| Literature DB >> 31536361 |
Junjun Liu1,2, Ziyue Ni1, Proloy Nandi3, Utkur Mirsaidov3,4, Zhifeng Huang1,2,5.
Abstract
Demand for the transfer of chirality from a pre-engineered nanoparticle to any other metal is of fundamental importance for developing a wide range of chirality-related applications. Herein, we show that binary alloy chiral nanoparticles (CNPs) with an engineerable composition can be formed from metallic CNPs with intrinsic structural chirality serving as sacrificial templates (STs), via a galvanic replacement reaction (GRR). This GRR-mediated chirality transfer is a general phenomenon and results in the formation of Cu-Ag CNPs with solid morphology and mesoporous CNPs made of Ag-Au, Ag-Pt, and Ag-Pd. Our study imposes a new component, i.e., structural chirality, on the GRR. The insights from our study improve our fundamental understanding of the GRR principle and devise a versatile method to generate mesoporous alloy CNPs for developing prominent chirality-related applications in asymmetric catalysis, enantiodifferentiation, enantioseparation, biodetection, and bioimaging.Entities:
Keywords: Galvanic replacement reaction; binary alloy; chiral nanoparticles; chirality transfer; glancing angle deposition
Year: 2019 PMID: 31536361 DOI: 10.1021/acs.nanolett.9b03117
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189