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首页> 外文期刊>E3S Web of Conferences >Electrochemical Oxygen Reduction Reaction Performance of Water Hyacinth Derived Porous Non-precious Electrocatalyst in Alkaline Media
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Electrochemical Oxygen Reduction Reaction Performance of Water Hyacinth Derived Porous Non-precious Electrocatalyst in Alkaline Media

机译:碱性介质中水葫芦衍生的多孔非贵金属电催化剂的电化学氧还原反应性能

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This research studied the possibility of converting water hyacinth biomass into the porous non-precious oxygen reduction reaction (ORR) electrocatalyst using a simple, low cost and scalable autogenic pressure method. The electrocatalyst was prepared by thermally annealing water hyacinth root contained ZnCl2 at 700~(o)C under autogenic pressure conditions. The phase of the catalyst was the mixture of carbon and metal oxide. In addition, rough surface morphology and high porosity were clearly observed using scanning electron microscope. The synthesized catalyst was then determined the ORR performance by cyclic voltammetry (CV) and linear sweep voltammetry (LSV) techniques under O2 saturated KOH solution. The ORR performance increased as the catalyst loading was increased and the optimum catalyst loading was found to be 1.5 mg/cm~(2)which generated the Eonset and E1/2 value of 0.93 V and 0.80 V vs. RHE, respectively. Furthermore, the E1/2 value of the synthesized catalyst was 230 and 130 mV greater than the catalyst synthesized without ZnCl2 and commercial carbon (VXC-72R). ORR durability study suggested that the prepared catalyst was durable to operate ORR for 5000 cycles in alkaline media. These results suggested that the autogenic pressure conditions would be a promising technique to prepare highly active and durable biomass derived ORR electrocatalyst.
机译:这项研究研究了使用简单,低成本和可扩展的自生压力方法将凤眼兰生物质转化为多孔非贵氧还原反应(ORR)电催化剂的可能性。通过在自生压力条件下于700〜(o)C对含有ZnCl2的水葫芦根进行热退火来制备电催化剂。催化剂的相是碳和金属氧化物的混合物。另外,使用扫描电子显微镜清楚地观察到粗糙的表面形态和高孔隙率。然后在O2饱和KOH溶液下,通过循环伏安法(CV)和线性扫描伏安法(LSV)技术确定合成的催化剂的ORR性能。 ORR性能随催化剂载量的增加而增加,最佳催化剂载量为1.5 mg / cm〜(2),相对于RHE,其Eonset和E1 / 2值分别为0.93 V和0.80V。此外,合成的催化剂的E1 / 2值比没有ZnCl2和市售碳(VXC-72R)的合成催化剂大230和130 mV。 ORR耐久性研究表明,所制备的催化剂在碱性介质中可耐受ORR循环5000次。这些结果表明自生压力条件将是制备高活性和持久性的生物质衍生的ORR电催化剂的有前途的技术。

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