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Self-template synthesis of defect-rich NiO nanotubes as efficient electrocatalysts for methanol oxidation reaction

机译:Self-template defect-rich NiO的综合纳米管electrocatalysts一样有效甲醇氧化反应

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摘要

Developing robust and inexpensive non-noble metal based anode electrocatalysts is highly desirable for alkaline direct methanol fuel cells (ADMFCs). Herein, we successfully develop a facile self-template synthetic strategy for gram-grade porous NiO nanotubes (NTs) by pyrolyzing a nanorod-like Ni-dimethylglyoxime complex. The pyrolysis temperature highly correlates with the morphology and crystallinity of NiO NTs. The optimal NiO NTs exhibit a large electrochemically active surface area, a fast catalytic kinetics, and a small charge transfer resistance, which induce an outstanding electrocatalytic activity for the methanol oxidation reaction (MOR). Compared with conventional NiO nanoparticles, NiO NTs achieve a 11.5-fold increase in mass activity at 1.5 V for the MOR due to nanotubal morphology and abundant non-vacancy defects on the NiO NT surface. Moreover, NiO NTs have a higher electrocatalytic activity for the intermediates of the MOR (such as formaldehyde and formate) than conventional NiO nanoparticles, which also contribute to MOR activity enhancement. Given the facile synthesis and enhanced electrocatalytic performance, NiO NTs may be promising anode electrocatalysts for ADMFCs.
机译:开发健壮的和廉价的非贵金属基于阳极electrocatalysts是非常可取的碱性直接甲醇燃料电池(ADMFCs)。在此,我们成功地开发一个肤浅gram-grade self-template合成策略多孔氧化镍纳米管(nt)通过pyrolyzingnanorod-like Ni-dimethylglyoxime复杂。热解温度高度相关的NiO nt的形态和结晶度。最优NiO nt展览电化学原理活性表面积,快速催化动力学,和一个小的电荷转移电阻诱导一个杰出的electrocatalytic活动对甲醇氧化反应(铁道部)。与传统的氧化镍纳米粒子相比,NiOnt实现大规模活动增长了11.5倍在1.5 V铁道部nanotubal形态NiO NT和丰富non-vacancy缺陷表面。electrocatalytic活性中间体铁道部的(如甲醛和甲酸)比传统的氧化镍纳米颗粒,也为铁道部活动增强。的合成和增强electrocatalytic性能,NiO nt可能有前途的阳极electrocatalysts ADMFCs。

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