Surface and interface chemistry of bromine–methanol‐etched Cd0.9Zn0.1Te crystals

Author:

Ünal Mustafa123ORCID,Karaman Mehmet Can24,Çelik Gülçin2,Tüzel Okay24,Balbaşı Özden Başar24,Genç Ayşe Merve2,Turan Raşit1234

Affiliation:

1. Graduate School of Micro and Nanotechnology Middle East Technical University Ankara Turkey

2. Crystal Growth Laboratory Middle East Technical University Ankara Turkey

3. The Center for Solar Energy Research and Applications Middle East Technical University Ankara Turkey

4. Physics Department Middle East Technical University Ankara Turkey

Abstract

Chemical polishing or chemo‐mechanical polishing is crucial as a last step of surface preparation to remove the damaged layer and contaminants from the surface of CdZnTe crystals. The bromine–methanol solution is widely used for this purpose. However, bromine–methanol solution enriches the surface with Te and results in poor performance of CdZnTe crystals. In this study, the effect of the chemical polishing with 5% bromine–methanol solution on the surface and at the interface is investigated and it is demonstrated that etching duration strongly influences surface stoichiometry and interface contaminants. The evolution of the surface topography with etching and chemical changes are presented. It is shown that after 90 s etching/polishing, subsurface damage is removed and Te enrichment is minimum. Moreover, interface layer thickness is the smallest for 90 s etching duration. It is presented that further increase in the etching duration disturbs the surface stoichiometry and interface depth. It also calculated that 90 s of etching shows low interface barrier and symmetrical current–voltage curve.

Publisher

Wiley

Reference24 articles.

1. Advances in the crystal growth and device fabrication technology of CdZnTe room temperature radiation detectors

2. BensalahH.The effect of crystal growth conditions and surface treatment on CdZnTe bulk single crystal 2013.

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