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首页> 外文期刊>Topics in Catalysis >Facile and Cost Effective Synthesis of Oxide-Derived Silver Catalyst Electrodes via Chemical Solution Deposition for CO 2 Electro-Reduction
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Facile and Cost Effective Synthesis of Oxide-Derived Silver Catalyst Electrodes via Chemical Solution Deposition for CO 2 Electro-Reduction

机译:通过化学溶液沉积对CO <下标> 2 电解的化学溶液沉积,容易和成本有效合成氧化银催化剂电极

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Electrochemical CO~(2)reduction to useful fuels is a promising strategy for the sustainable energy production. However, because CO~(2)reduction reaction involves sluggish kinetics, the development of high performing catalyst is a first priority for the success in this system. Herein, cost effective fabrication of oxide-derived silver catalyst for CO~(2)electro-reduction was successfully prepared by simple chemical solution deposition involving the following steps: (i) spin-coating of precursor solution, (ii) oxidation by air-annealing, and (iii) electrochemical reduction. The prepared silver catalyst achieved 83.7% of CO Faradaic efficiency at ??1.19 V~(RHE)with an outstanding mass activity of 465.04?A g_(??1)which was originated from the unique features of the catalyst as well as precursor solution. With the introduced fabrication method, the precursor solution containing relatively low silver concentration was preferred to form small silver particles, resulting in high catalytic activity. We anticipate the developed method to be widely applied for the preparation of oxide-derived metal catalysts and metal alloy nanostructured catalysts in advanced CO~(2)conversion system.
机译:电化学CO〜(2)减少到有用的燃料是可持续能源生产的有希望的策略。然而,因为CO〜(2)还原反应涉及缓慢的动力学,高性能催化剂的发展是该系统成功的首要任务。在此,通过简单的化学溶液沉积成功制备了CO〜(2)电解的氧化银催化剂的成本有效制备,涉及以下步骤:(i)前体溶液的旋涂,(ii)通过空气氧化 - 退火和(iii)电化学减少。制备的银催化剂在β119V〜(rhe)中达到了83.7%的CO Farada效率,其源于465.04的突出活性,其源于催化剂的独特特征以及前体溶液。利用引入的制造方法,优选含有相对低的银浓度的前体溶液形成小的银颗粒,从而形成高催化活性。我们预期开发的方法可广泛应用于制备先进的CO〜(2)转化系统中的氧化物衍生的金属催化剂和金属合金纳米结构催化剂。

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