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具有可调光学手性和催化活性表面的手性金钯合金纳米棒

Chiral Au-Pd Alloy Nanorods with Tunable Optical Chirality and Catalytically Active Surfaces.

作者信息

Liu Chuang, Sun Lichao, Yang Guizeng, Cheng Qingqing, Wang Chen, Tao Yunlong, Sun Xuehao, Wang Zixu, Zhang Qingfeng

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, China.

出版信息

Small. 2024 Jun;20(23):e2310353. doi: 10.1002/smll.202310353. Epub 2023 Dec 27.

Abstract

Integrating the plasmonic chirality with excellent catalytic activities in plasmonic hybrid nanostructures provides a promising strategy to realize the chiral nanocatalysis toward many chemical reactions. However, the controllable synthesis of catalytically active chiral plasmonic nanoparticles with tailored geometries and compositions remains a significant challenge. Here it is demonstrated that chiral Au-Pd alloy nanorods with tunable optical chirality and catalytically active surfaces can be achieved by a seed-mediated coreduction growth method. Through manipulating the chiral inducers, Au nanorods selectively transform into two different intrinsically chiral Au-Pd alloy nanorods with distinct geometric chirality and tunable optical chirality. By further adjusting several key synthetic parameters, the optical chirality, composition, and geometry of the chiral Au-Pd nanorods are fine-tailored. More importantly, the chiral Au-Pd alloy nanorods exhibit appealing chiral catalytic activities as well as polarization-dependent plasmon-enhanced nanozyme catalytic activity, which has great potential for chiral nanocatalysis and plasmon-induced chiral photochemistry.

摘要

将等离子体手性与等离子体杂化纳米结构中的优异催化活性相结合,为实现针对许多化学反应的手性纳米催化提供了一种有前景的策略。然而,可控合成具有定制几何形状和组成的催化活性手性等离子体纳米颗粒仍然是一项重大挑战。在此证明,通过种子介导的共还原生长方法可以实现具有可调光学手性和催化活性表面的手性金 - 钯合金纳米棒。通过操纵手性诱导剂,金纳米棒选择性地转变为两种不同的具有独特几何手性和可调光学手性的本征手性金 - 钯合金纳米棒。通过进一步调整几个关键合成参数,对手性金 - 钯纳米棒的光学手性、组成和几何形状进行了精细调整。更重要的是,手性金 - 钯合金纳米棒表现出吸引人的手性催化活性以及偏振依赖性等离子体增强纳米酶催化活性,在手性纳米催化和等离子体诱导的手性光化学方面具有巨大潜力。

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