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Fabrication of Cubic Nanocages and Nanoframes by Dealloying Au/Ag Alloy Nanoboxes with an Aqueous Etchant Based on Fe(NO3)3 or NH4OH

机译:通过与基于Fe(NO3)3或NH4OH的水性蚀刻剂处理Au / Ag合金纳米盒脱胶来制备立方纳米笼和纳米框架

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摘要

This paper describes a two-step procedure for generating cubic nanocages and nanoframes. In the first step, Au/Ag alloy nanoboxes were synthesized through the galvanic replacement reaction between Ag nanocubes and an aqueous HAuCl4 solution. The second step involved the selective removal (or dealloying) of Ag from the alloy nanoboxes with an aqueous etchant based on Fe(NO3)3 or NH4OH. The use of a wet etchant other than HAuCl4 for the dealloying process allows one to better control the wall thickness and porosity of resultant nanocages because there is no concurrent deposition of Au. By increasing the amount of Fe(NO3)3 or NH4OH added to the dealloying process, nanoboxes derived from 50-nm Ag nanocubes could be converted into nanocages and then cubic nanoframes with surface plasmon resonance (SPR) peaks continuously shifted from the visible region to 1200 nm. It is also possible to obtain nanocages with relatively narrow SPR peaks (with an FWHM as small as 180 nm) by controlling the amount of HAuCl4 used for the galvanic replacement reaction and thus optimization of the percentage of Au in the alloy nanoboxes.
机译:本文描述了生成立方纳米笼和纳米框架的两步过程。第一步,通过Ag纳米立方体与HAuCl4水溶液之间的电流置换反应,合成了Au / Ag合金纳米盒。第二步涉及使用基于Fe(NO3)3或NH4OH的水性蚀刻剂从合金纳米盒中选择性去除(或脱合金)Ag。在脱合金过程中使用除HAuCl4以外的湿蚀刻剂可以更好地控制所得纳米笼的壁厚和孔隙度,因为不会同时沉积Au。通过增加添加到脱合金过程中的Fe(NO3)3或NH4OH的量,可以将源自50 nm Ag纳米立方体的纳米盒转换为纳米笼,然后将具有表面等离振子共振(SPR)峰的立方纳米框架从可见区域连续转移到1200海里通过控制用于电置换反应的HAuCl4的量,从而优化合金纳米盒中Au的百分比,也可以获得具有相对较窄SPR峰(FWHM小至180 nm)的纳米笼。

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