...
首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Scavenging Biomechanical Energy Using High-Performance, Flexible BaTiO3 Nanocube/PDMS Composite Films
【24h】

Scavenging Biomechanical Energy Using High-Performance, Flexible BaTiO3 Nanocube/PDMS Composite Films

机译:使用高性能,柔性BATIO3纳米阀/ PDMS复合薄膜清除生物力学能源

获取原文
获取原文并翻译 | 示例

摘要

Highly flexible, biocompatible, large-scale production of BaTiO3 nanocube (BTO NC)/poly(dimethylsiloxane) (PDMS) composite films (CFs) prepared via a simple, cost-effective solution casting technique are reported for the first time for high-performance piezoelectric nanogenerators (PNGs). The crystalline BTO NCs were synthesized via a simple low-temperature molten salt method. The piezoelectric output performance of the CF was investigated as a function of the weight ratio of the BTO NCs in the polymer matrix, electrical poling, constant mechanical loading, and low-frequency biomechanical energy harvesting. The composite PNG (CPNG) with 15 wt % of BTO NCs displayed an excellent peak-to-peak voltage (V-pp) of 126.3 V and current density (J) of 77.6 mu A/cm(2) and generated a maximum instantaneous areal power density of 7 mW/cm(2) at 100 M Omega at the low input mechanical pressure of 988.2 Pa. The generated output was sufficient to drive commercial light-emitting diodes and low-powered consumer electronic devices. Next, the CPNG was tested to harness waste biomechanical energy in our daily life; it generated a Vpp of 29 V (human hand palm force) and 55.9 V (human foot stress). The proposed device was lightweight, flexible, eco-friendly, cost-effective, and a potential candidate to generate high electrical output at low mechanical pressure.
机译:通过简单,成本效益的解决方案铸造技术的高度灵活,生物相容性,大规模生产的BATIO3纳米(BTO NC)/聚(二甲基硅氧烷)(PDMS)复合薄膜(CFS)进行高性能。压电纳米液(PNG)。通过简单的低温熔融盐法合成结晶BTO NC。研究了CF的压电输出性能作为聚合物基质中BTO NCs的重量比,电动抛光,恒定机械负荷和低频生物力学能量收集的函数。具有15wt%的BTO NC的复合PNG(CPNG)显示出优异的峰 - 峰值电压(V-PP),126.3V,电流密度(J)为77.6μA/ cm(2),并产生最大瞬时在较低输入机械压力为988.2Pa的低输入机械压力下,在100米ω处的4mW / cm(2)的区域功率密度。产生的输出足以驱动商业发光二极管和低功耗的消费电子设备。接下来,在日常生活中测试CPNG以利用废物生物力学能量;它产生了29 V(人手掌力)和55.9 V(人脚应力)的VPP。所提出的装置重量轻,灵活,环保,成本效益,以及在低机械压力下产生高电输出的潜在候选者。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号