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請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/25751
標題: Visualization of Anion Vacancy Defect Annihilation in CZTSe Solar Cells by Hydrogen-Assisted Selenization with In Operando X-ray Nanoprobe Studies
作者: Huang, Chih-Yang 
Tseng, Shao-Chin
Chen, Wei-Chao
Yin, Gung-Chian
Chen, Bo-Yi
Chen, Kuei-Hsien
Chen, Li-Chyong
Chen, Cheng-Ying 
關鍵字: CZTSe;anionvacancy;nano-XRF;nano-XBIC;Solar Cells
公開日期: 2024
出版社: AMER CHEMICAL SOC
來源出版物: ACS APPLIED MATERIALS & INTERFACES
摘要: 
The traditional sulfur selenization process in Cu2ZnSn(S,Se)4 (CZTSSe) solar cell fabrication often results in the creation of localized anion vacancies (V S and V Se). These vacancies are considered harmful defects as they can trap carriers generated by light, leading to reduced solar cell efficiency. Moreover, concrete evidence has been lacking on the extent of the impact caused by these anion vacancies. Our research introduces a novel approach: the hydrogen-assisted selenization (HAS) process, specifically designed to minimize localized anion vacancies in Cu2ZnSnSe4 (CZTSe) solar cells. Our investigation, utilizing current-voltage (I-V) and admittance spectroscopy measurements, provides clear insights. We observed notable improvements in carrier collection efficiency and a discernible reduction in defect states. Furthermore, there was a significant decrease in the activation energy required within the solar cell device, dropping from 184 to 145 meV. To delve deeper into the structural and compositional aspects, we employed synchrotron-based X-ray nanoprobes. Through nanoscale X-ray fluorescence and hard X-ray beam-induced current measurements, we can directly observe and document the relationship between the local compositional distribution and photocurrent activity in operando. These comprehensive results furnish strong evidence that mitigating anion vacancies in the CZTSe layer can substantially improve the power conversion efficiency of the CZTSe solar cells. This advancement not only sheds light on the critical role of anion vacancies in solar cell performance but also underscores the effectiveness of the HAS process in enhancing overall device efficiency.
URI: http://scholars.ntou.edu.tw/handle/123456789/25751
ISSN: 1944-8244
DOI: 10.1021/acsami.4c11127
顯示於:水產養殖學系
光電與材料科技學系

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