材料科学
异质结
原子层沉积
工作职能
光电子学
能量转换效率
太阳能电池
钝化
硅
图层(电子)
氧化物
双层
氧化钼
聚合物太阳能电池
钼
带隙
降级(电信)
纳米技术
化学工程
冶金
电子工程
生物
工程类
膜
遗传学
作者
Jingye Li,Tianyu Pan,Jilei Wang,Shuangying Cao,Yinyue Lin,Bram Hoex,Zhongquan Ma,Linfeng Lu,Liyou Yang,Baoquan Sun,Dongdong Li
标识
DOI:10.1021/acsami.0c09877
摘要
Molybdenum oxide (MoOX, X < 3) has been successfully demonstrated as an efficient passivating hole-selective contact in crystalline Si (c-Si) heterojunction solar cells because of its large bandgap (∼3.2 eV) and work function (∼6.9 eV). However, the severe performance degradation coming from the instability of the MoOX and its interfaces has not been well addressed. In this work, we started with a c-Si(p)/MoOX heterojunction solar cell that yielded a power conversion efficiency (PCE) of 15.86%, in which the MoOX film was synthesized by industry-compatible atomic layer deposition (ALD). The initial PCE dropped to 10.20% after 2 days because of severe migration of O and Ag at the MoOX/Ag interface. We solved this by the insertion of a CrOX layer between the MoOX layer and the Ag electrode. The solar cell was found to be stable for more than 8 months in air because of the suppression of interface degradation. Our work demonstrates an effective way of improving the stability of silicon solar cells with transition metal oxide carrier selective contacts.
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