Amorphous Chalcogenides. The Past, Present and Future by Victor I. Mikla

By Victor I. Mikla

Content material:

, Pages i,iii

, Page iv

, Page v

, Pages ix-xi

, Pages xiii-xviii
1 - instruction of Amorphous Selenium Photoconductor motion pictures by way of Vacuum Deposition

, Pages 1-22
2 - Molecular constitution of Se-Rich Amorphous Films

, Pages 23-46
3 - impact of Thermal Evaporation stipulations on constitution and Structural alterations in Amorphous Arsenic Sulfides

, Pages 47-55
4 - the large Invention of the 20 th Century—Xerography

, Pages 57-79
5 - Xerographic Spectroscopy of hole States: Se-Rich Amorphous Semiconductors

, Pages 81-107
6 - impression of Antimony Alloying on Photoelectronic houses of a-Se

, Pages 109-132
7 - High-Definition television Pickup Tubes

, Pages 133-142
8 - X-Ray Photoconductors for Direct Conversion of electronic Flat-Panel X-Ray picture Detectors

, Pages 143-154

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Additional info for Amorphous Chalcogenides. The Past, Present and Future

Example text

Most stable binary glasses in As–Se system atomic ratios can be varied in a wide range. % As. It is necessary to accentuate that the As–Se amorphous alloy system displays the main extrema of various properties at the stoichiometric composition, where the valence requirements appear to be satisfied. It is reasonable to connect the mentioned non-monotonic behavior with the specific character of local structure changes. The studied materials consist of certain type of glasses that have chalcogen atoms, sulfur, selenium, and tellurium and exhibit various photoinduced phenomena (the reader may refer to Shimakawa [10] and Tanaka [21]).

P. O. Seraphin) (North-Holland, Amsterdam, 1975) 437. 24. H. , P. Boolchand) (World Scientific, Singapore, 2000) Chapter 10. 25. I. P. Mikhalko, J. Non-Crystall. Solids 180 (1995) 236. 26. M. Chomat, D. Lezal, J. Gregore, and I. Srb, J. Non-Crystall. Solids 20 (1976) 427. 27. I. Mikla, J. Phys. Condens. Matter 9 (1997) 9209. 28. P. S. Gerasimenko, Structural Peculiarities of Semiconductors in Amorphous State (Naukova Dumka, Kiev, 1984). 29. L. Galeneer, J. Non-Crystall. Solids 123 (1990) 182. 30.

Preparation of Amorphous Selenium Photoconductor Films by Vacuum Deposition N ev Nf 19 Nd . The modeling of the evaporation process proposed in [24] involves obtaining the composition of the SR as the evaporation proceeds from beginning to end. We can determine the composition of the vapor and hence the deposited film at that instant by considering the allowed molecular species in the vapor. 12 that one can prepare homogeneous a-Se–Te films. This purpose may be realized by allowing the substrate to capture only the plateau region by properly shuttering the substrate during evaporation.

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