首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Investigating the Mechanism and Electrode Kinetics of the OxygenlSuperpxide (O2|O2~(·-)) Couple in Various Room-Temperature Ionic Liquids at Gold and Platinum Electrodes in the Temperature Range 298-318 K
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Investigating the Mechanism and Electrode Kinetics of the OxygenlSuperpxide (O2|O2~(·-)) Couple in Various Room-Temperature Ionic Liquids at Gold and Platinum Electrodes in the Temperature Range 298-318 K

机译:在298-318 K温度范围内,金和铂电极上各种室温离子液体中的氧超氧化物(O2 | O2〜(·-))偶合的机理和电极动力学的研究

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The reduction of oxygen was studied over a range of temperatures (298-318 K) in n -hexyltriethylammonium bis(trifluoromethanesulfonyl)imide, [N_(6,2,2,2)] [NTf2], and l-butyl-2,3-methylimidazolium bis(trifluoromethane-sulfonyl)imide, [C4dmim][NTf2] on both gold and platinum microdisk electrodes, and the mechanism and electrode kinetics of the reaction investigated. Three different models were used to simulate the CVs, based on a simple electron transfer ('E'), an electron transfer coupled with a reversible homogeneous chemical step ('EC_(rev)') and an electron transfer followed by adsorption of the reduction product ('EC(ads)'), and where appropriate, best fit parameters deduced, including the heterogeneous rate constant, formal electrode potential, transfer coefficient, and homogeneous rate constants for the EC_(rev) mechanism, and adsorption/desorption rate constants for the EC(ads) mechanism. It was concluded from the good simulation fits on gold that a simple E process operates for the reduction of oxygen in [N_(6,2,2,2)][NTf2], and an EC_(rev), process for [C4dmim][NTf2], with the chemical step involving the reversible formation of the O2~(·-)…[C4dmim]~+ ion-pair. The E mechanism was found to loosely describe the reduction of oxygen in [N_(6,2,2,2)][NTf2] on platinum as the simulation fits were reasonable although not perfect, especially for the reverse wave. The electrochemical kinetics are slower on Pt, and observed broadening of the oxidation peak is likely due to the adsorption of superoxide on the electrode surface in a process more complex than simple Langmuirian. In [C4dmim][NTf2] the O2~(·-) predominantly ion-pairs with the solvent rather than adsorbs on the surface, and an EC_(rev) quantitatively describes the reduction of oxygen on Pt also.
机译:在正己基三乙基铵双(三氟甲磺酰基)酰亚胺,[N_(6,2,2,2)] [NTf2]和1-丁基-2,的温度范围内(298-318 K)研究了氧的还原金和铂微盘电极上的3-甲基咪唑双(三氟甲烷-磺酰基)酰亚胺,[C4dmim] [NTf2],并研究了反应的机理和电极动力学。基于简单的电子转移('E'),电子转移与可逆均相化学步骤('EC_(rev)')和电子转移,然后吸附还原反应,使用三种不同的模型来模拟CV乘积('EC(ads)'),并在适当的情况下推导出最佳拟合参数,包括EC_(rev)机理的异质速率常数,形式电极电势,转移系数和均质速率常数以及吸附/解吸速率常数用于EC(ads)机制。由对金的良好模拟得出的结论是,操作简单的E工艺可还原[N_(6,2,2,2)] [NTf2]中的氧气,而EC_(rev)工艺则可用于[C4dmim]。 [NTf2],化学步骤涉及O2〜(·-)…[C4dmim]〜+离子对的可逆形成。发现E机制可以粗略地描述铂上[N_(6,2,2,2)] [NTf2]中氧的还原,因为模拟拟合是合理的,尽管并不完美,特别是对于反向波。电化学动力学在Pt上较慢,并且观察到的氧化峰变宽可能是由于超氧化物在电极表面上的吸附所致,该过程比简单的Langmuirian更为复杂。在[C4dmim] [NTf2]中,O2〜(·-)主要与溶剂形成离子对,而不是吸附在表面,并且EC_(rev)也定量地描述了Pt上氧的还原。

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