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Photoelectric and Thermoelectric Dual Modulation Via a Ternary Composite

机译:通过三元复合材料进行光电和热电双重调制

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摘要

Materials for simultaneous photoelectric and thermo‐electric dual conversions and modulations, where photon can modulate the thermoelectric conversion, and temperature can modulate the photoelectric conversion, may find potential applications where light (including a laser) can remotely turn on, turn off, or modulate a thermoelectric generator, a cooler, or a temperature sensor, and vice versa, temperature (heating/cooling) can turn on, turn off, or modulate a photoelectric device such as a photo detector or a solar cell. Here, it is demonstrated that such simultaneous dual conversion or modulation can be achieved via a ternary composite, e.g., a poly‐3‐hexyl‐thiophene thin‐film doped with both phenyl‐C61‐butyric acid methyl ester and iodine. This finding may result in the development of lightweight, flexible shape, cost‐effective, renewable, environmentally friendly, biocompatible, and scalable materials, devices, and systems for clean energy harvestings (such as solar and waste heat dual energy harvesting) as well as light/heat dual‐sensing sensors, modulators, and controllers.
机译:同时进行光电和热电双重转换和调制的材料,其中光子可以调制热电转换,温度可以调制光电转换,可能会发现潜在的应用,其中光(包括激光)可以远程打开,关闭或调制在热电发电机,冷却器或温度传感器上,反之亦然,温度(加热/冷却)可以打开,关闭或调制光电设备,例如光电探测器或太阳能电池。在此证明,可以通过三元复合材料实现这种同时的双重转换或调制,例如,同时掺有苯基C61-丁酸甲酯和碘的聚3-己基噻吩薄膜。这一发现可能会导致开发用于清洁能源收集(例如太阳能和废热双重能源收集)的轻巧,灵活的形状,具有成本效益,可再生,环保,生物相容和可扩展的材料,设备和系统,以及光/热双感应传感器,调制器和控制器。

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