鲍桥梁教授课题组在ACS Nano上发表论文

发布时间:2015-02-14访问量:1085设置

题目:

Two-Dimensional CH3NH3PbI3 Perovskite: Synthesis and Optoelectronic Application

作者:

Jingying Liu, Yunzhou Xue†,‡, Ziyu Wang, Zai-Quan Xu,Changxi Zheng§, Bent Weber, Jingchao Song,Yusheng Wang, Yuerui Lu, Yupeng Zhang*,†, and Qiaoliang Bao*,‡,

单位:

Department of Materials Science and Engineering, §Department of Civil Engineering, and School of Physics, Monash University, Wellington Road, Clayton, Victoria 3800, Australia

Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices, and Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University, Suzhou 215123, People’s Republic of China

Research School of Engineering, College of Engineering and Computer Science, the Australian National University, Canberra, ACT2601, Australia

摘要:

Hybrid organic-inorganic perovskite materials have received substantial research attention due to their impressively high performance in photovoltaic devices. As one of the oldest functional materials, it is intriguing to explore the optoelectronic properties in perovskite after reducing it into a few atomic layers in which two-dimensional (2D) confinement may get involved. In this work, we report a combined solution process and vapor-phase conversion method to synthesize 2D hybrid organicinorganic perovskite (i.e., CH3NH3PbI3) nanocrystals as thin as a single unit cell (1.3 nm). High-quality 2D perovskite crystals have triangle and hexagonal shapes, exhibiting tunable photoluminescence while the thickness or composition is changed. Due to the high quantum efficiency and excellent photoelectric properties in 2D perovskites, a high-performance photodetector was demonstrated, in which the current can be enhanced significantly by shining 405 and 532 nm lasers, showing photoresponsivities of 22 and 12 AW1 with a voltage bias of 1 V, respectively. The excellent optoelectronic properties make 2D perovskites building blocks to construct 2D heterostructures for wider optoelectronic applications.

影响因子:

12.881

分区情况:

1

链接:

http://pubs.acs.org/doi/abs/10.1021/acsnano.5b07791



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