Core/Shell Nanocrystal Tailored Carrier Dynamics in Hysteresisless Perovskite Solar Cells with ∼20% Efficiency and Long Operational Stability

被引:27
|
作者
Ghosh, Anima [1 ,2 ]
Chaudhary, Dhirendra K. [1 ,2 ]
Mandal, Arnab [1 ,2 ]
Prodhan, Sayan [3 ]
Chauhan, Kamlesh Kumar [3 ]
Vihari, Saket [4 ]
Gupta, Govind [4 ]
Datta, Prasanta Kumar [3 ]
Bhattacharyya, Sayan [1 ,2 ]
机构
[1] IISER Kolkata, Dept Chem Sci, Mohanpur 741246, India
[2] IISER Kolkata, Ctr Adv Funct Mat, Mohanpur 741246, India
[3] Indian Inst Technol IIT Kharagpur, Dept Phys, Kharagpur 721302, W Bengal, India
[4] CSIR Natl Phys Lab, Adv Mat & Devices Div, Dr KS Krishnan Marg, New Delhi, India
来源
JOURNAL OF PHYSICAL CHEMISTRY LETTERS | 2020年 / 11卷 / 03期
关键词
PERFORMANCE; PLANAR; LEAD; EXTRACTION; ELECTRON; SURFACE;
D O I
10.1021/acs.jpclett.9b03774
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The ambient stability, hysteresis, and trap states in organo-halide perovskite solar cells (PSCs) are correlated to the influence of interlayer interfaces and grain boundaries. Astute incorporation of Cu2ZnSnS4 (CZTS) and Au/CZTS core/shell nanocrystals (NCs) can realize the goal of simultaneously achieving better performance and ambient stability of the PSCs. With optimized Au/CZTS NC size and concentration in the photoactive layer, power conversion efficiency can be increased up to 19.97 +/- 0.6% with ambient air stability >800 h, as compared to 14.46 +/- 1.02% for the unmodified devices. Through efficient carrier generation by CZTS and perovskite, accompanied by the plasmonic effect of Au, carrier density is sufficiently increased as validated by transient absorption spectroscopy. NCs facilitate the interfacial charge transfer by suitable band alignment and removal of recombination centers such as metallic Pb-0, surface defects, or impurity sites. NC embedding also increases the perovskite grain size and assists in pinhole filling, reducing the trap state density.
引用
收藏
页码:591 / 600
页数:19
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