新型压电钛酸锡(\text{SnTiO}_{3})材料的压电能量收集

Swadesh Paul, Shubhankar Barman, Surajit Das, A. Datta
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引用次数: 0

摘要

新型环境友好型压电材料的机械能收集在智能电子应用中具有重要意义。在这项工作中,我们合成并报道了水热法制备的菱面体SnTiO3纳米晶体(40-100 nm)在不同施加力和不同频率下的压电能量收集性能。XRD和HRTEM证实了SnTiO3 (STO)纳米晶的物相和形貌。采用不同比例的SnTiO3纳米晶和聚二甲基硅氧烷(PDMS)制备了压电纳米发电机。在1N和4Hz的周期性冲击下,测量了40 wt. % STO-PDMS复合材料在室温下的短路峰值电流$\boldsymbol{\sim 0.25\text{nA}}$和开路峰值电压$\boldsymbol{\sim 0.2\mathrm{V}}$,表明其作为未来振动能量收割机的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Piezoelectric energy harvesting from novel piezoelectric Tin titanate $(\text{SnTiO}_{3})$ material
Mechanical energy harvesting from novel environment friendly piezoelectric material is useful for smart electronics applications. In this work, we synthesized and report piezoelectric energy harvesting properties at different applied force and at different frequencies from rhombohedral SnTiO3 nanocrystals (40–100 nm) prepared via hydrothermal process. XRD, and HRTEM confirms phase and morphology of the SnTiO3 (STO) nanocrystals. Piezoelectric nano generators were fabricated by using different percentages of SnTiO3 nanocrystals and Poly (dimethyal Siloxane) (PDMS). A short circuit peak current $\boldsymbol{\sim 0.25\text{nA}}$ and open circuit peak voltage $\boldsymbol{\sim 0.2\mathrm{V}}$ at room temperature was measured from the 40 wt. % STO–PDMS composite upon periodic impact of 1N and 4Hz, indicating its' efficacy as a future vibrational energy harvester.
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