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高效双活性钯纳米网电催化剂用于乙醇氧化和析氢反应。

Highly Efficient Dual Active Palladium Nanonetwork Electrocatalyst for Ethanol Oxidation and Hydrogen Evolution.

机构信息

Department of Chemistry and Institute of Basic Science, Chonnam National University , Gwangju 500-757, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2017 Nov 15;9(45):39303-39311. doi: 10.1021/acsami.7b09855. Epub 2017 Nov 3.

Abstract

Tunable palladium nanonetwork (PdNN) has been developed for catalyzing ethanol oxidation reaction (EOR) and hydrogen evolution reaction (HER) in alkaline electrolyte. 3D PdNN is regarded as a dual active electrocatalyst for both EOR and HER for energy conversion application. The PdNN has been synthesized by the simple chemical route with the assistance of zinc precursor and a surfactant (i.e., cetyltrimethylammonium bromide, CTAB). The thickness of the network can be tuned by simply adjusting the concentration of CTAB. Both EOR and HER have been performed in an alkaline electrolyte, and characterized by different voltammetric methods. The 3D PdNN has shown 2.2-fold higher electrochemical surface area than the commercially available Pt/C including other tested catalysts with minimal Pd loading. As a result, it provides a higher density of EOR and HER active sites and facilitated the electron transport. For example, it shows 2.6-fold higher mass activity with significantly lower CO production for EOR and the similar overpotential (110 mV @ 10 mA cm) for HER compared to Pt/C with better reaction kinetics for both reactions. Thus, the PdNN is proved as an efficient electrocatalyst with better electrocatalytic activity and stability than state-of-the-art Pt/C for both EOR and HER because of the crystalline, monodispersed, and support-free porous nanonetwork.

摘要

可调谐钯纳米网络 (PdNN) 已被开发用于在碱性电解质中催化乙醇氧化反应 (EOR) 和析氢反应 (HER)。3D PdNN 被认为是用于能量转换应用的 EOR 和 HER 的双活性电催化剂。PdNN 通过简单的化学路线合成,在锌前体和表面活性剂 (即十六烷基三甲基溴化铵,CTAB) 的协助下进行。通过简单调整 CTAB 的浓度可以调节网络的厚度。在碱性电解质中进行了 EOR 和 HER 测试,并通过不同的伏安法进行了表征。3D PdNN 的电化学表面积比市售的 Pt/C 高 2.2 倍,包括其他测试的催化剂,其 Pd 负载量最小。结果表明,它提供了更高密度的 EOR 和 HER 活性位点,并促进了电子传输。例如,它在 EOR 方面表现出 2.6 倍的更高质量活性,并且 CO 生成量明显较低,而对于 HER,其过电势与 Pt/C 相似 (110 mV@10 mA cm),对于两种反应都具有更好的反应动力学。因此,由于结晶、单分散和无支撑多孔纳米网络,PdNN 被证明是一种比最先进的 Pt/C 具有更好电催化活性和稳定性的高效电催化剂,用于 EOR 和 HER。

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