2022
DOI: 10.1063/5.0091233
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Controlling electrical and optical properties of wurtzite CdxZn1−xO with high Cd contents via native defects manipulation by low-temperature annealing

Abstract: Bandgap energies in wurtzite (WZ) structured Cd xZn1 −xO alloys are known to decrease with increasing Cd content ( x). Our previous work demonstrated that WZ-Cd xZn1 −xO alloys with a high Cd content of x ∼ 0.6 and a low gap of 2 eV can be stabilized by oxygen interstitials when grown in an O-rich environment. However, such O-rich WZ-Cd xZn1 −xO alloys have poor electrical properties due to compensating native defects. In this work, we synthesized pure WZ phase Cd xZn1 −xO thin films with different Cd contents… Show more

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Cited by 3 publications
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“…The neutral zinc vacancy VZn x corresponds to the capture of two holes by oxygen ions surrounding the vacancy and is a center with spin s = 1, the properties of which depend on the interaction of the magnetic moments of localized unpaired electrons on two neighboring O 1ions. Thus, intrinsic point defects with spin s = 1/2 (Zni + , Оi + , VZn 1-, and Vo 1+ ), as well as centers with spin s = 1 (triplet state) of type Оi x , VZn x , and Vo x are paramagnetic [5][6][7].…”
Section: Introductionmentioning
confidence: 99%
“…The neutral zinc vacancy VZn x corresponds to the capture of two holes by oxygen ions surrounding the vacancy and is a center with spin s = 1, the properties of which depend on the interaction of the magnetic moments of localized unpaired electrons on two neighboring O 1ions. Thus, intrinsic point defects with spin s = 1/2 (Zni + , Оi + , VZn 1-, and Vo 1+ ), as well as centers with spin s = 1 (triplet state) of type Оi x , VZn x , and Vo x are paramagnetic [5][6][7].…”
Section: Introductionmentioning
confidence: 99%