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首页> 外文期刊>Journal of the Brazilian Chemical Society >The Role that Electrolytes Play in the Synthesis of Water-Soluble CdTe Quantum Dots Prepared at Ambient Temperature
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The Role that Electrolytes Play in the Synthesis of Water-Soluble CdTe Quantum Dots Prepared at Ambient Temperature

机译:电解质在常温下制备的水溶性CdTe量子点合成中的作用

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>In this work, we have synthesized CdTe quantum dots (QDs) dispersed in an aqueous medium at ambient temperature, and investigated their optical properties. Synthesis of CdTe QDs in the presence of simple amines removed the need for an additional energy source and inert atmosphere, in a simple and inexpensive experimental setup. The use of ammonia or hydrazine promoted nanoparticle growth by kinetic nanocrystal agglomeration in the initial growth stage. These weak electrolytes acted in the electrical double layer during the growth of the nanocrystals. A comparative study on the concentration of hydrazine in the reaction medium helped to investigate their role in nanocrystal growth. Substitution of hydrazine for ethylenediamine and other electrolytes like sodium chloride and ammonium chloride contributed to a better understanding of the mechanism that underlies the use of primary amines in the synthesis of CdTe. The synthesis conditions afforded the highest photoluminescence quantum yield for CdTe QDs prepared at room temperature (27.5%).
机译:>在这项工作中,我们合成了在环境温度下分散在水性介质中的CdTe量子点(QD),并研究了它们的光学性质。在简单胺的存在下,在简单胺的存在下合成CdTe QD不需要额外的能源和惰性气氛。氨或肼的使用在初始生长阶段通过动力学纳米晶体的团聚促进了纳米颗粒的生长。这些弱电解质在纳米晶体的生长过程中作用于双电层。对反应介质中肼浓度的比较研究有助于研究其在纳米晶体生长中的作用。用肼取代乙二胺和其他电解质(如氯化钠和氯化铵)有助于更好地理解在CdTe合成中使用伯胺的机理。合成条件为在室温下制备的CdTe QD提供了最高的光致发光量子产率(27.5%)。

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