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High-Performance Large-Area and Ecofriendly Luminescent Solar Concentrators Using Copper-Doped InP Quantum Dots

机译:使用掺杂铜的InP量子点的高性能大面积环保型发光太阳能聚光器

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摘要

Colloidal quantum dots (QDs) are promising building blocks for luminescent solar concentrators (LSCs). For their widespread use, they need to simultaneously satisfy non-toxic material content, low reabsorption, high photoluminescence quantum yield, and large-scale production. Here, copper doping of zinc carboxylate-passivated InP core and nano-engineering of ZnSe shell facilitated high in-device quantum efficiency of QDs over 80%, having well-matched spectral emission profile with the photo-response of silicon solar cells. The optimized QD-LSCs showed an optical quantum efficiency of 37% and an internal concentration factor of 4.7 for a 10 × 10-cm device area under solar illumination, which is comparable with the state-of-the-art LSCs based on cadmium-containing QDs and lead-containing perovskites. Synthesis of the copper-doped InP/ZnSe QDs in gram-scale and large-area deposition (3,000 cm ) onto commercial window glasses via doctor-blade technique showed their scalability for mass production. These results position InP-based QDs as a promising alternative for efficient solar energy harvesting.
机译:胶体量子点(QD)是发光太阳能聚光器(LSC)的有前途的构建基块。对于它们的广泛使用,它们需要同时满足无毒材料含量,低重吸收,高光致发光量子产率和大规模生产的要求。在这里,铜的钝化羧酸锌InP核的掺杂和ZnSe壳的纳米工程促进了超过80%的量子点的器件内量子效率高,具有与硅太阳能电池的光响应相匹配的光谱发射曲线。优化的QD-LSC在日光照射下10×10-cm的器件区域显示出37%的光量子效率和4.7的内部集中系数,这与基于镉的最先进LSC相当含有量子点和含铅钙钛矿。通过刮墨刀技术在商用窗户玻璃上以克级和大面积沉积(3,000 cm)合成掺杂铜的InP / ZnSe QDs显示了其可大规模生产的可扩展性。这些结果将基于InP的量子点定位为有效收集太阳能的有希望的替代方法。

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