Liquid-gated Field-effect-transistor Based on Chemically Reduced Graphene Oxide for Sensing Neurotransmitter Acetylthiocholine

Thi Tuyet Ngan Nguyen, T. T. Vu
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Abstract

In this work, an enzymatic liquid-gated field-effect-transistor sensor based on chemically reduced graphene oxide film was develop for determination of acetylthiocholine in aqueous conditions. The device was designed with interdigitated electrode configuration and then manufactured by combining lithography and chemical vapor deposition techniques in clean room. Graphene oxide material (prepared by Hummer method) was chemically reduced using a strong reducing agent hydrazine, and then drop-casted onto the channel region. The results have demonstrated a successful reduction of graphene oxide with clearly shifting of 02 characteristic peaks comparing with graphene oxide. Consequently, the transfer curve of as-prepared reduced graphene oxide based transistor exhibits ambipolar characteristics with a V-shape. Acetylcholinesterase was immobilized on top of reduced graphene oxide film with the aid of glutaraldehyde trapping agent. It was found that the release of proton from enzymatic hydrolysis of acetylthiocholine has caused significant variation in charge concentration and mobility in the channel, thus generated a significant blue shift in position of Dirac point on ambipolar curve. The developed sensor exhibits good sensing performances with LOD of 250 µM in concentration range 0 – 0.8 mM.
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基于化学还原氧化石墨烯传感神经递质乙酰硫胆碱的液门控场效应晶体管
在这项工作中,开发了一种基于化学还原氧化石墨烯膜的酶促液门控场效应晶体管传感器,用于测定水中乙酰硫代胆碱。该器件采用交叉电极结构设计,并在洁净室中采用光刻和化学气相沉积相结合的方法制备。用强还原剂肼对氧化石墨烯材料进行化学还原,然后将其滴铸在通道区域上。结果表明,与氧化石墨烯相比,氧化石墨烯成功地还原了02个特征峰的明显移位。因此,制备的还原氧化石墨烯基晶体管的转移曲线呈现出v型的双极性特征。利用戊二醛捕集剂将乙酰胆碱酯酶固定在还原氧化石墨烯膜上。发现乙酰硫胆碱酶解过程中质子的释放引起了通道内电荷浓度和迁移率的显著变化,从而使双极性曲线上Dirac点的位置发生了显著的蓝移。该传感器具有良好的传感性能,在0 ~ 0.8 mM浓度范围内LOD为250µM。
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