首页> 外文期刊>Nano Energy >Enhanced-performance bio-triboelectric nanogenerator based on starch polymer electrolyte obtained by a cleanroom-free processing method
【24h】

Enhanced-performance bio-triboelectric nanogenerator based on starch polymer electrolyte obtained by a cleanroom-free processing method

机译:基于通过洁净室的加工方法获得的基于淀粉聚合物电解质的增强性能生物摩擦纳米料

获取原文
获取原文并翻译 | 示例
           

摘要

The study of triboelectric nanogenerators (TENGs) has focused widely on the issue of elevating triboelectrifying capacity. A new recently discovered phenomena of the use of polymers electrolytes for TENGs has been shown to be positive. However, this has not been studied yet in a wide range of materials. Renewable materials, such as biopolymer electrolytes, are still poorly understood regarding their relation to TENG performance. Herein, a polymer electrolyte starch-based bio-TENG was fabricated using a low-cost processing method. The films were electrically characterized at distinct loads, frequencies, thicknesses. Moreover, we complexed the starch polymer with CaCl2 to increase the triboelectrifying capacity and performance. Starch films at 0.5% of salt concentration reached the highest voltage output (1.2 V), exceeding by three-fold of the initial output of the non-complexed pristine biopolymer (0.4 V). Furthermore, the electrical output performance varies positively at both thinner film thicknesses and elevated loads while moisture of films has been proved to be a critical parameter in the electrical performance of TENGs, showing that well dried films performed a higher electrical output than moist samples. Furthermore, despite crack generation after fatigue, starch electrolyte films of TENGs showed an inalterable electrical performance suitable for a bunch of applications. To demonstrate one of these applications we achieved to turn on 100 LEDs using starch electrolyte and silicone ecoflex as opponents in a TENG.
机译:摩擦电纳米液(Tengs)的研究越来越关注摩擦力提升摩擦力的问题。已经显示出繁殖的聚合物电解质的新近发现的现象是阳性的。然而,这尚未在广泛的材料中进行过研究。关于生物聚合物电解质等可再生材料仍然差不多理解,关于它们与Teng性能的关系。在此,使用低成本加工方法制造聚合物电解质的基于生物腾。薄膜以不同的载荷,频率,厚度电表征。此外,我们将淀粉聚合物与CaCl2复制以增加摩擦力和性能。淀粉膜的0.5%的盐浓度达到最高电压输出(1.2V),超过非复合原始生物聚合物的初始输出的三倍(0.4V)。此外,电输出性能在较薄的膜厚度和升高的载荷中变化,而膜的水分被证明是龄的电气性能中的关键参数,表明干燥的薄膜比湿润样品更高的电输出。此外,尽管疲劳后发电,但腾冲的淀粉电解质薄膜显示出适用于一束应用的可易换的电气性能。为了证明我们在腾腾的淀粉电解质和硅胶Ecoflex中达到了100个LED的应用之一。

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