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Titlebook: Glassy Semiconductors; Z. U. Borisova Book 1981 Springer Science+Business Media New York 1981 chemistry.experiment.kinetics.semiconductor.

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发表于 2025-3-21 17:06:42 | 显示全部楼层 |阅读模式
书目名称Glassy Semiconductors
编辑Z. U. Borisova
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图书封面Titlebook: Glassy Semiconductors;  Z. U. Borisova Book 1981 Springer Science+Business Media New York 1981 chemistry.experiment.kinetics.semiconductor.
描述Research on glassy semiconductors continues to expand every year. This is evidenced by the ever-increasing number of articles devoted to glassy semiconductors and published in a great variety of periodicals. The time has come to systematize and generalize the abundant published experimental material. The first review of the experimental data on glass formation and the physicochemical and physical properties of chalcogenide glassy semi­ conductors was published by B. T. Kolorniets [1]. Glass formation in chalcogenide systems is the subject of a section in a monograph by Rawson [2]. In 1972 the Leningrad University published the author‘s books [3] dealing with the regularities of glass formation in cha1cogenide systems and containing a systematized exposition of some physicochemical properties of glassy cha1cogenide semiconductors. The monograph presented mainly results of research performed by the Semiconductor Chemistry Laboratory staff of the Leningrad University. These investigations were started at the initiative and under the dircction of Professor R. L. Myuller and wcre continued under the author‘s direction. The present monograph is a revised and substantially supplementcd ve
出版日期Book 1981
关键词chemistry; experiment; kinetics; semiconductor; semiconductor chemistry
版次1
doihttps://doi.org/10.1007/978-1-4757-0851-6
isbn_softcover978-1-4757-0853-0
isbn_ebook978-1-4757-0851-6
copyrightSpringer Science+Business Media New York 1981
The information of publication is updating

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Glasses in Binary Systems,be greatly helped by the equilibrium phase diagram of the investigated system. As a rule, the structural units that make up the glass network are determined by the nature and composition of the compounds present in the system. The interaction of components in the binary arsenic-selenium system was i
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Glasses in the Sulfur-Selenium-Tellurium System and in the Arsenic (Germanium, Phosphorus)-Chalcogen be equally easily obtained within the limits of the glass formation region. Thus, in the GeS binary system and in the threecomponent systems As-S-Se, Ge-S-Se, Ge-As-S, and others, the production of a number of compositions of glasses encounters serious methodological difficulties. Therefore in the
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High-Conductivity Glasses of Three-Component Systems Containing Tellurium,des. Compounds of tellurium with elements of groups IV and V of the periodic system are, as a rule, unstable. The possibility of formation of such compounds depends to a considerable degree on the correct choice of the synthesis conditions and of the regime of subsequent heat treatment of the alloys
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Das Siemens Leadership Excellence Programm“very pure” grade are used. The total weight of the obtained glassy alloy is determined mainly by its crystallizing ability. Glasses of low crystallizing ability can be synthesized in any amount. Easily crystallizing glasses can be synthesized in amounts 10–5 g and less. The smaller the total weight
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Julius Golovatchev,Marcus Felsmannbe greatly helped by the equilibrium phase diagram of the investigated system. As a rule, the structural units that make up the glass network are determined by the nature and composition of the compounds present in the system. The interaction of components in the binary arsenic-selenium system was i
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,Wachstum, Rückkopplung und Vernetzung, points are 66 and 58°C, respectively. The compound TeI. is produced in the Te-I system [324]. When arsenic interacts with iodine, the stable compound AsI. is produced, with .. = 141°C, as well as AsI., which decomposes at 135–136°C into two immiscible liquid phases [325].
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