石墨烯
材料科学
双层石墨烯
场效应晶体管
光电子学
氧化物
晶体管
生物传感器
石墨烯纳米带
氧化石墨烯纸
纳米技术
物理
电压
量子力学
冶金
作者
Chi‐Hsien Huang,Weiting Huang,Tzu‐Ting Huang,Sian-Hong Ciou,Chang‐Fu Kuo,Ao-Ho Hsieh,Yu‐Sheng Hsiao,Yao‐Jen Lee
标识
DOI:10.1021/acsaelm.1c00439
摘要
We prepared a solution-gated graphene transistor (SGGT) incorporating a graphene oxide/graphene (GO/G) layered structure as the active material for the sensitive and specific detection of miRNA without labeling. The GO/G layered structure was formed through atomic layer oxidation of bilayer graphene, where the top layer of graphene was exclusively oxidized, while the characteristics of the bottom layer of graphene were preserved. The top layer of GO served as a functionalized graphene for the covalent immobilization of DNA probe units on the surface of the active material, and the bottom layer of graphene served as a transducer, with the Dirac point in the transfer curve shifting during the detection of miRNA. We observed a good linear electrical response in the Dirac point shift toward miRNA-21 at concentrations in the range from 10 fM to 100 pM. The sensitivity of the GO/G-based SGGT having only one solution gate was 19.26 mV/decade; it greatly improved to 33.65 mV/decade when applying a dual gate due to the gate-controlled doping achieved by the back gate. The biosensor also demonstrated good selectivity for the detection of miRNA-21 over a four-base-mismatched miRNA and good specificity when measured in human serum albumin.
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