Wang Le, Zheng Jiapeng, Wang Kaiyu, Khan Majid, Hu Ningneng, Li Hao, Li Liang, Wang Jianfang, Ni Weihai
Jiangsu Key Laboratory of Frontier Material Physics and Devices, School of Physical Science and Technology, Soochow University, Suzhou, Jiangsu 215006, China.
Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong SAR 999077, China.
ACS Appl Mater Interfaces. 2024 May 15;16(19):24951-24960. doi: 10.1021/acsami.4c03457. Epub 2024 Apr 30.
Chiral plasmonic nanocrystals have recently attracted increasing attention in circular polarization-dependent photocatalysis driven by hot carriers. While being concealed in traditional ensemble measurements, the individual chiral photocatalytic activity of nanocrystals can exclusively be revealed by directly correlating the circular differential photocurrent response to helical morphologies using single-particle techniques. Herein, we develop a method named circular differential photocurrent mapping (CDPM) and demonstrate that CDPM can be used to characterize the circular differential hot electron (CDHE) response from individual Au nanohelicoids (AuNHs) on a TiO photoanode in a photoelectrochemical cell. The single-particle circular differential scattering and CDHE measurements were interpreted with calculations performed on a model in direct correlation to the helical morphologies of the nanocrystal. While CDHE response was found inactive at a dipolar resonance of 750 nm, helicity-convoluted sites of HE generation were identified on the AuNH at a specific higher-order mode of 550 nm, resulting in a significant response of CDHE in association with the handedness of the AuNH. Details of circular differential contributions were further resolved by examining the efficiencies of individual AuNHs in terms of -factors. Our study provides a powerful microscopic method at the single-particle level for the photocatalytic characterization of chiral nanocrystals, gaining fundamental insights into the photocatalysis of chirality, especially toward plasmon-induced asymmetrical photochemistry or photoelectrochemistry.
手性等离子体纳米晶体最近在热载流子驱动的圆偏振依赖光催化中受到越来越多的关注。虽然在传统的总体测量中被掩盖,但纳米晶体的单个手性光催化活性可以通过使用单粒子技术将圆差分光电流响应与螺旋形态直接关联来单独揭示。在此,我们开发了一种名为圆差分光电流映射(CDPM)的方法,并证明CDPM可用于表征光电化学电池中TiO光阳极上单个金纳米螺旋体(AuNHs)的圆差热电子(CDHE)响应。通过对与纳米晶体螺旋形态直接相关的模型进行计算,对单粒子圆差散射和CDHE测量进行了解释。虽然发现CDHE响应在750 nm的偶极共振处不活跃,但在550 nm的特定高阶模式下,在AuNH上识别出了HE产生的螺旋度卷积位点,导致CDHE与AuNH的手性相关的显著响应。通过根据-因子检查单个AuNHs的效率,进一步解析了圆差贡献的细节。我们的研究为手性纳米晶体的光催化表征提供了一种在单粒子水平上强大的微观方法,对手性光催化,特别是对等离子体诱导的不对称光化学或光电化学有了基本的认识。