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Hosting Adamantane in the Substrate Pocket of Laccase: Direct Bioelectrocatalytic Reduction of O-2 on Functionalized Carbon Nanotubes

机译:在漆酶的基质口袋中容纳金刚烷:在功能化的碳纳米管上的O-2直接生物电催化还原。

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摘要

We report the efficient immobilization and orientation of laccase from Trametes versicolor on MWCNT electrodes using 1-pyrenebutyric acid adamantyl amide as a supramolecular linker. We demonstrate the ability of adamantane to specifically interact with the hydrophobic cavity of laccase, while pyrene interacts with MWCNT sidewalls by pi-pi interactions. Adamantane allows the oriented immobilization of laccases on MWCNT electrodes. Using an anthraquinone-modified pyrene derivative for comparison, adamantane-modified MWCNTs achieve the stable immobilization and orientation of a higher number of enzymes per surface units, as confirmed by electrochemistry, theoretical calculations, and quartz crystal microbalance experiments. Furthermore, the efficient direct electron transfer ensures bioelectrocatalytic oxygen reduction at high half-wave potential of 0.55 V vs SCE accompanied by no kinetic limitation by the heterogeneous electron transfer and maximum current densities of 2.4 mA cm(-2).
机译:我们报告了使用1-吡咯丁酸金刚酰胺作为超分子连接体,从杂色Trametes versicolor漆酶的有效固定和方向。我们证明了金刚烷与漆酶的疏水腔特异性相互作用的能力,而pyr则通过pi-pi相互作用与MWCNT侧壁相互作用。金刚烷允许漆酶定向固定在MWCNT电极上。使用蒽醌改性的derivative衍生物进行比较,金刚烷改性的MWCNT可实现稳定的固定化和定向,从而使每个表面单位的酶数量增加,这已通过电化学,理论计算和石英晶体微量天平实验得到了证实。此外,有效的直接电子转移可确保在0.55 V vs SCE的高半波电势下生物电催化氧的减少,同时不受异质电子转移和2.4 mA cm(-2)的最大电流密度的动力学限制。

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