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Dual Role of Deep Eutectic Solvent as a Solvent and Template for the Synthesis of Octahedral Cobalt Vanadate for an Oxygen Evolution Reaction

机译:深度共晶溶剂作为氧气进化反应合成八面体钴的溶剂和模板的双重作用

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In this study, the deep eutectic solvent (DES)-aided synthesis of gamma-CoV2O6 under modest reaction conditions using 1:1 choline chloride malonic acid was reported. In the presence of DES, the reaction occurred at a lower temperature (500 degrees C) compared with that of the respective conventional solid-state synthesis of metal oxides and also with the calcination process involving the metal salts, thereby decreasing the overall formation energy. Differential scanning calorimetry revealed a 2-fold decrease in the endo effect of the thermodestruction of DES, which was observed at a low temperature. The structural pathway taken during the phase and morphology formation was investigated by in situ and ex situ X-ray diffraction (XRD) analysis, Raman spectroscopy, and scanning electron microscopy. The in situ XRD results confirmed the presence of high-temperature alpha-CoV2O6, which was finally converted to alpha-CoV2O6. On account of the metal speciation in DES similar to the biotemplate, well-defined octahedral CoV2O6 nanocrystals were obtained, which exhibited a remarkable OER catalytic activity at current density of 10 mA/cm(2) with an overpotential of a mere 324 mV, with excellent durability for greater than 24 h. Thus, a designer DES solvent with characteristics of biodegradability, cost-effectiveness, and renewability demonstrates potential for the synthesis of noble-metal-free oxygen evolution reaction (OER) catalysts, which allows the present synthesis route to fit well within the merits of green chemistry.
机译:在该研究中,报道了使用1:1氯化胆碱氯化丙酸在适度的反应条件下在适度的反应条件下γ-COV2O6的深度共晶溶剂(DES)的合成。在DES的存在下,与相应的常规固态合成的金属氧化物的相应和涉及金属盐的煅烧过程相比,反应在较低温度(500℃)中发生,从而降低整体形成能量。差分扫描量热法显示出在低温下观察到的DES热脱模的endo效应的2倍。通过原位和出原位X射线衍射(XRD)分析,拉曼光谱和扫描电子显微镜研究期间在相和形态形成期间采取的结构途径。原位XRD结果证实存在高温α-CoV2O6,最终转化为α-CoV2O6。由于类似于生物板的DES的金属形状,获得了明确的八面体COV2O6纳米晶体,其在电流密度为10 mA / cm(2)的透明oer催化活性,其具有324 mV的过电位优异的耐久性大于24小时。因此,具有生物降解性,成本效益和可再生性的特征的设计者DES溶剂表明了无贵巴金属氧化反应(OER)催化剂的合成的潜力,这允许本合成途径适合于绿色的优点化学。

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