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纳米棒向纳米线的化学转变:各向异性金纳米结构的可逆生长与溶解

Chemical Transformation of Nanorods to Nanowires: Reversible Growth and Dissolution of Anisotropic Gold Nanostructures.

作者信息

Khanal Bishnu P, Zubarev Eugene R

机构信息

Department of Chemistry , Rice University , 6100 Main Street , Houston , Texas 77005 , United States.

出版信息

ACS Nano. 2019 Feb 26;13(2):2370-2378. doi: 10.1021/acsnano.8b09203. Epub 2019 Feb 14.

Abstract

This manuscript describes a reversible wet chemical process for the tip-selective one-dimensional (1D) growth and dissolution of gold nanorods (AuNRs) and gold nanowires (AuNWs). Tip-selective dissolution was achieved by oxidation of AuNRs with a Au(III)/CTAB complex, whereas the growth of AuNRs was carried out by the reduction of Au(I) ions on the AuNR surface with a mild reducing agent, ascorbic acid (AA). Both the dissolution and growth processes are highly tip selective and proceed exclusively in one dimension. A decrease in the aspect ratio (AR) of AuNRs during the dissolution resulted in a blue shift in the longitudinal plasmon band (LPB) position, and red shifts in the LPB position were achieved by increasing the AR by 1D growth of AuNRs. Both growth and dissolution processes are fully controllable and can be stopped and resumed at any given time when the desired AR and/or LPB position is achieved. In addition, the tip-selective 1D growth of AuNRs can be continued with the additional supply of Au(I)/CTAB/AA solution to produce extremely long AuNWs.

摘要

本文描述了一种可逆的湿化学过程,用于金纳米棒(AuNRs)和金纳米线(AuNWs)的尖端选择性一维(1D)生长和溶解。通过用Au(III)/CTAB络合物氧化AuNRs实现尖端选择性溶解,而AuNRs的生长则是通过用温和的还原剂抗坏血酸(AA)在AuNR表面还原Au(I)离子来进行的。溶解和生长过程都具有高度的尖端选择性,并且仅在一维方向上进行。溶解过程中AuNRs的纵横比(AR)降低导致纵向等离子体带(LPB)位置发生蓝移,而通过AuNRs的一维生长增加AR可实现LPB位置的红移。生长和溶解过程都完全可控,当达到所需的AR和/或LPB位置时,可以在任何给定时间停止并恢复。此外,通过额外供应Au(I)/CTAB/AA溶液,可以继续AuNRs的尖端选择性一维生长,以生产极长的AuNWs。

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