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利用 Ag 纳米晶作为晶种,实现了荧光 ZnS 纳米棒和纳米线的尺寸和形状依赖性生长。

Size- and shape-dependent growth of fluorescent ZnS nanorods and nanowires using Ag nanocrystals as seeds.

机构信息

Key Laboratory for Special Functional Materials, Henan University, Kaifeng 475004, China.

出版信息

Nanoscale. 2012 Oct 21;4(20):6509-14. doi: 10.1039/c2nr31863f.

Abstract

High-quality, monodisperse, and size-controlled Ag-ZnS nanorods or nanowires have been synthesized successfully using Ag nanocrystals as seeds. Such one-dimensional colloidal Ag-ZnS nanorods or nanowires having a purposefully controlled diameter in the range of 5-9 nm and a length of 18-600 nm were obtained by altering the reaction conditions, such as concentration, reaction time, reaction temperature, and diameter of Ag nanocrystals. The conjunction interface of Ag-ZnS nanorods or nanowires consists of the (200) plane of Ag nanocrystal and (101) plane of ZnS rod or wire, the <101> directions of ZnS nanorods grow preferentially. Based on the photoluminescence and lifetime of Ag-ZnS nanorods, it was found that Ag nanocrystals enhanced the radiative rate eventually, the fluorescence intensity of Ag-ZnS nanorods can be tuned by changing the size of the Ag seeds. The Ag-ZnS nanorods or nanowires showed greatly improved optical properties as compared to ZnS nanocrystals, the maximum emission was around 402 nm and the photoluminescence quantum yield was up to 30% when 5 nm Ag nanocrystals were used as seeds.

摘要

成功地使用 Ag 纳米晶作为晶种合成了高质量、单分散且尺寸可控的 Ag-ZnS 纳米棒或纳米线。通过改变反应条件,如浓度、反应时间、反应温度和 Ag 纳米晶的直径,可以获得具有 5-9nm 范围内有意控制的直径和 18-600nm 长度的一维胶体 Ag-ZnS 纳米棒或纳米线。Ag-ZnS 纳米棒或纳米线的连接界面由 Ag 纳米晶的(200)面和 ZnS 棒或线的(101)面组成,ZnS 纳米棒优先沿<101>方向生长。基于 Ag-ZnS 纳米棒的光致发光和寿命,发现 Ag 纳米晶最终增强了辐射速率,通过改变 Ag 晶种的尺寸可以调谐 Ag-ZnS 纳米棒的荧光强度。与 ZnS 纳米晶体相比,Ag-ZnS 纳米棒或纳米线表现出大大改善的光学性质,当使用 5nm 的 Ag 纳米晶作为晶种时,最大发射约为 402nm,光致发光量子产率高达 30%。

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