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首页> 外文期刊>Angewandte Chemie >Reversible Supracolloidal Self-Assembly of Cobalt Nanoparticles to Hollow Capsids and Their Superstructures
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Reversible Supracolloidal Self-Assembly of Cobalt Nanoparticles to Hollow Capsids and Their Superstructures

机译:钴纳米粒子的可逆宿瓣自组装到空心衣壳及其上层建筑

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摘要

The synthesis and spontaneous, reversible supra-colloidal hydrogen bond-driven self-assembly of cobalt nanoparticles (CoNPs) into hollow shell-like capsids and their directed assembly to higher order superstructures is presented. CoNPs and capsids form in one step upon mixing dicobalt octacarbonyl (Co2CO8) and p-aminobenzoic acid (pABA) in 1,2-dichlorobenzene using heating-up synthesis without additional catalysts or stabilizers. This leads to pABA capped CoNPs (core ca. 5 nm) with a narrow size distribution. They spontaneously assemble into tunable spherical capsids (d approximate to 50-200 nm) with a few-layered shells, as driven by inter-nanoparticle hydrogen bonds thus warranting supracolloidal self-assembly. The capsids can be reversibly disassembled and reassembled by controlling the hydrogen bonds upon heating or solvent exchanges. The superparamagnetic nature of CoNPs allows magnetic-field-directed self-assembly of capsids to capsid chains due to an interplay of induced dipoles and inter-capsid hydrogen bonds. Finally, self-assembly on air-water interface furnishes lightweight colloidal framework films.
机译:呈现了合成和自发性,可逆的上胶体氢键驱动的钴纳米粒子(刚件)进入中空壳状衣壳的空心壳状衣壳及其定向组件。使用加热合成在1,2-二氯苯中混合在1,2-二氯苯羰基(CO 2 CO 8)和PABA)的情况下在1,2-二氯苯中的夹持物和衣壳形式,无需另外的催化剂或稳定剂。这导致PABA盖章(核心CA.5nm),尺寸分布窄。它们自发地组装成具有几层壳的可调谐球形衣壳(D近似50-200nm),其由纳米颗粒氢键驱动,因此需要进行宿瓣自组装。通过在加热或溶剂交换时控制氢键可以可逆地拆卸和重新组装衣壳。由于诱导的偶极和衣壳间氢键的相互作用,康塞的超顺磁性允许衣壳的磁场定向自组装到衣壳链中。最后,在空气水界面上的自组装提供轻量级胶体框架薄膜。

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