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Colloidal quantum dot based solar cells: from materials to devices

机译:基于胶体量子点的太阳能电池:从材料到设备

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摘要

Colloidal quantum dots (CQDs) have attracted attention as a next-generation of photovoltaics (PVs) capable of a tunable band gap and low-cost solution process. Understanding and controlling the surface of CQDs lead to the significant development in the performance of CQD PVs. Here we review recent progress in the realization of low-cost, efficient lead chalcogenide CQD PVs based on the surface investigation of CQDs. We focus on improving the electrical properties and air stability of the CQD achieved by material approaches and growing the power conversion efficiency (PCE) of the CQD PV obtained by structural approaches. Finally, we summarize the manners to improve the PCE of CQD PVs through optical design. The various issues mentioned in this review may provide insight into the commercialization of CQD PVs in the near future.
机译:胶体量子点(CQD)作为下一代光伏(PV)能够引起可调带隙和低成本解决方案而受到关注。理解和控制CQD的表面导致CQD PV的性能有了重大发展。在这里,我们基于对CQD的表面调查,回顾了在实现低成本,高效硫族化物CQD铅PV方面的最新进展。我们专注于通过材料方法提高CQD的电性能和空气稳定性,并通过结构方法提高CQD PV的功率转换效率(PCE)。最后,我们总结了通过光学设计改善CQD PV的PCE的方式。本文中提到的各种问题可能会在不久的将来为CQD PV的商业化提供见识。

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