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Immobilization and electrochemistry of cytochrome c on amino-functionalized mesoporous silica thin films

机译:氨基官能化介孔二氧化硅薄膜上细胞色素c的固定化和电化学

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The immobilization and electrochemistry of cytochrome c (cyt c) on amino-functionalized mesoporous silica thin films are described. The functionalized silica films with an Im3m cubic phase structure were deposited on conducting ITO substrate by co-condensation of tetraethoxysilane (TEOS) and 3-aminopropyltriethoxysilane (APTES) in the presence of Pluronic F127 under acidic conditions. The high specific surface area, large pore size and functional inner surface of mesoporous silica thin films result in a high cyt c loading, and the cyt c immobilization on this silicate framework is stable. After adsorption of cyt c, the ordered cubic structure of mesoporous silica and the redox activity of immobilized cyt c are retained as demostrated by X-ray diffraction (XRD), Transmission electron microscope (TEM) and cyclic voltammetry. The redox behavior of the cyt/silica film-modified ITO electrode is a surface-controlled quasi-reversible process for the experimental conditions used in this work and the electron transfer rate constant is calculated is 1.33 s(-1). The ITO electrode modified by cyt c/silica film possesses a high stability; even cyt c retains its redox activity following immobilization for several months. Furthermore, the electrocatalytic activities of the modified ITO electrode to hydrogen peroxide and ascorbic acid have been studied. Since these behaviors are quite pronounced, the modified electrode can be used for detection of hydrogen peroxide and ascorbic acid. (C) Elsevier B.V. All rights reserved.
机译:描述了在氨基官能化的介孔二氧化硅薄膜上细胞色素c(cyt c)的固定和电化学。在酸性条件下,在Pluronic F127存在下,通过四乙氧基硅烷(TEOS)和3-氨基丙基三乙氧基硅烷(APTES)的共缩合,将具有Im3m立方相结构的功能化二氧化硅膜沉积在导电ITO基板上。中孔二氧化硅薄膜的高比表面积,大孔径和功能性内表面导致高的cyt c负载,并且在该硅酸盐骨架上的cyt c固定是稳定的。吸附cyt c后,如X射线衍射(XRD),透射电子显微镜(TEM)和循环伏安法所示,介孔二氧化硅的有序立方结构和固定化cyt c的氧化还原活性得以保留。 cyt /二氧化硅膜修饰的ITO电极的氧化还原行为是表面控制的准可逆过程,适用于这项工作中使用的实验条件,其电子传输速率常数为1.33 s(-1)。 cyt c /二氧化硅膜改性的ITO电极具有很高的稳定性。甚至在固定化几个月后,cyt c仍保留其氧化还原活性。此外,已经研究了改性ITO电极对过氧化氢和抗坏血酸的电催化活性。由于这些行为非常明显,因此改性电极可用于检测过氧化氢和抗坏血酸。 (C)Elsevier B.V.保留所有权利。

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