...
首页> 外文期刊>Green chemistry >Fully bio-based epoxidized soybean oil thermosets for high performance triboelectric nanogenerators
【24h】

Fully bio-based epoxidized soybean oil thermosets for high performance triboelectric nanogenerators

机译:全基于生物的环氧化大豆热固性高性能摩擦纳米料

获取原文
获取原文并翻译 | 示例

摘要

For the first time, fully bio-derived thermosets have been synthesized from abundantly available, low cost, renewable feedstocks through a simple, solvent-free and catalytic process for the fabrication of triboelectric nanogenerators (TENGs) for sustainable power generation. Thermoset films synthesized from epoxidized soybean oil (ESO) and bio-derived crosslinkers (succinic anhydride, suberic acid and sebacic acid) were coated onto copper conductive electrodes and PTFE (Teflon) was used as a counter or contact triboelectric material. Importantly, these bio-based thermoset materials demonstrated several properties with significant promise for application as TENGs, including excellent thermal stability, water repellency and surface hydrophobicity. The materials are thermally stable up to 250 degrees C and their water uptake is less than 1% after 24-hour immersion, with contact angles between 117.5 degrees and 131.3 degrees. The curing of the films was confirmed by FT-IR and the curing process was revealed by DSC, indicating a slightly higher crosslinking in dicarboxylic acid cured resins. As a result, the mechanical properties of diacid cured films were moderately higher than those of succinic anhydride cured resins. However, the anhydride cured films exhibited higher peak to peak output voltage and current of the TENG of 78 V and 8 mu A, respectively, with a maximum power density of approximate to 1.4 W m(-2)at a load resistance of 400 k Omega at an optimum molar ratio of crosslinker : ESO of 1.5 : 1. The better output performance of succinic anhydride films compared to that of diacid crosslinkers was attributed to the higher concentration of C=O functionalities which was demonstrated by FT-IR results. These promising values are amongst the most significantly reported values for bio-based TENGs, hence thermoset films from ESO present a promising novel alternative for the production of greener TENGs.
机译:首次,完全生物衍生的热固性能够通过大量可用,低成本,可再生原料合成,通过简单,无溶剂和催化工艺来制造用于可持续发电的摩擦纳米液体器(Tengs)。从环氧化大豆油(ESO)和生物衍生的交联剂(琥珀酸酐,脱乙酸和癸二酸)合成的热固性膜涂覆到铜导电电极上,PTFE(Teflon)用作计数器或触点摩擦电材料。重要的是,这些生物基热固性材料展示了几种具有重要许可的特性,适用于繁殖,包括优异的热稳定性,防水性和表面疏水性。在浸泡24小时后,材料热稳定高达250℃,其水吸收小于1%,接触角在117.5度和131.3度之间。通过FT-IR确认膜的固化,通过DSC揭示固化过程,表明二羧酸固化树脂中略微高的交联。结果,二酸固化薄膜的机械性能适度高于琥珀酸酐固化树脂的性质。然而,酸酐固化膜分别表现出较高的峰值,分别具有78V和8μA的龄的峰值输出电压和电流,其最大功率密度在400 k的负载电阻下近似为1.4W m(-2)欧米茄以最佳的交联剂比例:ESO为1.5:1。与二酸交联剂相比,琥珀酸酐膜的更好的输出性能归因于通过FT-IR结果证明的C = O功能的浓度较高。这些有希望的价值观是最显着报告的生物龄的价值之一,因此来自ESO的热固性薄膜为更绿色腾冲的生产提供了一个有前途的新颖替代品。

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