Ag(I)-Thiolate-Protected Silver Nanoclusters for Solar Cells: Electrochemical and Spectroscopic Look into the Photoelectrode/Electrolyte Interface

被引:40
作者
Abbas, Muhammad A. [1 ]
Yoon, Seog Joon [2 ,3 ]
Kim, Hahkjoon [4 ]
Lee, Junghyun [5 ]
Kamat, Prashant V. [2 ,3 ]
Bang, Jin Ho [1 ,5 ,6 ]
机构
[1] Hanyang Univ, Nanosensor Res Inst, 55 Hanyangdaehak Ro, Ansan 15588, Gyeonggi Do, South Korea
[2] Univ Notre Dame, Notre Dame Radiat Lab, Notre Dame, IN 46556 USA
[3] Univ Notre Dame, Dept Chem & Biochem, Notre Dame, IN 46556 USA
[4] Duksung Womens Univ, Dept Chem, Seoul 01369, South Korea
[5] Hanyang Univ, Dept Bionano Technol, Ansan 15588, South Korea
[6] Hanyang Univ, Dept Chem & Mol Engn, Ansan 15588, South Korea
基金
新加坡国家研究基金会;
关键词
nanoclusters; solar energy conversion; aggregation-induced emission; electron transfer; charge recombination; EXCITED-STATE BEHAVIOR; ELECTRON INJECTION; METAL NANOCLUSTERS; OPTICAL-PROPERTIES; GOLD NANOCLUSTERS; EFFICIENCY; ENERGY; NANOPARTICLES; FLUORESCENCE; CLUSTERS;
D O I
10.1021/acsami.9b00049
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Intrinsic low stability and short excited lifetimes associated with Ag nanoclusters (NCs) are major hurdles that have prevented the full utilization of the many advantages of Ag NCs over their longtime contender, Au NCs, in light energy conversion systems. In this report, we diagnosed the problems of conventional thiolated Ag NCs used for solar cell applications and developed a new synthesis route to form aggregation-induced emission (AIE)-type Ag NCs that can significantly overcome these limitations. A series of Ag(0)/Ag(I)-thiolate core/shell-structured NCs with different core sizes were explored for photoelectrodes, and the nature of the two important interfacial events occurring in Ag NC-sensitized solar cells (photoinduced electron transfer and charge recombination) were unveiled by in-depth spectroscopic and electrochemical analyses. This work reveals that the subtle interplay between the light absorbing capability, charge separation dynamics, and charge recombination kinetics in the photoelectrode dictates the solar cell performance. In addition, we demonstrate significant improvement in the photocurrent stability and light conversion efficiency that have not been achieved previously. Our comprehensive understanding of the critical parameters that limit the light conversion efficiency lays a foundation on which new principles for designing Ag NCs for efficient light energy conversion can be built.
引用
收藏
页码:12492 / 12503
页数:12
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