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溶液相催化合成、Ag2S-CdS 棒状异质纳米结构的表征和生长动力学。

Solution-phase catalytic synthesis, characterization and growth kinetics of Ag2S-CdS matchstick-like heteronanostructures.

机构信息

Scientific Research Academy & School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, P. R. China.

出版信息

Dalton Trans. 2014 Mar 14;43(10):3990-8. doi: 10.1039/c3dt52693c.

Abstract

A facile catalytic growth route was developed for the low-temperature solution synthesis of Ag2S-CdS matchstick-like heteronanostructures in oleylamine, which are composed of a Ag2S spherical head and a CdS rod-like stem. Ag2S nanoseeds acted as an effective catalyst for the growth of CdS nanorods and remained at the tip of the resultant nanorods, leading to the formation of Ag2S-CdS heterostructures with a matchstick shape. The diameter of the Ag2S heads and the length of the CdS stems could be easily controlled by varying the molar ratios of the Ag/Cd precursors. The differential scanning calorimetry (DSC) and variable-temperature X-ray diffraction (XRD) studies confirmed that Ag2S catalytic seeds underwent a phase change, that is, they were in a high-temperature superionic conducting cubic structure during the CdS nanorod growth and then converted to a low-temperature monoclinic crystal structure as the reaction was cooled to room temperature. The influence of synthetic temperature on the product morphology was investigated and the morphological evolution at different growth stages was monitored using transmission electron microscopy (TEM). Furthermore, the growth kinetics of the Ag2S-CdS matchstick-like heteronanostructures, including the dissolution, nucleation and growth of CdS within the Ag2S catalyst, was reasonably discussed on the basis of the structural characteristics of the superionic cubic Ag2S catalyst and the low solubility of CdS in Ag2S derived from the Ag2S-CdS binary phase diagram.

摘要

一种简便的催化生长方法被开发出来,用于在油胺中低温溶液合成 Ag2S-CdS 棒状异质纳米结构,其由 Ag2S 球形头部和 CdS 棒状茎组成。Ag2S 纳米种子作为 CdS 纳米棒生长的有效催化剂,并保留在所得纳米棒的尖端,从而形成具有棒状形状的 Ag2S-CdS 异质结构。通过改变 Ag/Cd 前体的摩尔比,可以轻松控制 Ag2S 头部的直径和 CdS 茎的长度。差示扫描量热法(DSC)和变温 X 射线衍射(XRD)研究证实,Ag2S 催化种子经历了相转变,即在 CdS 纳米棒生长过程中处于高温超离子导电立方结构,然后随着反应冷却到室温,转化为低温单斜晶体结构。研究了合成温度对产物形态的影响,并通过透射电子显微镜(TEM)监测不同生长阶段的形态演变。此外,基于超离子立方 Ag2S 催化剂的结构特征和 Ag2S-CdS 二元相图中 CdS 在 Ag2S 中的低溶解度,合理讨论了 Ag2S-CdS 棒状异质纳米结构的生长动力学,包括 CdS 在 Ag2S 催化剂中的溶解、成核和生长。

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