首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Facile synthesis of petal-like NiCo/NiO-CoO/nanoporous carbon composite based on mixed-metallic MOFs and their application for electrocatalytic oxidation of methanol
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Facile synthesis of petal-like NiCo/NiO-CoO/nanoporous carbon composite based on mixed-metallic MOFs and their application for electrocatalytic oxidation of methanol

机译:基于混合金属MOF的花瓣状NiCO / NiO-CoO /纳米孔碳复合材料的容易合成及其应用于甲醇电催化氧化

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摘要

Porous carbon template decorated with mixed transition metals/metal oxides with tunable architecture is becoming increasingly important and attractive as a kind of novel electrode materials. In this way, mixed-metallic metal-organic frameworks (MOFs) provide an opportunity for fabrication of homogeneous mixed metals/metal oxides distribution in the porous carbon frame without any carbon precursor additive. Also, structures, dimensions and electrochemical performance of MOFs can be readily manipulated by simply tuning the metals molar ratio. In this study, we demonstrate the design and fabrication of petal-like NiCo/NiO-CoO metal/metal oxides with a rational composition embedded in 3D ultrathin nanoporous carbon composite)NiCo/NiO-CoO/NPCC(. This nanocomposite is synthesized by a two-steps procedure involving preparation of bimetallic MOFs by partially substituting Ni2+ in the Ni-MOF structure with Co2+ (Ni-Co/BDC [BDC = 1,4-Benzene dicarboxylic acid]) and direct carbonization process in the N-2 atmosphere at 900 degrees C. The prepared nanocomposite was used directly as a non-precious electrocatalyst for methanol oxidation reaction. The results indicated that, in comparison to the monometallic metal/metal oxides distributed in nanoporous carbon composite (Ni/NiO/NPCC and Co/CoO/NPCC), the mixed metals/metal oxides NiCo/NiO-CoO/NPCC exhibits excellent electrochemical perfomance toward the anodic oxidation of methanol. The unique ultrathin porous petal-like structure with free pores and the enlarged specific surface area provides fast ion/electron transfer, leading to faster kinetics, lower over-potential, and higher electro-catalytic reactivity. Besides their intriguing structural features, the excellent conductivity of carbon frame, as well as a rational composition of two constituents and synergistic effects from cobalt, nickel and their oxides provides favorable catalytic activity for the electro-oxidation of methanol. Therefore, it is believed that this novel multi-component composites demonstrates good electrocatalytic activity and suitable stability towards the methanol oxidation.
机译:多孔碳模板用混合过渡金属/金属氧化物装饰着可调谐架构越来越重要和有吸引力,作为一种新型电极材料。以这种方式,混合金属金属 - 有机框架(MOF)提供了在没有任何碳前体添加剂的多孔碳框架中制造均匀混合金属/金属氧化物分布的机会。而且,通过简单地调整金属摩尔比可以容易地操纵MOF的结构,尺寸和电化学性能。在这项研究中,我们证明了具有嵌入于3D超薄纳米多孔碳复合材料的合理组合物的花瓣状NiCO / NiO-CoO金属/金属氧化物的设计和制造)NiCO / NiO-CoO / NPCC(。该纳米复合材料由A合成通过将Ni2 +在Ni-MOF结构中部分地用CO 2 +(Ni-Co / Bdc = 1,4-苯二羧酸)部分代替Ni2 +,在N-2大气中的直接碳化过程中,涉及制备双金属MOF的两步方法。 900℃。制备的纳米复合材料直接用作非珍贵的电催化剂,用于甲醇氧化反应。结果表明,与分布在纳米多孔碳复合材料中的单金属金属/金属氧化物(Ni / NiO / NPCC和CO / COO)相比/ NPCC),混合金属/金属氧化物Nico / NiO-CoO / NPCC对甲醇的阳极氧化表现出优异的电化学性能。具有自由孔的独特的超薄多孔花瓣状结构和扩大的比表面积Pr纵向快速离子/电子转移,导致动力学更快,越来越多的电位和更高的电催化反应性。除了它们的诱导结构特征外,碳框架的优异导电性以及两种成分的合理组合物和来自钴,镍及其氧化物的协同作用以及用于甲醇的电氧化的良好催化活性提供了有利的催化活性。因此,据信这种新型多组分复合材料表明良好的电催化活性和朝甲醇氧化的合适稳定性。

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