Photoconductive Effects in Single Crystals of BaZrS3

Jan Seidel, Eric R. Hoglund, Patrick E. Hopkins, Rehan Kapadia, Jayakanth Ravichandran, Boyang Zhao, Huan Zhao, Shantanu Singh, Huandong Chen, Ragib Ahsan, Fei Hou, Maruda Shanmugasundaram, Andrey Krayev, Han Htoon
2024-02-20

SCID:  54.1/zhms2tz8
Chalcogenide perovskites, such as BaZrS 3, are emerging semiconductors with the potential for high photovoltaic power conversion efficiency. The role of defects in the efficiency of the generation and collection of photoexcited carriers has not been experimentally investigated extensively. We studied the effect of processing-induced defects on the photoconductive properties of single crystals of BaZrS 3 . We achieved Ohmic contacts to single crystals of BaZrS 3 and observed positive surface photovoltage, which is typically observed in p -type semiconductors. However, mechanical polishing of BaZrS 3 to remove the surface oxide leads to dense deformation grain boundaries and to trap-dominated photoconductive response. In comparison, Ohmic contacts achieved in cleaved crystals leave fewer deformation defects and greatly improve optoelectronic properties. Defect-controlled crystal growth and contact fabrication are potentially limiting factors for achieving a high photon-to-excited-electron conversion efficiency in BaZrS 3 .
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2024-02-20
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Jan Seidel
Eric R. Hoglund
Patrick E. Hopkins
Rehan Kapadia
Jayakanth Ravichandran
Boyang Zhao
Huan Zhao
Shantanu Singh
Huandong Chen
Ragib Ahsan
Fei Hou
Maruda Shanmugasundaram
Andrey Krayev
Han Htoon
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