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A novel approach to ambient energy (thermoelectric, piezoelectric and solar-TPS) harvesting: Realization of a single structured TPS-fusion energy device using MAPbI(3)

机译:一种新的环境能量(热电,压电和太阳能TPS)收获方法:使用MAPBI实现单个结构化TPS - 融合能量装置(3)

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摘要

Organic-inorganic lead halide perovskite (MAPbI(3)) has shown remarkable photovoltaic performance along with unique properties such as ambipolar nature, ferroelectric and ultra-high Seebeck coefficient with low thermal conductivity. The exclusive properties of MAPbI(3) enable to use as a fusion energy conversion material for harvesting of ambient energy such as the thermal, mechanical and solar energy. Many researchers have focused on each of these topics separately. This paper demonstrates a flexible single structured TPS-fusion energy device comprising of interdigitated electrodes (IDEs) and MAPbI(3) to harvest thermal, mechanical and solar energy. A TPS-device is individually operated as a thermoelectric, piezoelectric, and solar (TPS)-energy harvester by independently applying a thermal gradient, mechanical force and solar energy. The TPS-device as a thermoelectric generator is exhibited the higher thermoelectric output performance in in-plane temperature gradient than out-of-plane temperature gradient. The obtained piezoelectric output values of the TPS-device as a piezoelectric generator under periodic applied pressure are 1.47 V and 0.56 mu A. The TPS-based photovoltaic device is generated an open-circuit voltage of 0.77 V and a short-circuit current density of 0.022 mA/cm(2). This conceptual demonstration of fusion energy harvesting device using IDE-based structure with light active ambipolar material could introduce innovative approaches in fusion-conversion energy technology.
机译:有机 - 无机铅卤化卤化物钙钛矿(MAPBI(3))显示出显着的光伏性能以及具有低导热率的Ambipolar性质,铁电和超高塞贝克系数的独特性能。 MAPBI(3)的独占性能使用作融合能量转换材料,用于收集环境能量,例如热,机械和太阳能。许多研究人员分别专注于每个主题。本文演示了一种柔性单结构化TPS融合能量装置,其包括交叉的电极(IDE)和MAPBI(3),以收获热,机械和太阳能。通过独立地施加热梯度,机械力和太阳能,TPS装置被作为热电,压电和太阳能(TPS) - 衡量收割机单独操作。作为热电发电机的TPS - 装置在平面内温度梯度方面具有比平面外温度梯度更高的热电输出性能。在周期施加压力下作为压电发电机的所得压电输出值为1.47V和0.56μA。基于TPS的光伏器件产生0.77V的开路电压和短路电流密度0.022 mA / cm(2)。这种使用基于IDE的结构的融合能量收集装置的概念性演示可以在融合余处材料中引入融合转换能源技术的创新方法。

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