Paper
3 November 1995 Investigation of photolysis and photochemical transformations in metal layer halides with optical methods
Vyacheslav V. Bondar, Arkady Groodzinsky, Stepan Popovych, Yaroslav Pastyrsky, Olena V. Savchuk
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Proceedings Volume 2648, International Conference on Optical Diagnostics of Materials and Devices for Opto-, Micro-, and Quantum Electronics; (1995) https://doi.org/10.1117/12.226163
Event: International Conference on Optical Diagnostics of Materials and Devices for Opto-, Micro-, and Quantum Electronics, 1995, Kiev, Ukraine
Abstract
In the present work processes of photolysis and photochemical transformations in crystals, thin films, and heterogeneous environments of layer cadmium, lead, and zinc halides have been investigated. It has been found that photolysis takes place in these materials at excitation of electron-hole couples. Excessive metal atoms serve as photodecay centers. Photolysis kinetics are determined by halogen diffusion. Products of photolysis are metallic and partly oxide phases. The maximal photolysis degree is determined by the critical size of metallic inclusions. It has been shown that copper impurity leads to photochemical reactions (PCR) in cadmium halides. PCR in CdI2 - Cu crystals is caused by photothermal decay of copper- intrinsic defect complexes. In CdBr2 - Cu PCR takes place as a result of copper impurity photoionization, and in CdCl2 - Cu it is a result of recharging Cu+ yields Cu2+.
© (1995) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Vyacheslav V. Bondar, Arkady Groodzinsky, Stepan Popovych, Yaroslav Pastyrsky, and Olena V. Savchuk "Investigation of photolysis and photochemical transformations in metal layer halides with optical methods", Proc. SPIE 2648, International Conference on Optical Diagnostics of Materials and Devices for Opto-, Micro-, and Quantum Electronics, (3 November 1995); https://doi.org/10.1117/12.226163
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KEYWORDS
Crystals

Photolysis

Copper

Cadmium

Absorption

Metals

Reflection

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