通过滴加法控制双金属和多金属纳米晶体的成分和元素分布

0 CHEMISTRY, MULTIDISCIPLINARY
Chenxiao Wang, Jianlong He, Younan Xia
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引用次数: 0

摘要

金属纳米晶体的胶体合成通常依赖于利用还原动力学来控制其大小、形状、内部结构和成分。虽然前三个特征都很容易控制,但要控制纳米晶体的组成仍然具有挑战性,因为在合成过程中,还原率以及原子的生成率会呈指数衰减。通过将前驱体的还原率稳定在稳定状态,滴加法已成为纳米晶体胶体合成的一种变革性途径。与传统的一次注入法相比,本视角强调了滴加法在控制双金属和多金属纳米晶体的组成和元素分布方面的优势。我们的分析表明,滴加法有望实现成分可控的复杂纳米晶体的确定性合成,从而应用于一系列领域,尤其是与催化和能源转换相关的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Controlling the composition and elemental distribution of bi- and multi-metallic nanocrystals via dropwise addition

Controlling the composition and elemental distribution of bi- and multi-metallic nanocrystals via dropwise addition

Controlling the composition and elemental distribution of bi- and multi-metallic nanocrystals via dropwise addition
Colloidal synthesis of metal nanocrystals often relies on using reduction kinetics to manipulate their size, shape, internal structure and composition. Whereas the first three features can all be readily manipulated, it remains challenging to control the composition of nanocrystals because the reduction rate, and thus the production rate of atoms, follows an exponential decay during the synthesis. By stabilizing the reduction rate of a precursor in the steady state, dropwise addition has emerged as a transformative route for the colloidal synthesis of nanocrystals. This Perspective highlights the advantages of dropwise addition over traditional one-shot injection for controlling the composition and elemental distribution of bi- and multi-metallic nanocrystals. Our analysis demonstrates the promise of dropwise addition for achieving the deterministic synthesis of complex nanocrystals with controlled compositions for a range of applications, especially those related to catalysis and energy conversion. By stabilizing the reduction rate of a precursor in the steady state, dropwise addition has emerged as a transformative route for the colloidal synthesis of nanocrystals. This Perspective highlights the advantages of dropwise addition over one-shot injection for controlling the composition and elemental distribution of bi- and multi-metallic nanocrystals.
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CiteScore
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