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Multiple exciton generation in semiconductor quantum dots and novel molecules: Applications to third generation solar photon conversion:

机译:半导体量子点和新型分子中的多个激子生成:第三代太阳能光子转换的应用:

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In order to utilize solar power for the production of electricity and fuel on a massive scale, it will be necessary to develop solar photon conversion systems that have an appropriate combination of high efficiency (delivered watts/m2) and low capital cost ($/m2). One potential, long-term approach to high efficiency is to utilize the unique properties of quantum dot nanostructures to control the relaxation dynamics of photogenerated carriers to produce either enhanced photocurrent through efficient photogenerated electron-hole pair multiplication or enhanced photopotential through hot electron transport and transfer processes. To achieve these desirable effects it is necessary to understand and control the dynamics of hot electron and hole relaxation, cooling, charge transport, and interfacial charge transfer of the photogenerated carriers with femtosecond (fs) to ns time resolution.
机译:为了利用太阳能电力来生产电力和燃料的大规模规模,有必要开发出具有高效率(交付瓦特/ M2)和低资本成本的适当组合的太阳能光子转换系统($ / M2 )。一种潜力,长期的高效率方法是利用量子点纳米结构的独特性质来控制光生载体的松弛动力学,通过有效的光发生的电子 - 空穴对通过热电子传输和转移来产生增强的光电流。流程。为了达到这些所需的效果,需要了解和控制具有飞秒(FS)到NS时间分辨率的光生载体的热电子和孔松弛,冷却,电荷传输和界面电荷转移的动态。

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