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Negative Impact of Adjacent Coordination on Direct Electrochemistry and Enzymatic Catalysis of Laccase Immobilization onto Multi-wall Carbon Nanotubes Functionalized by Perylene Derivative

机译:邻近电化学对直接电化学的负面影响及碱性粘液固定粘液粘合剂固定在丙基衍生物官能化的多壁碳纳米管上

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摘要

Influence of interactions between Laccase and carbon nano-tubes modified by perylene derivative on structural parameters and electrochemical behaviors of immobilized redox protein, was investigated systematically by the means of spectrometry, photography and electro-chemistry. Sophisticated interactions including abutting coordination could result in anomalistic agglomeration of nano-composite with Lac incorporation which displayed better hydrophobicity than free Laccase and high resistance of charge shuttle. It would retard the progress of thermal decomposition of nano-composite and would lead to the formation of composite without emission of fluorescence. Strong binding of Laccase with perylenyl derivative (binding constant: 7.5x10(4) L/mol) would alter the mechanism of electron transferring. T-1 Cu2+ of Laccase in the status of complexation played the intra-molecular electron relay with mid-wave potential at -135.6 mV and demonstrated undesirable dynamics in electron transferring (7.7x10(-2) s(-1)). The catalytic function in oxygen reduction was prohibited for the abutting coordination and only weak catalytic effect could be achieved in the presence of electron relay. The whole catalytic cycle was limited by the mass transferring of electron mediator.
机译:通过光谱,摄影和电化学系统,系统地研究了通过Perylens衍生物改性的相互作用对由Perylens衍生物改性的影响。包括邻接协调的复杂相互作用可能导致纳米复合材料的大致凝聚与LAC掺入,其显示出比自由漆酶和电荷梭的高抗性更好的疏水性。它会延迟纳米复合材料的热分解的进展,并将在不发射荧光的情况下形成复合材料的形成。漆酶与吡咯氏菌衍生物的强粘合(结合常数:7.5×10(4)L / mol)将改变电子转移的机制。梳理状态下的漆酶的T-1 Cu2 +在-135.6mV下发挥了分子内电子继电器,在-135.6mV下进行了中波电位,并在电子转移中显示了不希望的动态(7.7×10(-2)S(-1))。禁止氧还原中的催化功能抵靠的配位,并且在电子继电器的存在下只能实现弱催化作用。整个催化循环受电子介质的质量传递限制。

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