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首页> 外文期刊>Journal of solid state electrochemistry >Selenium electrochemistry in choline chloride-urea deep eutectic electrolyte
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Selenium electrochemistry in choline chloride-urea deep eutectic electrolyte

机译:氯化胆碱-尿素深共熔电解质中的硒电化学

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The electrochemical behaviour of selenium in the deep eutectic solvent made of a 1:2 molar ratio of choline chloride and urea (ChCl-U) has been investigated at a polycrystalline gold electrode by voltammetry and chronoamperometry. In order to favour the deposition of grey selenium, selenium oxide was chosen as the solution precursor and a temperature range from 70 to 110 °C was selected. Cyclic voltammograms recorded in the 1:2 choline chloride-urea liquid containing 10 mM SeO_2 are strongly affected by the temperature. At 110 °C, three main cathodic responses are evidenced around ?0.075, ?0.2 and ?0.7 V. These cathodic peaks have been attributed respectively to the underpotential deposition (upd) of Se, the bulk deposition of Se and the cathodic stripping of selenium associated to the formation of Se(?II). Potentiostatic current transients obtained at 110 °C are indicative of a nucleation with diffusion-controlled growth mechanism for the selenium electrodeposition and support the formation of a upd layer preceding the bulk deposition. The dissolution transients triggered by double potential step perturbations could however not be interpreted on the basis of a similar formalism.
机译:在伏安法和计时电流法下,在多晶金电极上研究了硒在氯化胆碱和尿素的摩尔比为1:2的深共熔溶剂中的电化学行为。为了有利于灰色硒的沉积,选择氧化硒作为溶液前体,并选择70至110°C的温度范围。包含10 mM SeO_2的1:2氯化胆碱-尿素液体中记录的循环伏安图受温度的强烈影响。在110°C时,大约在0.075 V,0.2和0.7 V左右有三个主要的阴极响应。这些阴极峰分别归因于Se的欠电位沉积(upd),Se的本体沉积和硒的阴极剥离。与Se(βII)的形成有关。在110°C下获得的恒电位电流瞬变表明具有硒电沉积扩散控制生长机制的成核作用,并支持在本体沉积之前形成upd层。但是,基于类似的形式主义,无法解释由双潜在步长扰动触发的溶解瞬变。

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