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Nanoscale Adv
February 2020
Zhejiang Key Laboratory of Carbon Materials, College of Chemistry and Material Engineering, Wenzhou University Wenzhou 325027 People's Republic of China
As the essential component of a quantum dot-sensitized solar cell (QDSC), the counter electrode (CE) plays an important role in electron transfer and catalytic reduction acquisition throughout the device. A novel route to design multilayer functionalized CuS thin films as CEs with high catalytic activity and enhanced stability, as well as large specific surface area and high conductivity, is presented. Firstly, Mo-based films were prepared by magnetron sputtering on a glass substrate, and then porous CuZnMo conductive films were formed by etching with hydrochloric acid.
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