18 research outputs found
Dynamic behavior of graphene reinforced aluminum composites
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- Ahmad I Islam M, Subhani T, et al.
- Asl MS Kakroudi MG
- Balandin AA Ghosh S, Bao W, et al.
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- Deng H Nemat-Nasser S
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- Dreyer DR Ruoff RS, Bielawski CW
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- Miracle DB
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- Saboori A Novara C, Pavese M
- Tan M Xin Q, Li Z, et al.
- Tang Y Yang X, Wang R, et al.
- Wang H Ramesh KT
- Wang J Li Z, Fan G, et al.
- Wei Y Bower AF, Gao H
- Xu Z Zhang Q, Shi X, et al.
- Yan SJ Dai SL, Zhang XY, et al.
- Yang LM Shim VPW
- Yazdani B Xia Y, Ahmad I, et al.
- Zhang B Shim VPW
- Zhang B Shim VPW
- Zhang B Shim VPW
- Publication venue
- 'American Institute of Mathematical Sciences (AIMS)'
- Publication date
- 01/01/2015
- Field of study
An alkali-tolerant strain <em>Microbacterium esteraromaticum</em> C26 produces a high yield of cation-independent bioflocculant
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- Aljuboori AHR Idris A, AI-joubory HHR, et al.
- Aljuboori AHR Uemura Y, Osman NB, et al.
- Bradford MM
- Crapper DR Krishnan SS, Dalton AJ
- Deng S Yu G, Ting YP
- Gao J Bao H, Xin M, et al.
- Gong WX Wang SG, Sun XF, et al.
- Guo J Lau AK, Zhang Y, et al.
- Guo JY Yu J, Xin X, et al.
- He J Zou J, Shao Z, et al.
- He N Li Y, Chen J, et al.
- Li Z Chen RW, Lei HY, et al.
- Li Z Zhong S, Lei HY, et al.
- Liu C Wang K, Jiang JH, et al.
- Liu WJ Liu C, Yuan HL, et al.
- Liu WJ Wang K, Li BZ, et al.
- Liu WJ Yuan HL, Yang JS, et al.
- Luo Z Chen L, Chen C, et al.
- Malik A Sakamoto M, Ono T, et al.
- Okaiyeto K Nwodo UU, Mabinya LV, et al.
- Okaiyeto K Nwodo UU, Mabinya LV, et al.
- Salehizadeh H Shojaosadati S
- Salehizadeh H Yan N
- Shih IL Van YT, Yeh LC, et al.
- Tang W Song L, Li D, et al.
- Wan C Zhao XQ, Guo SL, et al.
- Wang L Ma F, Lee DJ, et al.
- Wang SG Gong WX, Liu XW, et al.
- Xia SQ Zhang ZQ, Wang XJ, et al.
- Xiong Y Wang Y, Yu Y, et al.
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- Yim JH Kim SJ, Ahn SH, et al.
- Zhang ZQ Lin B, Xia SQ, et al.
- Zhao HJ Liu HT, Zhou JG
- Zheng Y Ye ZL, Fang XL, et al.
- Zhong C Xu A, Chen L, et al.
- Publication venue
- 'American Institute of Mathematical Sciences (AIMS)'
- Publication date
- 01/01/2016
- Field of study
Composite anodes for lithium-ion batteries: status and trends
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- Acevedo-Peñ
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- Ferguson PP Todd ADW, Dahn JR
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- Geng H Kong SF, Wang Y
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- Krishnan R Lu TM, Koratkar N
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- Publication venue
- 'American Institute of Mathematical Sciences (AIMS)'
- Publication date
- 01/01/2016
- Field of study
“Toll-free” pathways for production of type I interferons
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- Agod Z Fekete T, Budai MM, et al.
- Ansari MA Singh VV, Dutta S, et al.
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- Christensen MH Paludan SR
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- de Galarreta MR Lujambio A
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- Publication venue
- 'American Institute of Mathematical Sciences (AIMS)'
- Publication date
- 01/01/2017
- Field of study
Cooling effects of infrared radiative inorganic fillers in heat dissipation coatings at temperatures below 400 K
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- Aliev AE Lima MH, Silverman EM, et al.
- Baby R Balaji C
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- Granqvist CG Hjortsberg A
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- Hossain MM Gu M
- Huang Z Ruan X
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- Shao Y Shi FG
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- Publication venue
- 'American Institute of Mathematical Sciences (AIMS)'
- Publication date
- 01/01/2018
- Field of study
Surface modification of materials to encourage beneficial biofilm formation
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- Corry B
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Biofilms are communities of sessile microorganisms that grow and produce extrapolymeric substances on an abiotic or biotic surface. Although biofilms are often associated with negative impacts, the role of beneficial biofilms is wide and include applications in bioremediation, wastewater treatment and microbial fuel cells. Microbial adhesion to a surface, which is highly dependent on the physicochemical properties of the cells and surfaces, is an essential step in biofilm formation. Surface modification therefore represents an important way to modulate microbial attachment and ultimately biofilm formation by microorganisms. In this review different surface modification processes such as organosilane surface modification, plasma treatment, and chemical modification of carbon nanotubes, electro-oxidation and covalent-immobilization with neutral red and methylene blue molecules are outlined. The effectiveness of these modifications and their industrial applications are also discussed. There is inadequate literature on surface modification as a process to enhance beneficial biofilm formation. These methods need to be safe, economically viable, scalable and environmental friendly and their potential to fulfil these criteria for many applications has yet to be determined
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