首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Redox hysteresis on carbon electrodes covalently modified with a bistable ruthenium complex
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Redox hysteresis on carbon electrodes covalently modified with a bistable ruthenium complex

机译:用双稳态钌配合物共价修饰的碳电极上的氧化还原磁滞

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摘要

A ruthenium complex bearing an ambidentate ligand was covalently attached to glassy carbon and carbon fiber electrodes by reduction of an aryldiazonium anchoring group placed on the terpyridine spectator ligand. The diazonium grafting method results in robust attachment and yields high surface concentrations of 2.4 x 10(-10) mol cm(-2). The attached complexes can be addressed electrochemically and the electrodes were characterized with scan rates of up to 2000 V s(-1). The redox-induced N/O linkage isomerism of the pyridyl/alkoxy ambidentate ligand results in a hysteretic current-voltage response (E-1 degrees = 0.83, E-2 degrees = 0.34 V) of the modified electrodes. The immobilization has no deleterious effects on the isomerization reactions of the molecular material that proceed with thermodynamic (2.4 < pK(1) < 3.7 (Ru(III) O -> N), -6.0 < pK(2) < -4.8 (Ru(II) O -> N)) and kinetic parameters (k(b1) = 2.5 x 10(2) s(-1) (Ru(III) N -> O), k(f2) = 2.5 x 10(2) s(-1) (Ru(II) O -> N)) comparable to analogous complexes in homogeneous solution.
机译:通过还原置于吡啶吡啶旁观者配体上的芳基重氮锚定基团,将带有二价配体的钌络合物共价连接至玻璃碳和碳纤维电极。重氮接枝方法导致牢固的连接,并产生2.4 x 10(-10)mol cm(-2)的高表面浓度。可以用电化学方法解决连接的复合物,并以高达2000 V s(-1)的扫描速率表征电极。吡啶基/烷氧基双齿配体的氧化还原诱导的N / O键异构,导致修饰电极的迟滞电流-电压响应(E-1度= 0.83,E-2度= 0.34 V)。固定化对分子材料的异构化反应没有有害影响,该异构化反应随热力学进行(2.4 K(1)<3.7(Ru(III)O-> N),-6.0 K(2)<-4.8(Ru (II)O-> N))和动力学参数(k(b1)= 2.5 x 10(2)s(-1)(Ru(III)N-> O),k(f2)= 2.5 x 10(2 )s(-1)(Ru(II)O-> N))与均质溶液中的类似络合物相当。

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