雅科学学派对固相研究和合成方法的发展。Ugai。审查

G. V. Semenova, A. Zavrazhnov
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引用次数: 0

摘要

由Yakov A. Ugai创立的科学学院在沃罗涅日国立大学已经存在了50多年。其重点领域之一是物理和化学的发展,以获得具有挥发性组分的系统中的固相。这决定了研究蒸汽压力的方法(张力法)的必要性。本文仅关注VSU工作人员致力于研究和构建P-T-x图的部分工作。本文分析了AIV - BV、AIV - BV - СV和AIII - BVI体系的相平衡和中间相的性质。由于阳离子-阳离子和阴离子-阴离子键的特殊性,这些化合物具有高度特异性,使它们成为有前途的材料(特别是二维材料)。本文概述了致力于构建P-T-x图和基于AIVBV化合物的二元和三元体系中缺陷形成过程的研究工作。应该强调的是,由于蒸汽压的高值,已知的技术需要更新。这样就可以在35-40个大气压的压力下进行实验。相反,对AIII - BVI体系的研究由于铟和镓硫属化合物的蒸气压值较低以及蒸气的复杂组成而变得复杂。针对这类系统,提出了辅助分量法。其应用前景广阔,不仅限于aiibvi类化合物。提出了一种新的非化学计量调节方法,并应用于非破坏性选择性化学传递反应(即辅助成分的参与)。这种方法的基础是通过选择性化学传递反应引入或去除一种样品成分。最后,以所讨论的体系为例,分析了变组成(性质)中间相的研究和合成方法的发展。
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The development of methods for the research and synthesis of solid phases by the scientific school of Ya. A Ugai. Review
The scientific school founded by Yakov A. Ugai has existed at Voronezh State University for over fifty years. One of its focus areas has been the development of physics and chemistry for obtaining solid phases in systems with volatile components. This determined the necessity to develop methods for the investigation of vapour pressure (tensimetric methods). This article only focuses on some of the works by the VSU staff dedicated to the study and construction of P-T-x diagrams. This review analyses phase equilibria and the nature of the intermediate phases in the AIV – BV, AIV – BV – СV, and AIII – BVI systems.Owing to the special nature of the cation-cation and anion-anion bonds, these compounds have highly specific properties  that make them promising materials (2D materials in particular). The article presents an overview of works devoted to the construction of P-T-x diagrams and the investigation of defect formation processes in binary and ternary systems based on AIVBV compounds. It should be emphasised that the known techniques needed updating due to the high values of vapour pressure. This allowed conducting experiments at pressures of about 35-40 atmospheres. The study of the AIII - BVI systems,on the contrary, is complicated by low values of vapour pressure over indium and gallium chalcogenides and the complex composition of the vapour. For such systems the auxiliary component method was developed.  The possibilities of its application are wide and are not limited to AIIIBVI compounds. A new method for nonstoichiometry regulation was developed and applied using non-destructive selective chemical transport reactions (i.e. with the participation of an auxiliary component). This method is based on the introduction or removal of one of the sample components by means of a selective chemical transport reaction. In conclusion, the development of methods for the research and synthesis of intermediate phases with variable compositions (properties) was analysed based on the example of the discussed systems.
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