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首页> 外文期刊>Sustainable Energy Technologies and Assessments >Facile synthesis of novel Cu_2O-g-C_3N_4/Vulcan carbon composite as anode material with enhanced electrochemical performances in urea fuel cell
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Facile synthesis of novel Cu_2O-g-C_3N_4/Vulcan carbon composite as anode material with enhanced electrochemical performances in urea fuel cell

机译:具有增强尿素燃料电池的电化学性能提高电化学性能的新型Cu_2O-G-C_3N_4 / Vulcan碳复合材料的组合

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摘要

A novel g-C3N4/VC composite was prepared by adopting simple hydrothermal treatment without using any additives from bulk g-C3N4 and Vulcan XC-72R (VC) in different ratios. Further, the resulting composite materials were used as a support for the synthesis of Cu2O NPs. The use of g-C3N4/VC not only acts as a support for the Cu2O NPs but also it forms a new type of novel composite materials, i.e., Cu2O-g-C3N4/VC. Various ratios (1:1, 1:2 and 2:1) of g-C3N4 and VC were used for the synthesis of three different types of the composite materials such as Cu2O-g-C3N4/VC(1:1), Cu2O-g-C3N4/VC(1:2), and Cu2O-g-C3N4/VC(2:1). The structures, surface properties, elemental compositions, and morphologies of synthesized materials were analyzed by various instrument methods such as FTIR, XRD, FESEM, Raman, EDS, BET, etc. Then the electrochemical activity of those resulting Cu2O-g-C3N4/VC composite materials were examined towards urea oxidation. The catalytic activity of Cu2O-g-C3N4/VC composite materials were found to be influenced by the variation of the g-C3N4 to VC ratio. The Cu2O-g-C3N4/VC(1:2) composite presented a higher current density (25.3 mAcm(-2)) as compared to that of Cu2O-g-C3N4/VC(1:1) (21.2 mAcm(-2)) and Cu2O-g-C3N4/VC(2:1) (13.5 mAcm(-2)) at 0.6 V using 2 M urea. The observed higher catalytic activity of this Cu2O-g-C3N4/VC (1:2) composite material compared to Cu2O-g-C3N4/VC (1:1) and Cu2O-g-C3N4/VC (2:1) is due to its higher surface area arising from different morphology compared to that of others. The Chronoamperometric measurements of the composite materials demonstrated their high stability upto 2 h without any degradation in the current density.
机译:通过采用简单的水热处理而制备新的G-C3N4 / VC复合材料,而不使用来自不同比例的甲基-C3N4和硫磺XC-72R(Vc)的任何添加剂。此外,将所得复合材料用作合成Cu 2 O NPS的载体。 G-C3N4 / VC的使用不仅作为对Cu2O NPS的支持,而且还形成了一种新型新型复合材料,即Cu2O-G-C3N4 / VC。 G-C3N4和VC的各种比例(1:1,1:2和2:1)用于合成三种不同类型的复合材料,例如Cu 2 O-G-C3N4 / VC(1:1),Cu2O -G-C3N4 / VC(1:2)和Cu2O-G-C3N4 / VC(2:1)。通过各种仪器方法分析合成材料的结构,表面性质,元素组合物和形态,例如FTIR,XRD,FESEM,Raman,EDS,BET等。然后是Cu2O-G-C3N4 / VC的电化学活性检查复合材料呈尿素氧化。发现Cu 2 -G-C3N4 / VC复合材料的催化活性受G-C3N4至VC比的变化的影响。与Cu 2 O-G-C3N4 / VC(1:1)相比,Cu2O-G-C3N4 / Vc(1:2)复合材料呈现较高的电流密度(25.3mMm(-2))(21.2mmm(-2 ))和Cu 2 -G-C3N4 / Vc(2:1)(2:1)(2:1)(13.5mMm(-2)),在0.6V时使用2m尿素。与Cu 2 O-G-C3N4 / VC(1:1)和Cu 2 O-G-C3N4 / VC(2:1)相比,该Cu 2 O-G-C3N4 / VC(1:2)复合材料的更高催化活性的催化活性较高与他人相比,从不同形态产生的较高表面积。复合材料的计时测量测量值证明了其高稳定性,高达2小时,而不在电流密度下降。

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