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Which electrode is better for biomass valorization: Cu(OH)_2 or CuO nanowire?

机译:哪种电极更适合生物质平衡:Cu(OH)_2或CuO纳米线?

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2,5-furandicarboxylic acid (FDCA), one of the key building block for replacing petroleum-derived tereph-thalic acid, is utilized as the source of bioplastics, pharmaceuticals. Herein, free-standing Cu(OH)(2) and CuO nanowires as electrode were examined to disclose the effects of crystal structure and chemical formation based on copper oxide in electrocatalytic 5-Hydroxymethylfurfural (HMF) oxidation to FDCA in 0.1 M KOH solution. We introduced on three-dimensional copper foam (CuF) with high porosity as copper source and substrate with high conductivity free-standing Cu(OH)(2) and CuO nanowires (NWs) on the substrate by inorganic polymerization and calcination for electrochemical HMF oxidation. This was enabled by square-planar coordination (sigma(x2-y2)) of Cu2+ ions in (001) crystal faces of Cu(OH)(2) crystal. As a result of stacking with hydrogen bonds, free-standing Cu(OH)(2) NWs on the substrate was formed. There was no change in the morphology of the nanowire arrays, but the active sites from a plane area per surface-exposed Cu atoms by transformation of Cu(OH)(2) to CuO NWs increased.
机译:2,5-呋喃二甲酸(FDCA)是取代石油衍生的对苯二甲酸的重要组成部分之一,被用作生物塑料,药物的来源。在这里,独立的Cu(OH)(2)和CuO纳米线作为电极进行了检查,以揭示在0.1 M KOH溶液中电催化5-羟基甲基糠醛(HMF)氧化成FDCA时,基于氧化铜的晶体结构和化学形成的影响。我们通过无机聚合和煅烧将高孔隙率的三维泡沫铜(CuF)作为铜源和具有高电导率的独立式Cu(OH)(2)和CuO纳米线(NWs)的基材引入到基材中,以进行电化学HMF氧化。这是通过Cu(OH)(2)晶体的(001)晶面中Cu2 +离子的方形平面配位(sigma(x2-y2))实现的。通过氢键堆叠,在基板上形成了独立的Cu(OH)(2)NWs。纳米线阵列的形态没有变化,但是通过将Cu(OH)(2)转化为CuO NWs,每个表面暴露的Cu原子的平面活性区域增加了。

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