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p–n hybrid bulk heterojunction enables enhanced photothermoelectric performance with UV-Vis-NIR light

机译:p-n 混合体异质结可通过紫外-可见-近红外光增强光热电性能

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摘要

Infrared light accounts for the vast majority of natural light energy, however, the challenge of converting infrared light directly into electricity is too difficult. The photothermoelectric (PTE) effect (connecting the photothermal (PT) and thermoelectric (TE) effects) provides a feasible solution for the indirect conversion of infrared light into electrical energy. Therefore, it is of great significance to actively seek and explore materials with good PT and TE performance to fully harvest infrared light energy. Here, we prepared an organic–inorganic hybrid bulk heterojunction film by combining poly(3,4-ethylene-dioxythiophene):polystyrenesulphonate (PEDOT:PSS) and ZnO nanowires (ZnO-NWs). This common composite strategy is able to utilize the ultra-wide spectrum ranging from ultraviolet-visible (UV-Vis) to near-infrared (NIR) light to realize light-to-electricity conversion based on the PTE effect. ZnO-NWs can not only increase the Seebeck coefficient of PEDOT:PSS, but also enhance the absorption of the hybrid film under the NIR light. Thereby, the enhancement of the photothermal-induced voltage was achieved due to the separation of generated electron–hole pairs in the built-in electric field induced by a photothermal gradient. This study provides a new suggestion for improving the PTE performance of the material and making better use of solar energy.
机译:红外线占绝大多数然而,自然的光能量的挑战红外线直接转换成电力是太难了。(连接photothermoelectric (PTE)的影响光热光谱分析(PT)和热电(TE)影响)提供了一种可行的解决方案间接红外光转化为电能。意义,积极寻求和探索材料与PT和TE性能好完全收获红外线能量。准备一个有机-无机杂化体异质结薄膜相结合

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