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Electrochemical study of self-assembled cysteine monolayers on polycrystalline gold electrodes and functionalization with microperoxidase MP-11

机译:多晶金电极上自组装半胱氨酸单层的电化学研究及微过氧化物酶MP-11的功能化

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摘要

Self-assembled monolayers of cysteine (CYST) have been constructed on polycrystalline gold (polyAu) electrode at different immersion times (t immer) in order to characterize them by cyclic voltammetry and electrochemical impedance spectroscopy (EIS). Oxidative desorption experiments allowed the calculation of the surface coverage, whereas reductive desorption informed about the binding of CYST to different gold domains. Desorption products showed different diffusion ability. The maximum coverage was already achieved at short t immer, although progressive reordering of CYST molecules led to a relevant decrease of the defects at long time, as ascertained by EIS. Functionalization of polyAu-CYST electrodes with the enzyme microperoxidase MP-11 performed by following two different binding methods showed that the enzymatically catalyzed reduction of H2O2 is enhanced when the –COOH residues of the MP-11 undecapeptide chain are firstly activated and then linked to the –NH2 functional groups of the non-activated CYST layer formed on the polyAu surface.
机译:为了在循环伏安法和电化学阻抗谱法(EIS)中表征半胱氨酸(CYST)的自组装单层膜,在不同的浸入时间(t immer )上,它们都已构建在其上。氧化脱附实验允许计算表面覆盖率,而还原脱附告知了CYST与不同金域的结合。解吸产物表现出不同的扩散能力。通过EIS可以确定,尽管CYST分子的逐步重排导致了缺陷的长期减少,但在短的t immer 时已经达到了最大覆盖率。通过以下两种不同的结合方法,用微过氧化物酶MP-11酶对polyAu-CYST电极进行功能化,结果表明,当–首先激活MP-11十一肽链的COOH残基,然后将其连接到在polyAu表面形成的未激活CYST层的–NH 2 官能团。

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