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Organic Semiconductors Processed from Synthesis‐to‐Device in Water

机译:从水中的合成到装置加工有机半导体

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摘要

Organic semiconductors (OSCs) promise to deliver next‐generation electronic and energy devices that are flexible, scalable and printable. Unfortunately, realizing this opportunity is hampered by increasing concerns about the use of volatile organic compounds (VOCs), particularly toxic halogenated solvents that are detrimental to the environment and human health. Here, a cradle‐to‐grave process is reported to achieve high performance p‐ and n‐type OSC devices based on indacenodithiophene and diketopyrrolopyrrole semiconducting polymers that utilizes aqueous‐processes, fewer steps, lower reaction temperatures, a significant reduction in VOCs (>99%) and avoids all halogenated solvents. The process involves an aqueous mini‐emulsion polymerization that generates a surfactant‐stabilized aqueous dispersion of OSC nanoparticles at sufficient concentration to permit direct aqueous processing into thin films for use in organic field‐effect transistors. Promisingly, the performance of these devices is comparable to those prepared using conventional synthesis and processing procedures optimized for large amounts of VOCs and halogenated solvents. Ultimately, the holistic approach reported addresses the environmental issues and enables a viable guideline for the delivery of future OSC devices using only aqueous media for synthesis, purification and thin‐film processing.
机译:有机半导体(OSC)承诺提供灵活,可扩展和可印刷的下一代电子和能量设备。不幸的是,通过增加对环境和人类健康不利的挥发性有机化合物(VOC)的担忧,实现了这种机会,通过增加挥发性有机化合物(VOC)的担忧,阻碍了这一机会。这里,据报道,基于茚环二酮蛋白质和二酮吡咯醇半导体聚合物来实现高性能的P型和N型OSC器件,其利用水性方法,更少的步骤,更低的反应温度,VOC的显着减少(> 99%),避免所有卤化溶剂。该方法涉及含水型乳液聚合,其在足够的浓度下产生OSC纳米颗粒的表面活性剂稳定的水分散体,以允许将水性加工成薄膜用于有机场效应晶体管。承诺,这些装置的性能与使用常规合成和处理程序制备的那些,用于大量VOCS和卤代溶剂的制备。最终,整体方法报道了解决环境问题,并且可以使用仅使用用于合成,净化和薄膜处理的水性介质来提供可行的OSC器件的可行准则。

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