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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >A General Synthesis Strategy for Monodisperse Metallic and Metalloid Nanoparticles (In, Ga, Bi, Sb, Zn, Cu, Sn, and Their Alloys) via in Situ Formed Metal Long-Chain Amides
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A General Synthesis Strategy for Monodisperse Metallic and Metalloid Nanoparticles (In, Ga, Bi, Sb, Zn, Cu, Sn, and Their Alloys) via in Situ Formed Metal Long-Chain Amides

机译:通过原位形成的金属长链酰胺单分散金属和准金属纳米粒子(In,Ga,Bi,Sb,Zn,Cu,Sn及其合金)的一般合成策略

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摘要

We report a facile one-pot synthesis of highly monodisperse nanoparticles (5-30 nm in diameter, 5-10% in standard size distribution) of various metals and metalloids such as In, Sn, Bi, Sb, Ga, Cu, Zn, and their alloys (Cu6Sn5, Cu2Sb, BixSb1-x, etc.) using inexpensive commercial precursors. Several of these metals and alloys had not been previously obtained in the form of uniform nanoparticles. The proposed reaction mechanism has been elucidated with multinuclear (H-1, Li-7, Sn-119) NMR spectroscopy combined with DFT and molecular dynamics simulations. Metal chloride is reacted with long-chain primary or secondary amine such as oleylamine and dioctylamine in the presence of a strong Bronsted base that deprotonates the amine and thus promotes the formation of metal long-chain amide. The in situ formed amide is then reduced or thermally decomposed into corresponding metal nanoparticles. This simple methodology eliminates elaborate preparation, storage, and handling of highly reactive, moisture and oxygen sensitive molecular precursors of these metals, while providing a compelling quality of nanomaterials.
机译:我们报告了一种简单的一锅法合成的各种金属和准金属(例如In,Sn,Bi,Sb,Ga,Cu,Zn等)的高度单分散纳米颗粒(直径5-30 nm,标准尺寸分布为5-10%),和它们的合金(Cu6Sn5,Cu2Sb,BixSb1-x等)使用廉价的商业前体。这些金属和合金中的几种以前从未以均匀纳米颗粒的形式获得。结合DFT和分子动力学模拟,通过多核(H-1,Li-7,Sn-119)NMR光谱阐明了拟议的反应机理。在强布朗斯台德碱的存在下,金属氯化物与长链伯胺或仲胺(如油胺和二辛胺)反应,使胺去质子化,从而促进金属长链酰胺的形成。然后将原位形成的酰胺还原或热分解为相应的金属纳米颗粒。这种简单的方法省去了对这些金属的高反应性,对水分和氧敏感的分子前体的精心准备,存储和处理,同时提供了令人信服的纳米材料质量。

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