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首页> 外文期刊>Nature Communications >Cascade surface modification of colloidal quantum dot inks enables efficient bulk homojunction photovoltaics
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Cascade surface modification of colloidal quantum dot inks enables efficient bulk homojunction photovoltaics

机译:胶体量子点油墨的级联表面改性可实现高效的散装同性全调光伏

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Control over carrier type and doping levels in semiconductor materials is key for optoelectronic applications. In colloidal quantum dots (CQDs), these properties can be tuned by surface chemistry modification, but this has so far been accomplished at the expense of reduced surface passivation and compromised colloidal solubility; this has precluded the realization of advanced architectures such as CQD bulk homojunction solids. Here we introduce a cascade surface modification scheme that overcomes these limitations. This strategy provides control over doping and solubility and enables n-type and p-type CQD inks that are fully miscible in the same solvent with complete surface passivation. This enables the realization of homogeneous CQD bulk homojunction films that exhibit a 1.5 times increase in carrier diffusion length compared with the previous best CQD films. As a result, we demonstrate the highest power conversion efficiency (13.3%) reported among CQD solar cells.
机译:控制半导体材料中的载流子类型和掺杂水平是光电应用的关键。在胶体量子点(CQDS)中,这些性能可以通过表面化学改性来调节,但到目前为止,这是以降低的表面钝化和受损的胶体溶解度为代价完成的;这禁止实现高级架构,如CQD散装同性全调实体。在这里,我们介绍了一种克服级联修改方案,克服了这些限制。该策略提供了对掺杂和溶解度的控制,并且能够在具有完全表面钝化的相同溶剂中完全混溶的N型和P型CQD油墨。这使得能够实现与先前最好的CQD薄膜相比表现出载体扩散长度的增加1.5倍的1.5倍。因此,我们展示了CQD太阳能电池中报告的最高功率转换效率(13.3%)。

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