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High resolution potassium sensing with large-area graphene field-effect transistors

机译:大面积石墨烯场效应晶体管的高分辨率钾感测

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摘要

We demonstrate large-area graphene based ion sensitive field effect transistors (ISFETs) with potassium ionophore sensing layers. Graphene ISFETs encapsulated with an ultra-thin hydrophobic layer, parylene C, and active areas similar to 0.4 cm(2) are characterized by an rms current noise as low as 5 nA in a 60 Hz electrical bandwidth, field effect mobilities up to 5000 cm(2) V-1 s(-1) and quantum capacitance limited coupling. Real-time sensing of K t was achieved with a detection limit of 10(-9) M K+, equivalent to 39 ng/L, and a resolution of similar to 2 x 10(-3)log [K+]. The ISFETs exhibit reversibility under spiking experiments and long term stability with limited drift over a course of five months. The cross-sensitivity has been measured to be 2.5 mV/decade for Na+, 4.2 mV/decade for Ca2+, 1.5 mV/decade for Mg2+ and 9.0 mV/decade for NH4+. Experiments with a variety of specimens, including beverages and blood, confirm the suitability of graphene ISFETs for K+ sensing in fluids with multiple solutes. The graphene ISFET design can be extended to sensing of other ionic species by substitution of alternative ionophores within the sensing membrane.
机译:我们演示了具有钾离子载体感应层的基于大面积石墨烯的离子敏感场效应晶体管(ISFET)。石墨烯ISFET封装有超薄疏水层,聚对二甲苯C和类似于0.4 cm(2)的有源区域,其特征是在60 Hz的电带宽内均方根电流噪声低至5 nA,场效应迁移率高达5000 cm (2)V-1 s(-1)和量子电容受限耦合。实时感测K t的检测限为10(-9)M K +,相当于39 ng / L,分辨率类似于2 x 10(-3)log [K +]。 ISFET在峰值实验下表现出可逆性,并具有长期稳定性,在五个月的时间内漂移有限。交叉敏感度已测量为:Na +为2.5 mV /十倍,Ca2 +为4.2 mV /十倍,Mg2 +为1.5 mV /十倍和NH4 +为9.0 mV /十倍。对包括饮料和血液在内的各种标本进行的实验证实了石墨烯ISFET在具有多种溶质的流体中进行K +传感的适用性。石墨烯ISFET设计可以扩展为通过替换传感膜中的其他离子载体来传感其他离子种类。

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