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Rapid Recombination by Cadmium Vacancies in CdTe

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arxiv 2103.00984 v2 pith:XUJYZGGE submitted 2021-03-01 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords cdtecadmiumrecombinationefficiencyrapidstructuralvacancyacceptor
verification ladder T0 review T1 audit T2 compute T3 formal
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CdTe is a key thin-film photovoltaic technology. Non-radiative electron-hole recombination reduces the solar conversion efficiency from an ideal value of 32% to a current champion performance of 22%. The cadmium vacancy (V_Cd) is a prominent acceptor species in p-type CdTe; however, debate continues regarding its structural and electronic behavior. Using ab initio defect techniques, we calculate a negative-U double-acceptor level for V_Cd, while reproducing the V_Cd^-1 hole-polaron, reconciling theoretical predictions with experimental observations. We find the cadmium vacancy facilitates rapid charge-carrier recombination, reducing maximum power-conversion efficiency by over 5% for untreated CdTe -- a consequence of tellurium dimerization, metastable structural arrangements, and anharmonic potential energy surfaces for carrier capture.

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