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Title: Characterization of basic physical properties of Sb2Se3 and its relevance for photovoltaics

Journal Article · · Frontiers of Optoelectronics
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  1. Huazhong Univ. of Science and Technology, Wuhan (China)
  2. National Renewable Energy Lab. (NREL), Golden, CO (United States)

Antimony selenide (Sb2Se3) is a promising absorber material for thin film photovoltaics because of its attractive material, optical and electrical properties. In recent years, the power conversion efficiency (PCE) of Sb2Se3 thin film solar cells has gradually enhanced to 5.6%. In this article, we systematically studied the basic physical properties of Sb2Se3 such as dielectric constant, anisotropic mobility, carrier lifetime, diffusion length, defect depth, defect density and optical band tail states. Here, we believe such a comprehensive characterization of the basic physical properties of Sb2Se3 lays a solid foundation for further optimization of solar device performance.

Research Organization:
National Renewable Energy Laboratory (NREL), Golden, CO (United States)
Sponsoring Organization:
USDOE Office of Energy Efficiency and Renewable Energy (EERE)
Grant/Contract Number:
AC36-08GO28308
OSTI ID:
1351943
Report Number(s):
NREL/JA-5K00-68320
Journal Information:
Frontiers of Optoelectronics, Vol. 10, Issue 1; ISSN 2095-2759
Publisher:
SpringerCopyright Statement
Country of Publication:
United States
Language:
English

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Cited By (19)

A New Family of Ultralow Loss Reversible Phase‐Change Materials for Photonic Integrated Circuits: Sb 2 S 3 and Sb 2 Se 3 journal July 2020
Highly Anisotropic Sb 2 Se 3 Nanosheets: Gentle Exfoliation from the Bulk Precursors Possessing 1D Crystal Structure journal June 2017
Flexible Linearly Polarized Photodetectors Based on All-Inorganic Perovskite CsPbI 3 Nanowires journal September 2018
Adjusting the Anisotropy of 1D Sb 2 Se 3 Nanostructures for Highly Efficient Photoelectrochemical Water Splitting journal January 2018
Enhanced Sb 2 Se 3 solar cell performance through theory-guided defect control: Enhanced Sb 2 Se 3 solar cell performance journal May 2017
High-throughput method to deposit continuous composition spread Sb 2 (Se x S 1 − x ) 3 thin film for photovoltaic application journal January 2018
Efficient Double Buffer Layer Sb 2 (Se x S 1-x ) 3 Thin Film Solar Cell Via Single Source Evaporation journal August 2018
Review of Recent Progress in Antimony Chalcogenide‐Based Solar Cells: Materials and Devices journal March 2019
Stable 6%-efficient Sb2Se3 solar cells with a ZnO buffer layer journal March 2017
Vapor transport deposition of antimony selenide thin film solar cells with 7.6% efficiency journal June 2018
Compositionally tunable ternary Bi 2 (Se 1−x Te x ) 3 and (Bi 1−y Sb y ) 2 Te 3 thin films via low pressure chemical vapour deposition journal January 2018
A highly [001]-textured Sb 2 Se 3 photocathode for efficient photoelectrochemical water reduction journal January 2019
7.5% n–i–p Sb 2 Se 3 solar cells with CuSCN as a hole-transport layer journal January 2019
Rapid advances in antimony triselenide photocathodes for solar hydrogen generation journal January 2019
Controlled synthesis of ( hk 1) preferentially oriented Sb 2 Se 3 rod arrays by co-evaporation for photovoltaic applications journal January 2019
Sb 2 (S 1− x Se x ) 3 solar cells: the impact of radiative and non-radiative loss mechanisms journal September 2018
Multiwavelength excitation Raman scattering study of Sb 2 Se 3 compound: fundamental vibrational properties and secondary phases detection journal September 2019
Simulation of the Sb 2 Se 3 solar cell with a hole transport layer journal January 2020
Effects of working pressure and power on photovoltaic and defect properties of magnetron sputtered Sb 2 Se 3 thin-film solar cells journal January 2020

Figures / Tables (10)


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