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A welding phenomenon of dissimilar nanoparticles in dispersion

机译:分散体中异质纳米颗粒的焊接现象

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摘要

The oriented attachment of small nanoparticles (NPs) is recognized as an important mechanism involved in the growth of inorganic nanocrystals. However, non-oriented attachment of dissimilar NPs has been rarely observed in dispersion. This communication reports a welding phenomenon occurred directly between as-synthesized dispersions of single-component Au and chalcogenide NPs, which leads to the formation of asymmetric Au-chalcogenide hybrid NPs (HNPs). The welding of dissimilar NPs in dispersion is mainly driven by the ligand desorption-induced conformal contact between NPs and the diffusion of Au into chalcogenide NPs. The welding process can occur between NPs with distinct shapes or different capping agents or in different solvent media. A two-step assembly-welding mechanism is proposed for this process, based on our in situ electron spin resonance measurements and ab initio molecular dynamics simulation. The understanding of NP welding in dispersion may lead to the development of unconventional synthetic tools for the fabrication of hybrid nanostructures with diverse applications.
机译:小纳米颗粒(NPs)的定向附着被认为是参与无机纳米晶体生长的重要机制。但是,在分散体中很少观察到异种NP的非定向附着。该通讯报告说,单组分Au的合成分散体和硫族化物NP之间直接发生了焊接现象,这导致了不对称的Au硫族化物杂化NP(HNP)的形成。分散体中异种NP的焊接主要由配体解吸诱导的NP之间的共形接触以及Au扩散到硫族化物NP中所驱动。焊接过程可能在具有不同形状或不同封端剂的NP之间或在不同的溶剂介质中发生。基于我们的原位电子自旋共振测量和从头算分子动力学模拟,为此过程提出了两步组装焊接机制。对分散中NP焊接的理解可能会导致开发用于制造具有多种应用的混合纳米结构的非常规合成工具。

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