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Progress and Design Concerns of Nanostructured Solar Energy Harvesting Devices

机译:纳米结构太阳能采集装置的进展与设计问题

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摘要

Integrating devices with nanostructures is considered a promising strategy to improve the performance of solar energy harvesting devices such as photovoltaic (PV) devices and photo-electrochemical (PEC) solar water splitting devices. Extensive efforts have been exerted to improve the power conversion efficiencies (PCE) of such devices by utilizing novel nanostructures to revolutionize device structural designs. The thicknesses of light absorber and material consumption can be substantially reduced because of light trapping with nanostructures. Meanwhile, the utilization of nanostructures can also result in more effective carrier collection by shortening the photogenerated carrier collection path length. Nevertheless, performance optimization of nanostructured solar energy harvesting devices requires a rational design of various aspects of the nanostructures, such as their shape, aspect ratio, periodicity, etc. Without this, the utilization of nanostructures can lead to compromised device performance as the incorporation of these structures can result in defects and additional carrier recombination. The design guidelines of solar energy harvesting devices are summarized, including thin film non-uniformity on nanostructures, surface recombination, parasitic absorption, and the importance of uniform distribution of photo-generated carriers. A systematic view of the design concerns will assist better understanding of device physics and benefit the fabrication of high performance devices in the future.
机译:将具有纳米结构的设备集成在一起被认为是提高太阳能收集设备(例如光伏(PV)设备和光电化学(PEC)太阳能水分解设备)性能的有前途的策略。通过利用新颖的纳米结构彻底改变了器件的结构设计,人们已经进行了广泛的努力来改善这种器件的功率转换效率(PCE)。由于使用纳米结构捕获光,因此可以大大减少光吸收剂的厚度和材料消耗。同时,利用纳米结构还可以通过缩短光生载流子收集路径的长度来更有效地收集载流子。然而,纳米结构太阳能收集装置的性能优化需要对纳米结构的各个方面进行合理设计,例如它们的形状,长宽比,周期性等。如果不这样做,由于引入纳米结构,纳米结构的利用会导致器件性能下降。这些结构可能导致缺陷和额外的载流子重组。总结了太阳能收集设备的设计指南,包括纳米结构上的薄膜不均匀,表面复合,寄生吸收以及光生载流子均匀分布的重要性。对设计关注点的系统观点将有助于更好地了解器件物理原理,并在将来有益于高性能器件的制造。

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