67 research outputs found

    Monoclinic form I of clopidogrel hydrogen sulfate from powder diffraction data

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    The asymmetric unit of the title compound, C16H17ClNO2S+·HSO4 −, (I) [systematic name: (+)-(S)-5-[(2-chloro­phen­yl)(meth­oxy­carbon­yl)meth­yl]-4,5,6,7-tetra­hydro­thieno[3,2-c]pyridin-5-ium hydrogen sulfate], contains two independent cations of clopidogrel and two independent hydrogensulfate anions. The two independent cations are of similar conformation; however, this differs from that observed in ortho­rhom­bic form (II) [Bousquet et al. (2003 ▶). US Patent No. 6 504 030]. The H—N—Cchiral—H fragment shows a trans conformation in both independent cations in (I) and a gauche conformation in (II). In (I), classical inter­molecular N—H⋯O and O—H⋯O hydrogen bonds link two independent cations and two independent anions into an isolated cluster, in which two cations inter­act with one anion only via N—H⋯O hydrogen bonds. Weak inter­molecular C—H⋯O hydrogen bonds further consolidate the crystal packing

    Carvedilol dihydrogen phosphate propan-2-ol solvate from powder diffraction data

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    In the cation of the title compound, C24H27N2O4 +·H2PO4 −·C3H8O [systematic name: 3-(9H-carbazol-4-yl­oxy)-2-hydr­oxy-N-[2-(2-methoxy­phen­oxy)eth­yl]propan-1-aminium dihydro­gen phosphate propan-2-ol solvate], the mean planes of the tricyclic carbazole system and the benzene ring form a dihedral angle of 42.00 (16)°. In the crystal structure, classical inter­molecular O—H⋯O and N—H⋯O hydrogen bonds link the cations, anions and solvent mol­ecules into layers parallel to the ac plane

    Lanthanum ruthenium indide, La21Ru9+xIn5-x (x = 1.2)

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    La21Ru9+xIn5-x (Pearson symbol tI140) is isotypic to the filled Y3Rh2-type structure, from which it can be derived through an ordered substitution at two sites. One of the square-prismatic sites (site symmetry ..m) is occupied by a mixture of Ru and In atoms and one of the square-antiprismatic sites (4/m..) is fully occupied by In atoms

    Bis{4′-[(2,3,5,6,8,9,11,12-octa­hydro-1,4,7,10,13-benzopenta­oxacyclo­penta­decin-15-yl)meth­oxy]-2,2′:6′,2′′-terpyridine}cadmium(II) bis­(hexa­fluorido­phosphate) trihydrate: a powder study

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    The asymmetric unit of the title compound, [Cd(C30H31N3O6)2](PF6)2·3H2O, contains one half-cation with the CdII center situated on a twofold rotational axis, one hexa­fluoridophosphate anion and two uncoordinated water mol­ecules, one of which is also situated on a twofold rotational axis. The cations are associated into columns along the a axis through π–π inter­actions between the pyridine and benzene rings, with a centroid–centroid distance of 3.72 (5) Å. Inter­molecular O—H⋯O, C—H⋯O and C—H⋯F hydrogen bonds consolidate the crystal packing

    Effect of sonochemical pretreatment of slurry depressors on sylvin flotation performance

