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Hydrodynamic Rocking Disc Electrode Study of the TEMPO-mediated Catalytic Oxidation of Primary Alcohols

机译:TEMPO介导的伯醇催化氧化的流体动力学摇摆盘电极研究

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摘要

The hydrodynamically thinned diffusion layer at a sinusoidally rocking disc is approximately uniform and can be expressed in terms of a diffusion layer thickness delta(RoDE) = 9.0D(1/3v1/6)/root Theta f with D, the diffusion coefficient of the redox active species, v, the kinematic viscosity, Theta, the total rocking angle (here 90 degrees), and f, the rocking frequency (ranging here from 0.83 to 25 Hz). For the oneelectron oxidation of 2,2,6,6-tetramethylpiperidine-1-oxyl (TEMPO) in aqueous carbonate buffer pH 9.5, it is shown that there is quantitative agreement between the expression for the diffusion layer thickness and experimental data. Next, for seven primary alcohols, the catalytic TEMPO-mediated oxidation mechanism is investigated under rocking disc conditions. Chemical rate constants are evaluated (by varying the diffusion layer thickness) employing the DigiElch4. F simulation package. Trends in the chemical rate constants (compared with DFT calculations) suggest enhanced reactivity for methanol versus higher primary alcohols and for aromatic versus non-aromatic primary alcohols. Rocking disc voltammetry allows quantitative mechanistic analysis in the laminar flow regime.
机译:在正弦摇摆的圆盘上的流体动力减薄的扩散层近似均匀,可以用扩散层厚度delta(RoDE)= 9.0D(1 / 3v1 / 6)/根Theta f表示,D为氧化还原活性物质,v,运动粘度,θ,总摇摆角(此处为90度),f,摇摆频率(此处为0.83至25 Hz)。对于pH 9.5的碳酸盐水溶液缓冲液中的2,2,6,6-四甲基哌啶-1-氧基(TEMPO)的单电子氧化,表明扩散层厚度的表达式与实验数据之间存在定量一致性。接下来,对于七种伯醇,研究了在摇摆盘条件下催化TEMPO介导的氧化机理。使用DigiElch4评估化学速率常数(通过改变扩散层的厚度)。 F模拟包。化学速率常数的趋势(与DFT计算相比)表明,与高级伯醇相比,甲醇和芳香族与非芳族伯醇的反应性增强。摇摆盘伏安法允许在层流状态下进行定量机理分析。

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