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A One‐Structure‐Based Multieffects Coupled Nanogenerator for Simultaneously Scavenging Thermal, Solar, and Mechanical Energies

机译:一种基于结构的多效应耦合纳米发电机,可同时消除热能,太阳能和机械能

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Rapid advances in various energy harvesters impose the challenge on integrating them into one device structure with synergetic effects for full use of the available energies from the environment. Here, a multieffect coupled nanogenerator based on ferroelectric barium titanate is reported. It promotes the ability to simultaneously scavenging thermal, solar, and mechanical energies. By integration of a pyroelectric nanogenerator, a photovoltaic cell, and a triboelectric–piezoelectric nanogenerator in one structure with only two electrodes, multieffects interact with each other to alter the electric output, and a complementary power source with peak current of ≈1.5 μA, peak voltage of ≈7 V, and platform voltage of ≈6 V is successfully achieved. Compared with traditional hybridized nanogenerators with stacked architectures, the one‐structure‐based multieffects coupled nanogenerator is smaller, simpler, and less costly, showing prospective in practical applications and represents a new trend of all‐in‐one multiple energy scavenging.
机译:各种能量收集器的飞速发展对将它们集成到具有协同作用的装置结构中,以充分利用环境中的可用能量提出了挑战。在此,报道了基于铁电钛酸钡的多效耦合纳米发电机。它提高了同时清除热能,太阳能和机械能的能力。通过将热释电纳米发电机,光伏电池和摩擦电-压电纳米发电机集成在一个只有两个电极的结构中,多重效应会相互影响以改变电输出,而互补电源的峰值电流约为1.5μA,峰值成功实现了≈7V的最高电压和≈6V的平台电压。与具有堆叠式结构的传统杂交纳米发电机相比,基于单结构的多效耦合纳米发电机体积更小,更简单,成本更低,在实际应用中显示出广阔的前景,并代表了多机合一的多能量清除的新趋势。

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