New semiconductor design for organic electrochemical transistors

C. Nielsen
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Abstract

The emerging research field of organic bioelectronics has developed rapidly over the last few years and elegant examples of biomedically important applications including for example in-vivo drug delivery and neural interfacing have been demonstrated. The organic electrochemical transistor (OECT), capable of transducing small ionic fluxes into electronic signals in an aqueous environment, is an ideal device to utilise in bioelectronic applications. To date, nearly all OECTs have been fabricated with commercially available PEDOT:PSS, heavily limiting the variability in performance. We have previously shown that tailor-made semiconducting polymers are fully capable of matching the performance of PEDOT:PSS. To capitalise on this discovery and the versatility of the organic chemistry toolbox, further materials development is needed. In my talk I will discuss our recent work in this area covering examples of both molecular and polymeric semiconducting materials and their performance in bioelectronic devices.
有机电化学晶体管的新型半导体设计
有机生物电子学的新兴研究领域在过去几年中发展迅速,生物医学上重要应用的优雅例子,包括体内给药和神经接口。有机电化学晶体管(OECT)能够在水环境中将小的离子通量转换为电子信号,是生物电子学应用的理想器件。到目前为止,几乎所有的oect都是用市售的PEDOT:PSS制造的,这严重限制了性能的可变性。我们之前已经证明,定制的半导体聚合物完全能够匹配PEDOT:PSS的性能。为了利用这一发现和有机化学工具箱的多功能性,需要进一步的材料开发。在我的演讲中,我将讨论我们最近在这一领域的工作,包括分子和聚合物半导体材料及其在生物电子器件中的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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