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Boosting Cu(In,Ga)Se_(2)Thin Film Growth in Low-Temperature Rapid-Deposition Processes:An Improved Design for the Single-Heating Knudsen Effusion Cell
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作者 Yunxiang Zhang Shuping Lin +5 位作者 Shiqing Cheng Zhichao He zhaojing hu Zhiqiang Zhou Wei Liu Yun Sun 《Engineering》 SCIE EI 2021年第4期534-541,共8页
The Knudsen effusion cell is often used to grow high-quality Cu(In,Ga)Se_(2)(CIGS)thin film in coevaporation processes.However,the traditional single-heating Knudsen effusion cell cannot deliver complete metal selenid... The Knudsen effusion cell is often used to grow high-quality Cu(In,Ga)Se_(2)(CIGS)thin film in coevaporation processes.However,the traditional single-heating Knudsen effusion cell cannot deliver complete metal selenides during the whole deposition process,particularly for a low-temperature deposition process,which is probably due to the condensation and droplet ejection at the nozzle of the crucible.In this study,thermodynamics analysis is conducted to decipher the reason for this phenomenon.Furthermore,a new single-heating Knudsen effusion is proposed to solve this difficult problem,which leads to an improvement in the quality of CIGS film and a relative increase in conversion efficiency of 29%at a growth rate of about 230 nmmin1,compared with the traditional efficiency in a lowtemperature rapid-deposition process. 展开更多
关键词 Cu(In Ga)Se_(2) Knudsen effusion cell CONDENSATION Droplet ejection Low temperature
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Incorporation of Ag into Cu(In,Ga)Se_(2) films in low-temperature process
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作者 zhaojing hu Yunxiang Zhang +7 位作者 Shuping Lin Shiqing Cheng Zhichao He Chaojie Wang Zhiqiang Zhou Fangfang Liu Yun Sun Wei Liu 《Chinese Optics Letters》 SCIE EI CAS CSCD 2021年第11期149-154,共6页
Chalcopyrite Cu(In,Ga)Se_(2)(CIGS) thin films deposited in a low-temperature process(450℃) usually produce fine grains and poor crystallinity. Herein, different Ag treatment processes, which can decrease the melting ... Chalcopyrite Cu(In,Ga)Se_(2)(CIGS) thin films deposited in a low-temperature process(450℃) usually produce fine grains and poor crystallinity. Herein, different Ag treatment processes, which can decrease the melting temperature and enlarge band gap of the CIGS films, were employed to enhance the quality of thin films in a low-temperature deposition process. It is demonstrated that both the Ag precursor and Ag surface treatment process can heighten the crystallinity of CIGS films and the device efficiency. The former is more obvious than the latter. Furthermore, the Urbach energy is also reduced with Ag doping. This work aims to provide a feasible Ag-doping process for the high-quality CIGS films in a low-temperature process. 展开更多
关键词 Cu(In Ga)Se_(2)thin film low-temperature deposition process Ag doping CRYSTALLINITY Urbach energy
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