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扩展硫属化物纳米晶网络的种类:通过阳离子交换反应制备 Ag(2)Se 凝胶和气凝胶。

Expanding the repertoire of chalcogenide nanocrystal networks: Ag(2)Se gels and aerogels by cation exchange reactions.

机构信息

Department of Chemistry, Wayne State University, Detroit, Michigan 48202, USA.

出版信息

J Am Chem Soc. 2009 Mar 4;131(8):2800-1. doi: 10.1021/ja900042y.

Abstract

Cation exchange is shown to be a simple and efficient method to prepare nanostructured Ag(2)Se gels and aerogels from CdSe gel precursors. Treatment of CdSe wet gels with AgNO(3) yields, for the first time, Ag(2)Se gels, and these are transformed to high surface area, nanostructured aerogels by supercritical fluid drying. The striking similarity in crystallite size, morphology, and surface area characteristics between CdSe and the corresponding Ag(2)Se aerogels supports a mechanism in which the bonding within the gel network remains globally unchanged, even as the structural attributes of the primary particle components are undergoing a dramatic transformation (hexagonal CdSe to cubic Ag(2)Se). Intriguingly, the rapid exchange also enables exquisite control of composition on the macroscale; reduced concentrations of Ag(+) lead to two-component (i.e., CdSe inside, Ag(2)Se outside) heterogeneous structures of mm-cm dimensions. Overall, this methodology offers a simple approach for the generation of porous nanocrystalline metal chalcogenide networks of known or new compositions.

摘要

阳离子交换被证明是一种简单有效的方法,可从 CdSe 凝胶前体制备纳米结构的 Ag2Se 凝胶和气凝胶。CdSe 湿凝胶用 AgNO3 处理,首次得到 Ag2Se 凝胶,然后通过超临界流体干燥将其转化为具有高比表面积的纳米结构气凝胶。CdSe 和相应的 Ag2Se 气凝胶在晶粒尺寸、形态和表面积特征方面的惊人相似性支持这样一种机制,即即使主要颗粒成分的结构属性发生剧烈转变(六方 CdSe 转变为立方 Ag2Se),凝胶网络内的键合在全局上保持不变。有趣的是,快速交换还能够在宏观尺度上对组成进行精确控制;Ag+浓度降低会导致具有 mm-cm 尺寸的二组分(即,内部是 CdSe,外部是 Ag2Se)异质结构。总体而言,该方法为生成已知或新组成的多孔纳米晶金属硫属化物网络提供了一种简单的方法。

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