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Oxygen-Deficient Ti0.9Nb0.1O2-x as an Efficient Anodic Catalyst Support for PEM Water Electrolyzer

机译:氧缺氧Ti0.9NB0.1O2-X作为PEM水电解槽的有效阳极催化剂载体

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Herein, the low cost and efficient oxygen-deficient Ti0.9Nb0.1O2-x as support of IrO2 (noted as IrO2/TNO) anode catalyst for the PEM water electrolyzer is synthesized and then characterized using a series of techniques. Oxygen vacancies are introduced by hydrogenation treatment. The IrO2/TNO sample after hydrogenation (noted as IrO2/TNO Hx, x corresponds to the hydrogenation temperature) exhibits enhanced electronic conductivity and increased surface active sites relative to that of the pristine IrO2/TNO sample. A single cell is assembled by IrO2/TNO Hx as anode catalyst, commercial Pt/C as cathode catalytic and Nafion 117 membrane as electrolyte. At a low loading mass of IrO2, the IrO2/TNO H750 sample shows the optimum oxygen evolution reaction (OER) activity (1.832 V at 1 A . cm(2)), which is superior to that of unsupported IrO2 (1.858 eV at 1 A . cm(2)), and remains stable for 100 h operating at a current density of 1 Acm 2. This work provides a rational design strategy for developing low cost and efficient anode catalysts support.
机译:这里,合成了低成本和有效的缺氧Ti0.9NB0.1O2-X作为PEM水电解槽的IRO2(注作为IRO2 / TNO)阳极催化剂的载体,然后使用一系列技术表征。通过氢化处理引入氧气空位。氢化后的IRO2 / TNO样品(注意为IRO2 / TNO HX,X对应于氢化温度),具有相对于原始IRO2 / TNO样品的增强的电子电导率和增加的表面活性位点。单电池由IRO2 / TNO HX作为阳极催化剂,商业Pt / C作为阴极催化剂和Nafion 117膜作为电解质组装。在低载荷质量的IRO2中,IRO2 / TNO H750样品显示最佳氧化反应(OER)活性(1A的1.832V),其优于不支持的IRO2(1.858eV为1一个。CM(2)),保持稳定100小时,在电流密度为1 ACM 2.该工作提供了用于开发低成本和高效阳极催化剂载体的合理设计策略。

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