通过电化学兴奋剂驱动的无侧链n型半导体梯形聚合物的水化
Jiajie Guo1,2, Lucas Q Flagg3, Duyen K Tran4
1Molecular Engineering and Sciences Institute, University of Washington, Seattle, Washington98195, United States.
Journal of the American Chemical Society
|January 11, 2023
概括
有机电化学晶体管在水中意外运行. 最初的兴奋剂会导致不可逆转的水分和胀,为有效的离子传输和稳定性创造水友环境.
科学领域:
- 材料科学
- 电化学
- 聚合物科学
背景情况:
- 有机电化学晶体管 (OECT) 对于灵活的电子设备至关重要.
- 聚化 (BBL) 是一种疏水性聚合物,具有潜在的OECT应用.
- 了解BBL在水环境中的行为是其在OECT中的使用的关键.
研究的目的:
- 调查BBL的OECT性能.
- 为了阐明BBL在水性环境中运行的机制,尽管它具有疏水性.
- 分析电化学兴奋剂和脱兴奋剂周期中的BBL结构变化.
主要方法:
- 电化学石英晶体微平衡 (EQCM) 重力测量
- 在操作中的原子力显微镜 (AFM).
- 现场和在操作中的宽角X射线散射 (GIWAXS).
主要成果:
- 不管分子质量如何,BBL薄膜在初始电化学减少时会显著膨胀.
- 在手术中,GIWAXS在脱时显示出比之前观察到的更大的胀和更少的收缩.
- 在第一个兴奋剂循环中发生了不可逆转的水分流程,导致持续的水分保留和叶片扩张.
结论:
- 最初的兴奋剂会诱导不可逆转的水合,在基于BBL的OECT中形成离子运输必不可少的水友环境.
- 尽管吸收了水,但BBL的刚性梯子结构保持了晶体秩序,确保了稳定性.
- 由于BBL的染性和结构完整性的独特组合,使其能够有效的离子传输和强大的性能.
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