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可切换水凝胶门控有机场效应晶体管。

Switchable Hydrogel-Gated Organic Field-Effect Transistors.

机构信息

Sorbonne Paris Cité, ITODYS, UMR 7086 CNRS , Univ. Paris Diderot , 15 rue J-A de Baïf , Cedex 13 75205 Paris , France.

出版信息

Langmuir. 2018 Mar 27;34(12):3686-3693. doi: 10.1021/acs.langmuir.8b00183. Epub 2018 Mar 16.

Abstract

Stimuli-responsive hydrogels represent a class of materials capable of reversibly switching their morphological and physicochemical characteristics. An ultrathin poly(acrylic acid) film (ca. 6 nm) grafted onto the gate of a p-type EGOFET is studied, and the correlation between the swelling state of the hydrogel and the transistor output characteristics is presented. The hydrogel-related swelling process occurring in basic medium causes an increase in threshold voltage due to the abrupt and intense increase of the negative charge density on the gate electrode. The variation of the drain current during the in situ modification of the pH electrolyte allows a quantitative analysis of the hydrogel switching kinetics. This work shows not only the relevance of EGOFET as an analytical tool in the broad sense, i.e., able to follow in real time phase transition processes of stimuli-responsive materials, but also the relevance of using a hydrogel for field-effect-based (bio)detection according to the ability of such material to overcome the well-known Debye length problematics.

摘要

刺激响应水凝胶是一类能够可逆切换其形态和物理化学特性的材料。研究了接枝在 p 型 EGOFET 栅极上的超薄聚丙烯酸膜(约 6nm),并提出了水凝胶溶胀状态与晶体管输出特性之间的相关性。在碱性介质中发生的与水凝胶相关的溶胀过程会由于栅极电极上负电荷密度的急剧和强烈增加而导致阈值电压增加。在原位调节 pH 电解质期间漏极电流的变化允许对水凝胶开关动力学进行定量分析。这项工作不仅表明了 EGOFET 作为一种分析工具的广泛相关性,即能够实时跟踪刺激响应材料的相变过程,而且还表明了根据这种材料克服众所周知的德拜长度问题的能力,使用水凝胶进行基于场效应的(生物)检测的相关性。

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