Peng WangShisheng LinGuqiao DingXiaoqiang LiZhiqian WuShengjiao ZhangZhijuan XuSen XuYanghua LuWenli XuZheyang Zheng
We demonstrate significantly improved photovoltaic response of monolayer molybdenum disulfide (MoS2)/indium phosphide (InP) van der Waals heterostructure induced by graphene quantum dots (GQDs). Raman and photoluminescence measurements indicate that effective charge transfer takes place between GQDs and MoS2, which results in n-type doping of MoS2. The doping effect increases the barrier height at the MoS2/InP heterojunction, thus the averaged power conversion efficiency of MoS2/InP solar cells is improved from 2.1% to 4.1%. The light induced doping by GQD provides a feasible way for developing more efficient MoS2 based heterostructure solar cells.
Shisheng LinPeng WangXiaoqiang LiZhiqian WuZhijuan XuShengjiao ZhangWenli Xu
Sangeun ChoYongcheol JoHyeonseok WooJongmin KimJungwon KwakHyungsang KimHyunsik Im
Sourav SenguptaJ. O. KimAjit V. BarveSourav AdhikaryYamini SharmaNutan GautamSang‐Jun LeeS. K. NohSubhananda ChakrabartiSanjay Krishna
Caiyun ChenHong QiaoShenghuang LinChi Man LukLiu YanZai‐Quan XuJingchao SongYunzhou XueDelong LiJian YuanWenzhi YuChunxu PanShu Ping LauQiaoliang Bao