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The improved water oxidation at neutral pH using field bindweed and NiCo- layered double hydroxides

机译:使用田间络合和Nico-层双氢氧化物改善中性pH的水氧化

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High-efficiency and environmental electro-catalyst are prepared for the water oxidation. Here, we report nitrogen doping-carbon quantum dot (N-CQD) that is prepared from field bindweed using the hydrothermal method. Also, NiCo-layered double hydroxide (LDH) was prepared using a simple method. The prepared samples were characterized using several techniques that confirmed the successful preparation of N-CQD and NiCo-LDH. Also, the effect of molar ratios of Ni: Co on the morphology of NiCo-LDH were studied by the Field Emission-Scanning Electron Microscopy (FE-SEM). The obtained images obviously reveal that apply several molar ratios of Ni and Co can affect the morphology and optimized molar ratio Ni: Co was 1: 1. Then, we use N-CQDs combination with the optimized NiCo-LDH for water oxidation. The resulting NiCo-LDH/N-CQD shows improved electro-catalytic activity in comparison with pure NiCo-LDH (with an onset-potential of 1.55 V (vs. RHE) and overpotential about similar to 325 mV in neutral media) for oxygen evolution. The enhanced water oxidation activity is attributed to the association of the NiCo-LDH with N-CQDs. N-CQDs which supply rapid electron transfer, supreme conductivity, and electron reservoir characters that are caused to the rapid electron transfers from N-CQDs to NiCo-LDH on the surface and consequently, could further increase the electro-catalytic reaction.
机译:为水氧化制备高效率和环境电催化剂。在此,我们报告使用水热法从现场酵母制备的氮掺杂碳量子点(N-CQD)。此外,使用简单的方法制备Nico层双氢氧化物(LDH)。使用几种技术表征制备的样品,该技术证实了N-CQD和Nico-LDH的成功制备。此外,通过现场发射扫描电子显微镜(Fe-SEM)研究了Ni:Co对Nico-LDH形态的影响。所获得的图像显然揭示了施加几种Ni和Co的摩尔比可以影响形态和优化的摩尔比Ni:Co为1:1。然后,我们使用N-CQDS组合与优化的Nico-LDH进行水氧化。得到的Nico -LDH / N-CQD显示出改善的电催化活性,与纯NiCo-LDH(催化 - 潜在的1.55V(与Rhe)和过电位在中性介质中的325mV中的过电位)相比进行氧气进化。增强的水氧化活性归因于NiCO-LDH与N-CQDS的缔合。提供快速电子转移,最高电导率和从N-CQDS的快速电子转移到表面上的电子转移和电子储存器的N-CQDS,从而可以进一步增加电催化反应。

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