith G. A.
- Smith G. A.
- Snare M. J.
- Snyder R.
- Sousa L. R.
- Sowinska M.
- Spreitzer H.
- Steinbrunn M. B.
- Stern K. G.
- Street K. W.
- Street K. W.
- Strothkamp K. G.
- Stryer L.
- Sugimoto A.
- Sutin N.
- Szemes F.
- Szmacinski H.
- Takeshita M.
- Takeshita M.
- Takeuchi M.
- Tamaki T.
- Tamaki T.
- Tamiaki H.
- Tamura N.
- Tamura N.
- Tan W.
- Tan W.
- Tanasugarn L.
- Tanimoto Y.
- Tazuke S.
- Tecilla P.
- Teulade-Fichou M.
- The Photosynthetic Reaction Center
- Thomas J.
- Thomas J. K.
- Thomas K. J.
- Thompson P. A.
- Thornton N. B.
- Thorp H. H.
- Thummel R. P.
- Toner J.
- Toner J. L. U.S.
- Tsien R.
- Tsien R. Y.
- Tsien R. Y.
- Tsien R. Y.
- Tsien R. Y.
- Tsien R. Y.
- Tsien R. Y.
- Tsien R. Y.
- Tsien R. Y.
- Tsvigoulis G. M.
- Tung C. H.
- Turro C.
- Turro N.
- Turro N. J.
- Turro N. J.
- Turro N. J.
- Turro N. J.
- Turro N. J.
- Turro N. J.
- Turro N. J.
- Turro N. J.
- Turro N. J.
- Ueno
- Ueno A.
- Ueno A.
- Ueno A.
- Ueno A.
- Ueno A.
- Ueno A.
- Valeur B.
- Valeur B.
- Valeur B.
- Valeur B.
- Vallee B.
- Van Arman S.
- Van Arman S. A.
- Van den Bergh V.
- Van den Bergh V.
- Van der Donckt E.
- van Ramesdonk H. J.
- Vance D. H.
- Verhey H. J.
- Verhoeven J. W.
- Vo-Dinh T.
- Vogel M.
- Voyer N.
- Voyer N.
- Vögtle F.
- Waggoner A. S.
- Wagner R. W.
- Wagner R. W.
- Wagner R. W.
- Waldeck D. H.
- Walkup G. K.
- Wallach D. F. H.
- Walz J.
- Wandelt B.
- Wang Y. C.
- Wang Y. C.
- Ward M. D.
- Waring M. J.
- Wasielewski M. R.
- Wayne R. P.
- Weber G.
- Wei A.-P.
- Weissman S.
- Weller A.
- Wenz G.
- Whitaker J. E.
- Whitesell J. K.
- Whitten D. G.
- Winnik F. M.
- Winnik M. A.
- Winnik M. A.
- Wolfbeis O. S.
- Wolfbeis O. S.
- Wolfbeis O. S.
- Wulff G.
- Yamazaki I.
- Yeung E. S.
- Yoon D. I.
- Yoon J.
- Yoon J.
- Yu J. A.
- Yuan P.
- Zachariasse K. A.
- Zalewski P. D.
- Zhou Q.
- Zweig A.
- Publication venue
- 'American Chemical Society (ACS)'
- Publication date
- Field of study