Band-Gap-Engineered Transparent Perovskite Solar Modules to Combine Photovoltaics with Photosynthesis.

Band-Gap-Engineered Transparent Perovskite Solar Modules to Combine Photovoltaics with Photosynthesis.
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DOI:
10.1021/acsami.1c08367
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发表时间:
2021-08
影响因子:
9.5
通讯作者:
Shu-Wen Weng;Asman Tamang;A. Salleo;H. Fujiwara;M. Nakamura;Yiwen Zhang;D. Knipp
Shu-Wen Weng;Asman Tamang;A. Salleo;H. Fujiwara;M. Nakamura;Yiwen Zhang;D. Knipp
中科院分区:
材料科学2区
文献类型:
--
作者:
Shu-Wen Weng;Asman Tamang;A. Salleo;H. Fujiwara;M. Nakamura;Yiwen Zhang;D. Knipp

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设计了一种同时产生电能和化学能的混合能量收集系统,提高了整体能量转换效率。光伏系统与进行光合作用的植物一起构成了该系统。进行光合作用的植物被直接放置在太阳能电池的后面或下面,但是太阳能电池的存在并不影响植物的光合作用过程。太阳能电池的光谱特性经过调整,使植物生长达到最佳状态。为了达到所需的光谱吸收,太阳能电池通过使用高带隙(1.95 eV)混合卤化物钙钛矿进行定制。介绍了如何实现高效的混合能量收集系统的指南。此外,所建议的太阳能组件实现了一个简单的制造过程,这与大多数薄膜太阳能组件的制造一致。
A hybrid energy harvesting system that simultaneously generates electrical energy and chemical energy with an increased overall energy conversion efficiency is designed. A photovoltaic system together with photosynthesis-executing plants forms the system. The photosynthesis-executing plants are placed directly behind or under the solar cells, but the presence of the solar cells does not affect the photosynthesis process of the plant. The spectral characteristics of the solar cells are tuned to allow for optimal plant growth. To achieve the required spectral absorption, the solar cells are tailored by using a high-band-gap (1.95 eV) mixed-halide perovskite. A guide on how to achieve an efficient hybrid energy-harvesting system is introduced. Furthermore, the suggested solar module enables a simple manufacturing process, which is consistent with the fabrication of most thin-film solar modules.