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    The main source of potassium fertilizers is sylvinite ores consisting primarily of halite (NaCl), silicate and clay-carbonate slurries (clay-salt slurries). Processing of natural potash ores is mainly carried out by the flotation method, which separates KCl, NaCl, and clay-salt slurry. The research is aimed at revealing the effect of sonochemical pretreatment of the depressor reagents, CMC and starch, on dynamic viscosity, aggregate size, electrokinetic potential of these reagent solutions and sylvin flotation performance. It has been established that sonochemical treatment of depressor solutions decreases the size of aggregates of starch molecules by more than 133 times and that of aggregates of CMC molecules from 6 to 4 nm. It has been revealed that sonochemical treatment of anionic CMC solution shifts the electrokinetic potential towards the area of negative values with an increase in acoustic power, while sonochemical treatment of any acoustic power has no effect on the zeta potential of nonionic starch. It has been found that the sonochemical treatment lowers the dynamic viscosity of CMC and starch solutions: the viscosity of CMC solution at a maximum acoustic power of 420 W decreases by 44 % and the viscosity of starch solution at the same acoustic (ultrasonic) power decreases by 70 %. Furthermore, sonochemical pretreatment of sylvin flotation depressors contributes to an increase in KCl recovery and a decrease in the slurry content in the flotation concentrate. The possibility of reducing the consumption of ultrasonic treated depressor is also demonstrated. It is expedient to test the obtained findings in pilot-plant conditions

    β-Polymorph of phenazepam: a powder study

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    The title compound [systematic name: 7-bromo-5-(2-chloro­phen­yl)-1H-1,4-benzodiazepin-2(3H)-one] (β-polymorph), C15H10BrClN2O, has been obtained via cryomodification of the known α-polymorph of phenazepam [Karapetyan et al. (1979 ▶). Bioorg. Khim. 5, 1684–1690]. In both polymorphs, the mol­ecules, which differ only in the dihedral angles between the aromatic rings [75.4 (2)° and 86.2 (3)° in the α- and β-polymorphs, respectively], are linked into centrosymmetric dimers via N—H⋯O hydrogen bonds. In the crystal structure of the β-polymorph, weak inter­molecular C—H⋯O hydrogen bonds further link these dimers into layers parallel to bc plane

    Synthesis and the Crystal Structure of a New Chiral 1D Metal–Organic Coordination Polymer Based on L-Prolineamide-Substituted Diarylacetylenedicarboxylic Acid Derivative

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    The new homochiral 1D metal–organic coordination polymer [Cu2(EDPB)•H2O]n was synthesized starting from the original 3,3′-ethyne-1,2-diylbis[6-(L-prolylamino)benzoic acid] (H4EDPB). The unique crystal structure of the new compound was established by powder X-ray diffraction. The [Cu2(EDPB)•H2O]n system shows catalytic activity and enantioselectivity in a Henry reaction of p-nitrobenzaldehyde with nitromethane

    Career guidance as a priority in solving the personnel problem in healthcare

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    Over the past two decades, the availability of medical personnel in Russia’s healthcare sector has continued to deteriorate. Over the period from 2000 to 2018, it decreased by about 11 % for both doctors and specialists with secondary medical education. This is due to several reasons: the rejection of the previously existing system of training and saturation of the industry with specialists, the unsuccessful optimization of the country’s health system, the lack of attention of the authorities to young professionals, the creation of favorable conditions for them to live and work, etc. An important role is played by insufficient work on career guidance, including in medical specialties with students of General education organizations and the reluctance of medical workers to do this. The article provides recommendations for the organization of career guidance among high school students, describes the forms in which it can be carried out. This includes specialized medical classes, clubs for studying the basics of medical knowledge, and volunteering. The experience of the regional clinical hospital, which for 5 years has been supervising a specialized medical class, 78–96 % of whose graduates have chosen the medical profession is of considerable interest. Teachers of the Novosibirsk Medical College actively work with General education organizations, and therefore the competition among applicants is from 2 people per place in the specialty «Nurse» to 12–14 in the specialties «Pharmacy» and «Orthopedic dentistry». The effectiveness of career guidance largely depends on how systematically and methodically it is carried out. To successfully conduct it, you need to organize a three-level system: career guidance office (level I), career guidance point (level II), career guidance center (level III). The joint work of representatives of General education and medical organizations, medical schools, will help to ensure that school graduates will come to medicine, confident in the correctness of their chosen profession. After graduation, they will return to their native land, to their familiar environment, and with a high degree of probability will remain there forever
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