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CdSe Ring- and Tribulus-Shaped Nanocrystals: Controlled Synthesis, Growth Mechanism, and Photoluminescence Properties

机译:CdSe环和Tri状的纳米晶体:受控的合成,生长机理和光致发光性质。

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摘要

With air-stable and generic reagents, CdSe nanocrystals with tunable morphologies were prepared by controlling the temperature in the solution reaction route. Thereinto, the lower reaction temperature facilitates the anisotropic growth of crystals to obtain high-yield CdSe ring- and tribulus-shaped nanocrystals with many branches on their surfaces. The photoluminescence properties are sensitive to the nature of particle and its surface. The products synthesized at room temperature, whose surfaces have many branches, show higher blue shift and narrower emission linewidths (FWHM) of photoluminescence than that of samples prepared at higher temperature, whose surfaces have no branches. Microstructural studies revealed that the products formed through self-assembly of primary crystallites. Nanorings formed through the nonlinear attachment of primary crystallites, and the branches on the surfaces grew by linear attachment at room temperature. And the structure of tribulus-shaped nanoparticle was realized via two steps of aggregation, i.e., random and linear oriented aggregation. Along with the elevation of temperature, the branches on nanocrystal surfaces shortened gradually because of the weakened linear attachment.
机译:使用空气稳定的通用试剂,通过控制溶液反应路线中的温度,制备了具有可调形态的CdSe纳米晶体。其中,较低的反应温度促进了晶体的各向异性生长,从而获得了在其表面上具有许多分支的高产率的CdSe环状和双峰形的纳米晶体。光致发光性质对粒子及其表面的性质敏感。在室温下合成的表面具有许多分支的产品,与在较高温度下没有分支的样品相比,具有更高的蓝移和更窄的光致发光线宽(FWHM)。微观结构研究表明,这些产物是通过初级晶粒的自组装形成的。纳米环是通过初级晶粒的非线性附着形成的,表面上的分支在室温下通过线性附着而增长。通过两个步骤的聚集即随机和线性取向的聚集来实现状纳米颗粒的结构。随着温度的升高,由于线性连接的减弱,纳米晶体表面的分支逐渐缩短。

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