Krajczewski Jan, Ambroziak Robert, Kudelski Andrzej
University of Warsaw, Faculty of Chemistry 1 Pasteur St. 02-093 Warsaw Poland
RSC Adv. 2021 Jan 12;11(5):2575-2595. doi: 10.1039/d0ra09337h. eCollection 2021 Jan 11.
In this review article, various methods for the light-induced manipulation of plasmonic nanoobjects are described, and some sample applications of this process are presented. The methods of the photo-induced nanomanipulation analyzed include methods based on: the light-induced isomerization of some compounds attached to the surface of the manipulated object causing formation of electrostatic, host-guest or covalent bonds or other structural changes, the photo-response of a thermo-responsive material attached to the surface of the manipulated nanoparticles, and the photo-catalytic process enhanced by the coupled plasmons in manipulated nanoobjects. Sample applications of the process of the photo-aggregation of plasmonic nanosystems are also presented, including applications in surface-enhanced vibrational spectroscopies, catalysis, chemical analysis, biomedicine, and more. A detailed comparative analysis of the methods that have been applied so far for the light-induced manipulation of nanostructures may be useful for researchers planning to enter this fascinating field.
在这篇综述文章中,描述了用于光诱导操纵等离子体纳米物体的各种方法,并展示了该过程的一些示例应用。所分析的光诱导纳米操纵方法包括基于以下方面的方法:附着在被操纵物体表面的某些化合物的光诱导异构化,导致形成静电、主客体或共价键或其他结构变化;附着在被操纵纳米颗粒表面的热响应材料的光响应;以及被操纵纳米物体中耦合等离子体增强的光催化过程。还展示了等离子体纳米系统光聚集过程的示例应用,包括在表面增强振动光谱学、催化、化学分析、生物医学等方面的应用。对迄今为止用于光诱导操纵纳米结构的方法进行详细的比较分析,可能对计划进入这个迷人领域的研究人员有用。