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TiNb_2O_7 nanoparticle-decorated graphite felt as a high-performance electrode for vanadium redox flow batteries

机译:TiNb_2O_7纳米修饰石墨毡作为钒还原液流电池的高性能电极

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摘要

A novel, low-cost, safe, highly catalytic, and stable TiNb2O7 nanoparticle-modified graphite felt (TNO-modified GF) electrode was successfully fabricated using a simple solvothermal method for vanadium redox flow batteries (VRFBs). The TNO-modified GF electrode showed the highest electrocatalytic activity toward the VO2+/VO2+ redox couple among all samples measured. According to charging-discharging results, the average energy efficiency of the cell using TNO-modified GF electrode reached 79.06% at 100 mA cm(-2), which is 4.43% and 15.73% higher than the cells constructed with heat-treated GF (HT-GF) and pristine GF (P-GF) electrodes, respectively. Moreover, cycling tests revealed no observable decay in the efficiencies after 100 cycles, indicating that the TNO-modified GF electrode is stable over repetitive cycling. The superior electrochemical performance of the cell with the TNO-modified GF electrode is attributed to the introduction of uniformly distributed TNO nanoparticles. The modification increased oxygen-containing functional groups on the surface of GF, thus making it more hydrophilic. It also lowered the activation barrier for electrochemical reactions within vanadium ions, leading to facilitate the charge transfer process on the surface of GF.
机译:使用简单的溶剂热法成功地为钒氧化还原液流电池(VRFB)制备了新颖,低成本,安全,高催化性和稳定的TiNb2O7纳米粒子改性石墨毡(TNO改性GF)电极。在所有测量的样品中,TNO修饰的GF电极对VO2 + / VO2 +氧化还原对表现出最高的电催化活性。根据充放电结果,使用TNO修饰的GF电极的电池在100 mA cm(-2)时的平均能量效率达到79.06%,比热处理过的GF构建的电池平均能量效率高4.43%和15.73%( HT-GF)和原始GF(P-GF)电极。此外,循环测试表明在100次循环后效率没有明显下降,这表明TNO修饰的GF电极在重复循环中稳定。具有TNO修饰的GF电极的电池优异的电化学性能归因于均匀分布的TNO纳米颗粒的引入。所述修饰增加了GF表面上的含氧官能团,因此使其更亲水。它还降低了钒离子内电化学反应的活化能垒,从而促进了GF表面上的电荷转移过程。

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