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Effective polarization of ferroelectric materials by using a triboelectric nanogenerator to scavenge wind energy

机译:通过使用摩擦纳米能器来清除风能的铁电材料的有效极化

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Effective polarization of ferroelectric materials can be achieved by utilizing a conventional high-voltage polarization equipment with a high voltage but a large volume. Here, we report that the polarization of a ferroelectric BaTiO3 material can be realized by using a triboelectric nanogenerator (TENG) to scavenge ambient wind energy, where the TENG is ideal for providing a higher voltage, a smaller current, and especially a smaller volume. Both the output voltage and current signals of TENG can be adjustable by controlling different wind speeds, where the TENG can deliver an output voltage pulse ( 10 ms in period) of about 1000 V and an output current pulse of smaller than 100 mu A under a wind speed of about 14 m/s. A piezoelectric constant of larger than 150 pC/N and a pyroelectric constant of larger than 14 nC/cm(2) K were achieved by using a TENG to polarize the ferroelectric BaTiO3 material. A handheld TENG can be also utilized to polarize the ferroelectric material, demonstrating the possibility of obtaining small-scale high-voltage polarization equipments.
机译:通过利用具有高电压但大容量的传统高压偏振设备可以实现铁电材料的有效极化。在这里,我们报告说,通过使用摩擦纳米电磁体(滕)来清除环境风能,可以实现铁电BATIO3材料的极化,以便腾腾是提供更高电压,较小电流,尤其是较小体积的理想选择。 Teng的输出电压和电流信号都可以通过控制不同的风速来调节,其中Teng可以在约1000V的输出电压脉冲(周期内)提供输出电压脉冲(& 10ms)和小于100μA的输出电流脉冲风速约为14米/秒。通过使用腾腾来偏振铁电BATIO3材料,实现了大于150pc / n的压电常数和大于14nc / cm(2)k的热电常数。手持腾腾的腾腾还可用于偏振铁电材料,证明了获得小规模高压偏振设备的可能性。

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