Evaporated CdSe for Efficient Polycrystalline CdSeTe Thin-Film Solar Cells
微晶
材料科学
光电子学
纳米技术
冶金
作者
Sabin Neupane,Deng-Bing Li,Manoj K. Jamarkattel,Abasi Abudulimu,Chun‐Sheng Jiang,Sandip S. Bista,Alisha Adhikari,Sanjeeb Budhathoki,H.M.A. Sharif,Krishna Prasad Lamichhane,Tyler Brau,Adam B. Phillips,Ambalanath Shan,Randy J. Ellingson,Michael J. Heben,Yanfa Yan
出处
期刊:ACS energy letters [American Chemical Society] 日期:2024-12-04卷期号:: 6233-6237被引量:1
标识
DOI:10.1021/acsenergylett.4c02874
摘要
Recent progress has shown that alloying cadmium telluride (CdTe) with cadmium selenide (CdSe) to create a CdSexTe1–x (CdSeTe) gradient region can significantly boost the performance of polycrystalline CdSeTe thin-film solar cells. However, improper CdSeTe alloying might introduce problematic band alignment and deleterious voids at the front interface, limiting the benefit maximization of this technique. Here, we show that the CdSe layers deposited by thermal evaporation result in CdSeTe cells with a higher performance than the sputtered CdSe. This is because evaporated CdSe can avoid the formation of voids at the front interface, producing improved front junction quality with suppressed front junction nonradiative recombination. The champion cell using evaporated CdSe demonstrated a power conversion efficiency (PCE) of 19.7%, much higher than 18.1% in the cell using sputtered CdSe.