Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8955654 | Materials Letters | 2018 | 11 Pages |
Abstract
In the present work, the effect mechanisms of the sulfurization temperature on the Cu2MnSnS4 (CMTS) absorbers and the photovoltaic characteristics of devices were studied systematically. The results indicate that an increase in sulfurization temperature form 500â¯Â°C to 560â¯Â°C significantly improves the crystallinity and morphology, lowers the band gap of the CMTS absorbers, and eventually enhances the photovoltaic performance. However, a further increase in the temperature to 590â¯Â°C degrades the crystallinity and morphology. By tuning sulfurization temperature, the short current density (Jsc) and power conversion efficiency (PCE) increase over fourfold. When the temperature optimized to 560â¯Â°C, the CMTS solar cell shows the highest PCE of 0.91% with Jscâ¯=â¯7.71â¯mA·cmâ2, Vocâ¯=â¯320â¯mV and FFâ¯=â¯37%.
Related Topics
Physical Sciences and Engineering
Materials Science
Nanotechnology
Authors
Jiejin Yu, Hongmei Deng, Qiao Zhang, Jiahua Tao, Lin Sun, Pingxiong Yang, Junhao Chu,