By Victor I. Mikla
, Pages i,iii
, Page iv
, Page v
, Pages ix-xi
, Pages xiii-xviii
1 - education 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 - impression of Thermal Evaporation stipulations on constitution and Structural alterations in Amorphous Arsenic Sulfides
, Pages 47-55
4 - the large Invention of the 20th Century—Xerography
, Pages 57-79
5 - Xerographic Spectroscopy of hole States: Se-Rich Amorphous Semiconductors
, Pages 81-107
6 - influence 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 photo Detectors
, Pages 143-154
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Additional info for Amorphous Chalcogenides. The Past, Present and Future
It is useful to describe the essential details of the preparation of a-Se-based alloy photoreceptor films here. 10). The typical vacuum pressure was approximately 103 Pa. Both the source and the substrate temperature were controlled during evaporation. The substrate heater was a radiative heater. To prevent deposition on the substrate during the temperature ramp of the boat and to allow deposition when the boat reached the required temperature, as in the cases of most Se-based amorphous materials, a shutter was used.
It is of particular significance that only the 237 cm1 band of trigonal selenium contributes to the spectra of photocrystallized AsxSe1x (0 x 20) films. 3 102 W cm2 in the case of pure Se) as the energy density for which the system is not yet disturbed structurally (on the scale of short-range order) by laser irradiation. The absence of any significant bonding changes in films is supported by the identity of the Raman spectra recorded in repetitive cycles. This result holds for both pure amorphous selenium and Se-rich AsxSe1x alloys.
T. Foley, P. E. Springett, Photogr. Sci. Eng. 26 (1982) 245. E. Springet, in Proc. ) Grinbergen, Belgium (1984) 258. 22 Amorphous Chalcogenides 20. E. Springet, in Proc. ) Grinbergen, Belgium (1984) 126. 21. K. , Adv. Electron. Phys. 74 (1988) 379. 22. K. , Mater. Res. Soc. Symp. Proc. 219 (1991) 505. 23. S. R. White) Society of Photographic Sciences and Engineering, Springfield, VA, 1974, p. 137. 24. C. Juhasz, V. O. Kasap, J. Mater. : Mater. Electron. 10 (1999) 633. 25. Y. H. Champness, J. Appl.