A review: advancing organic electronics through the lens of ionic liquids and polymerized ionic liquids

Swati Arora and Nagendra Verma
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Abstract

The technological world has undergone significant progress over the last 60 years through advances in electronics; nonetheless, a lot needs to be accomplished for constructing devices that can toggle between desired functions. This review provides a brief look at recent developments in innovative chemistries involving fine-tuning the molecular properties of polymerized ionic liquids to create new kinds of responsive organic electronic devices, thus highlighting the versatility of polymerized ionic liquids in promising a bright future for advanced organic electronics. This review also reinforces the need to customize materials for contemporary applications, as doing so can improve the functionality of sophisticated devices. In addition, the review sheds light on a novel class of materials referred to as “doubly polymerized ionic liquids”. This class of materials features negligible ionic conductivity, providing a solid groundwork for constructing ion-locked devices that can be used to attain novel technological applications. We anticipate this review will close research gaps and promote discoveries in the fields of organic electronics, polymer chemistry, and polymer physics.

Abstract Image

综述:从离子液体和聚合离子液体的角度推进有机电子学的发展
在过去的 60 年里,电子技术的发展使科技世界取得了长足的进步;然而,要构建可在所需功能之间切换的设备,还有许多工作要做。本综述简要介绍了创新化学的最新发展,其中涉及微调聚合离子液体的分子特性,以制造新型响应式有机电子器件,从而突出了聚合离子液体的多功能性,为先进有机电子学带来了光明的前景。本综述还强调了为当代应用定制材料的必要性,因为这样做可以提高精密设备的功能。此外,本综述还揭示了一类被称为 "双重聚合离子液体 "的新型材料。这一类材料的特点是离子传导性可忽略不计,为构建可用于实现新型技术应用的离子锁定器件提供了坚实的基础。我们希望这篇综述能填补有机电子学、高分子化学和高分子物理学领域的研究空白,并促进这些领域的新发现。
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