光伏系统
材料科学
二硒化钨
纳米技术
石墨烯
光电子学
范德瓦尔斯力
单层
工程物理
费米能量
可再生能源
电子
电气工程
物理
化学
生物化学
量子力学
分子
过渡金属
工程类
催化作用
作者
Kwan‐Ho Kim,Maksim Andreev,Soodon Choi,Jaewoo Shim,Hogeun Ahn,Jason Lynch,Taeran Lee,Jaehyeong Lee,Koosha Nassiri Nazif,Aravindh Kumar,Pawan Kumar,Hyongsuk Choo,Deep Jariwala,Krishna C. Saraswat,Jin‐Hong Park
出处
期刊:ACS Nano
[American Chemical Society]
日期:2022-04-18
卷期号:16 (6): 8827-8836
被引量:33
标识
DOI:10.1021/acsnano.1c10054
摘要
A rapid surge in global energy consumption has led to a greater demand for renewable energy to overcome energy resource limitations and environmental problems. Recently, a number of van der Waals materials have been highlighted as efficient absorbers for very thin and highly efficient photovoltaic (PV) devices. Despite the predicted potential, achieving power conversion efficiencies (PCEs) above 5% in PV devices based on van der Waals materials has been challenging. Here, we demonstrate a vertical WSe2 PV device with a high PCE of 5.44% under one-sun AM1.5G illumination. We reveal the multifunctional nature of a tungsten oxide layer, which promotes a stronger internal electric field by overcoming limitations imposed by the Fermi-level pinning at WSe2 interfaces and acts as an electron-selective contact in combination with monolayer graphene. Together with the developed bottom contact scheme, this simple yet effective contact engineering method improves the PCE by more than five times.
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