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利用非线性橡胶溶胀进行各向异性杂化纳米颗粒的本体合成。

Harnessing nonlinear rubber swelling for bulk synthesis of anisotropic hybrid nanoparticles.

作者信息

Ding Tao, Smoukov Stoyan K, Baumberg Jeremy J

机构信息

Department of Materials Science and Metallurgy , University of Cambridge , 27 Charles Babbage Road , Cambridge CB3 0FS , UK . Email:

Nanophotonics Centre , Cavendish Laboratory , University of Cambridge , CB3 0HE , UK . Email:

出版信息

J Mater Chem C Mater. 2014 Nov 7;2(41):8745-8749. doi: 10.1039/c4tc01660b. Epub 2014 Sep 19.

Abstract

Asymmetric hybrid nanoparticles are at the forefront of colloidal chemistry as building blocks for novel structures and applications, as well as for exploring fundamental ways of breaking symmetry in physical systems. Current methods of synthesis have significant limitations in terms of control over synthesis, particle size ranges and polydispersity. We report a facile and scalable synthesis based on the anisotropic swelling of rubber to obtain metal-(polymer rubber) hybrid nanoparticles. Initial Au nanoparticle (NP) seeds are grown larger by reducing HAuCl with divinyl benzene (DVB), while simultaneous radical polymerization of DVB forms a cross-linked rubber layer of PDVB on the Au NP surface. The propensity of rubber to swell nonlinearly in the presence of DVB monomers amplifies initial asymmetries to break the symmetry of the PDVB shell, causing growth of asymmetric protrusions on one side of the core-shell particles, which are fixed by further polymerization. Plasmonic absorption of Au allows us to follow the Au reduction reaction and also suggests potential applications of some of the asymmetric particles in plasmon-enhanced sensing. The polydispersity, determined statistically from TEM and SEM images, of the resulting particles is low (<10%) and their sizes, shapes and metal-polymer ratios are easily tunable.

摘要

不对称杂化纳米粒子作为构建新型结构和应用的胶体化学前沿材料,以及探索物理系统中打破对称性的基本方法,正处于前沿地位。目前的合成方法在合成控制、粒径范围和多分散性方面存在显著局限性。我们报道了一种基于橡胶各向异性膨胀的简便且可扩展的合成方法,以获得金属 -(聚合物橡胶)杂化纳米粒子。初始的金纳米粒子(NP)种子通过用二乙烯基苯(DVB)还原 HAuCl 而长大,同时 DVB 的自由基聚合在金纳米粒子表面形成聚二乙烯基苯(PDVB)的交联橡胶层。橡胶在 DVB 单体存在下非线性膨胀的倾向放大了初始不对称性,从而打破了 PDVB 壳层的对称性,导致核壳粒子一侧出现不对称突起生长,这些突起通过进一步聚合而固定。金的等离子体吸收使我们能够跟踪金的还原反应,并暗示了一些不对称粒子在等离子体增强传感中的潜在应用。通过透射电子显微镜(TEM)和扫描电子显微镜(SEM)图像统计确定的所得粒子的多分散性较低(<10%),并且它们的尺寸、形状和金属 - 聚合物比例易于调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3832/4894071/8f9873329fe5/c4tc01660b-s1.jpg

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