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首页> 外文期刊>Nanotechnology >Controllable in situ photo-assisted chemical deposition of CdSe quantum dots on ZnO/CdS nanorod arrays and its photovoltaic application
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Controllable in situ photo-assisted chemical deposition of CdSe quantum dots on ZnO/CdS nanorod arrays and its photovoltaic application

机译:ZnO / CdS纳米棒阵列上CdSe量子点的可控原位光辅助化学沉积及其光伏应用

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摘要

Compound semiconductors have been widely applied in the energy field as light-harvesting materials, conducting substrates and other functional parts. Nevertheless, to effectively grow them in various forms toward objective applications, limitations have often been met to achieving high growth rate, simplicity of method and controllability of growing processes simultaneously. In this work, we have grown a uniform CdSe layer on ZnO/CdS nanorod arrays by a novel in situ photo-assisted chemical deposition method. The morphology and quality of the as-formed material could be significantly influenced by tuning the optical parameters of the injected light. Due to the effect of injected light on the key reactions during the growth, a modified natural light with removal of the UV and IR components seems to be more suitable than monochromic light. An efficiency of 3.59% was achieved without any additional treatment, significantly higher than the efficiency of 2.88% of the sample by conventional CBD method under similar conditions with growth rate one order of magnitude higher. In general, the result has suggested its potential importance for other compound materials and opto-electronic devices.
机译:化合物半导体作为光收集材料,导电衬底和其他功能部件已广泛应用于能源领域。然而,为了有效地以各种形式将它们生长以用于目标应用,常常遇到局限性,难以同时实现高的生长速率,方法的简单性和生长过程的可控性。在这项工作中,我们通过一种新颖的原位光辅助化学沉积方法在ZnO / CdS纳米棒阵列上生长了均匀的CdSe层。可以通过调整注入光的光学参数来显着影响所形成材料的形态和质量。由于注入的光对生长过程中的关键反应有影响,因此经过修饰的自然光(去除了UV和IR成分)似乎比单色光更适合。无需任何额外处理即可达到3.59%的效率,明显高于在相似条件下传统CBD方法的样品的2.88%的效率,且增长率要高一个数量级。通常,该结果表明其对于其他复合材料和光电器件的潜在重要性。

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