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有机介体诱导的单层保护金纳米粒子超晶格结构转变。

Organic mediator-induced structural transformation in superlattices of monolayer-protected gold nanoparticles.

机构信息

Graduate School of Material Science, University of Hyogo, 3-2-1 Koto, Kamigori-cho, Ako-gun, Hyogo 678-1297, Japan.

出版信息

J Colloid Interface Sci. 2011 Feb 1;354(1):55-60. doi: 10.1016/j.jcis.2010.10.053. Epub 2010 Oct 28.

Abstract

N-acetylglutathione (NAG)-protected gold nanoparticles self-assemble into three-dimensional (3D) face-centered cubic (fcc)-type superlattices at an air/water interface under highly acidic conditions. To prepare the well-defined superlattices, 1month's incubation is at least necessary since the size growth of the as-prepared nanoparticles is essential. Addition of 4-pyridinecarboxyic acid (PyC), a bifunctional hydrogen-bonding mediator, promotes the formation of the superlattices, which are created for about 2weeks' storage. Interestingly, PyC-induced nanoparticle superlattices are in a body-centered tetragonal (bct) structure. The fcc-to-bct phase transformation would be due to stronger interaction between NAG and PyC than that between NAG molecules on the gold nanoparticle surfaces.

摘要

N-乙酰谷胱甘肽(NAG)保护的金纳米粒子在高度酸性条件下自组装成三维(3D)面心立方(fcc)型超晶格,位于空气/水界面。为了制备具有良好定义的超晶格,至少需要 1 个月的孵育时间,因为所制备的纳米粒子的尺寸生长是必不可少的。添加 4-吡啶甲酸(PyC),一种双功能氢键供体,可促进超晶格的形成,在储存约 2 周后即可形成超晶格。有趣的是,PyC 诱导的纳米粒子超晶格具有体心四方(bct)结构。fcc 到 bct 的相转变是由于 NAG 和 PyC 之间的相互作用强于金纳米粒子表面上 NAG 分子之间的相互作用。

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