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基于单层石墨烯的离子敏感场效应晶体管对 pH 值变化的分析建模。

Analytical modelling of monolayer graphene-based ion-sensitive FET to pH changes.

机构信息

Faculty of Electrical Engineering, Universiti Teknologi Malaysia, Skudai, Johor Bahru, 81310, Malaysia.

出版信息

Nanoscale Res Lett. 2013 Apr 16;8(1):173. doi: 10.1186/1556-276X-8-173.

Abstract

Graphene has attracted great interest because of unique properties such as high sensitivity, high mobility, and biocompatibility. It is also known as a superior candidate for pH sensing. Graphene-based ion-sensitive field-effect transistor (ISFET) is currently getting much attention as a novel material with organic nature and ionic liquid gate that is intrinsically sensitive to pH changes. pH is an important factor in enzyme stabilities which can affect the enzymatic reaction and broaden the number of enzyme applications. More accurate and consistent results of enzymes must be optimized to realize their full potential as catalysts accordingly. In this paper, a monolayer graphene-based ISFET pH sensor is studied by simulating its electrical measurement of buffer solutions for different pH values. Electrical detection model of each pH value is suggested by conductance modelling of monolayer graphene. Hydrogen ion (H+) concentration as a function of carrier concentration is proposed, and the control parameter (Ƥ) is defined based on the electro-active ions absorbed by the surface of the graphene with different pH values. Finally, the proposed new analytical model is compared with experimental data and shows good overall agreement.

摘要

石墨烯因其高灵敏度、高迁移率和生物相容性等独特性质而引起了极大的关注。它也被认为是 pH 传感的优秀候选材料。基于石墨烯的离子敏感场效应晶体管(ISFET)作为一种具有有机性质和离子液体门的新型材料,由于其对 pH 值变化具有固有敏感性,因此受到了广泛关注。pH 值是酶稳定性的重要因素,它可以影响酶反应并拓宽酶的应用范围。为了充分发挥其作为催化剂的潜力,必须优化更准确和一致的酶结果。在本文中,通过模拟缓冲溶液在不同 pH 值下的电测量,研究了基于单层石墨烯的 ISFET pH 传感器。通过对单层石墨烯的电导建模,提出了每种 pH 值的电检测模型。提出了氢离子(H+)浓度作为载流子浓度的函数,并基于不同 pH 值下被石墨烯表面吸附的电活性离子定义了控制参数(Ƥ)。最后,将提出的新分析模型与实验数据进行了比较,结果表明整体吻合较好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e989/3662162/5221c894ac6f/1556-276X-8-173-1.jpg

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