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首页> 外文期刊>Bulletin of the Korean Chemical Society >Syntheses of CdTe Quantum Dots and Nanoparticles through Simple Sonochemical Method under Multibubble Sonoluminescence Conditions
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Syntheses of CdTe Quantum Dots and Nanoparticles through Simple Sonochemical Method under Multibubble Sonoluminescence Conditions

机译:在多泡声致发光条件下通过简单的声化学方法合成CdTe量子点和纳米粒子

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摘要

Colloidal cadmium telluride (CdTe) quantum dots (QDs) and their nanoparticles have been synthesized by one pot sonochemical reactions under multibubble sonoluminescence (MBSL) conditions, which are quite mild and facile compared to other typical high temperature solution-based methods. For a typical reaction, CdCl2 and tellurium powder with hexadecylamine and trioctylphosphine/trioctylphosphineoxide (TOP/TOPO) as a dispersant were sonicated in toluene solvent at 20 KHz and a power of 220 W for 5-40 min at 60 °C. The sizes of CdTe particles, in a very wide size range from 2 nm-30 urn, were controllable by varying the sonicating and thermal heating conditions. The prepared CdTe QDs show different colors from pale yellow to dark brown and corresponding photoluminescence properties due mainly to the quantum confinement effect. The CdTe nanoparticles of about 20 nm in average were found to have band gap of 1.53 eV, which is the most optimally matched band gap to solar spectrum.
机译:胶态碲化镉(CdTe)量子点(QDs)及其纳米粒子是在多泡声致发光(MBSL)条件下通过一锅声化学反应合成的,与其他典型的基于高温溶液的方法相比,该反应非常温和且容易。对于典型的反应,将CdCl2和碲粉与十六烷基胺和三辛基膦/三辛基膦氧化物(TOP / TOPO)作为分散剂在20 KHz的甲苯溶剂中超声处理,并于60°C于220 W的功率下超声处理5-40分钟。通过改变超声处理和热加热条件,可以控制CdTe颗粒的大小,范围从2 nm至30 um。制备的CdTe量子点显示出从浅黄色到深棕色的不同颜色,并具有相应的光致发光特性,这主要是由于量子限制效应。发现平均约20 nm的CdTe纳米颗粒的带隙为1.53 eV,这是与太阳光谱最匹配的带隙。

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