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首页> 外文期刊>Chemistry: A European journal >Hemoglobin on Phosphonic Acid Terminated Self-Assembled Monolayers at a Gold Electrode: Immobilization, Direct Electrochemistry, and Electrocatalysis
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Hemoglobin on Phosphonic Acid Terminated Self-Assembled Monolayers at a Gold Electrode: Immobilization, Direct Electrochemistry, and Electrocatalysis

机译:磷酸在金电极上终止自组装单层膜上的血红蛋白:固定化,直接电化学和电催化

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摘要

Phosphonic acid (-PO3H2) terminated self-assembled monolayers (SAMs) on a gold surface were used as a functional interface to immobilize hemoglobin (Hb). In situ surface-enhanced infrared absorption spectroscopy (SEIRAS) measurements show that Hb immobilization is a sluggish process due to formation of multilayer Hb structures on the PO3H2-terminated SAMs. as revealed by ellipsometry, atomic force microscopy (AFM). and cyclic voltammetry (CV). In the multilayered Hb film the innermost Hb molecules can directly exchange electrons With the electrode, whereas Hb beyond this layer communicates electronically With the electrode via protein-protein electron exchange. In ad clition, electrochemical measurements indicate that immobilization of Hb on the PO3H2-terminated SAMs is not driven by the electrostatic interaction, but likely by hydrogen-bonding interaction. The immobilized Hb molecules show excellent bioelectrocatalytic activity towards hydrogen peroxide, that is, the PO3H2-terminated SAMs are promising for construction of third-generation biosensors.
机译:在金表面上以膦酸(-PO3H2)为末端的自组装单分子膜(SAMs)被用作固定血红蛋白(Hb)的功能性界面。原位表面增强红外吸收光谱(SEIRAS)测量表明,由于在PO3H2封端的SAM上形成了多层Hb结构,Hb固定是一个缓慢的过程。如椭圆偏振法,原子力显微镜(AFM)所揭示。和循环伏安法(CV)。在多层Hb膜中,最里面的Hb分子可以直接与电极交换电子,而超出该层的Hb通过蛋白质-蛋白质电子交换与电极电子连通。此外,电化学测量表明,Hb在PO3H2封端的SAM上的固定不是由静电相互作用驱动,而是由氢键相互作用驱动。固定化的Hb分子对过氧化氢具有出色的生物电催化活性,也就是说,以PO3H2封端的SAMs有望用于构建第三代生物传感器。

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