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Carboxyl-functionalized graphene SGFET: pH sensing mechanism and reliability of anodization

机译:羧基官能化石墨烯SGFET:pH传感机理和阳极氧化可靠性

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摘要

In this work, we fabricated graphene solution-gate field-effect transistor (SGFET) to investigate the pH sensitivity of carboxyl functional groups. The functionalization of graphene with carboxyl was achieved through anodi-zation by applying a sequential potential scan from 0.6 V to 1.3 V in 0.1 V steps. Raman spectroscopy was used to determine the defect density of the graphene caused by the anodization. The sequential anodization in Carmody buffer solution at pH 7 had low defective effect on graphene structure and shows that the original structure of graphene was conserved. Furthermore, we measured pH sensitivity of the carboxyl-functionalized graphene at pH 2 to pH 12. The pH sensitivity was 32.6 mV/pH at low pH region and pH sensitivity measurement was saturated at high pH (basic region). The negatively charged surface of carboxyl-functionalized graphene caused weak pH detection in the basic region. The pH sensing mechanism of carboxyl functionalized graphene in the low and high pH region is discussed in detail. The reliability of the carboxyl-functionalized graphene SGFET device was evaluated by measuring pH sensitivity repetitively after anodization at different potential scans of 0.9 V, 1.3 V, 1.5 V, 1.7 V and 1.9 V which demonstrated in all cases that, the pH sensitivity of carboxyl functionalization on graphene SGFET shows a similar trend. This functionalization method allows the modification of the graphene surface for further uses in biosensing.
机译:在这项工作中,我们制造了石墨烯溶液 - 栅极场效应晶体管(SGFET),以研究羧基官能团的pH敏感性。通过在0.1V步骤中施加顺序电位扫描通过施用顺序电位扫描,通过anodi-zation实现石墨烯与羧基的官能化。拉曼光谱法用于确定由阳极氧化引起的石墨烯的缺陷密度。 pH7的Carmody缓冲溶液中的顺序阳极溶液对石墨烯结构的缺陷效应低,并表明石墨烯的原始结构被保守。此外,我们在pH 2至pH 12下测量羧基官能化石墨烯的pH敏感性。在低pH区域下pH敏感性为32.6mV / pH,在高pH(碱性区域)下饱和pH敏感性测量。羧基官能化石墨烯的带负电的表面引起了基本区域的弱pH检测。详细讨论了低和高pH区域中羧基官能化石墨烯的pH传感机制。通过在所有情况下显示的不同潜在扫描的阳极氧化阳离子,在所有情况下,在所有情况下表现出羧基的pH敏感性石墨烯SGFET上的功能化显示了类似的趋势。该官能化方法允许改进石墨烯表面以进一步用于生物传感。

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