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Screening of Novel Li-Air Battery Catalyst Materials by a Thin Film Combinatorial Materials Approach

机译:薄膜组合材料法筛选新型锂空气电池催化剂材料

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摘要

A combinatorial synthesis and high-throughput screening process was developed for the investigation of potential oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) catalysts for use as Li-air battery cathode materials. Libraries of discrete ternary metal alloy compositions were deposited via thin-film sputtering. The samples were electrochemically tested in parallel using cyclic voltammetry in O-2-saturated KOH electrolyte. Compositions were ranked by ORR and OER onset potentials with respect to an internal Pt reference. Results from the Pt-Mn-Co, Cr-Mn-Co, Pd-Mn-Co, and Pd-Mn-Ru systems are reported. Many alloy compositions showed marked improvement in catalytic activity compared to pure Pt. Among the systems considered, Pt12Mn44Co44, Pd43Co57 and Pd36Mn28Ru36 in particular exhibited lower overpotentials for oxygen reactions, which occur at the cathode in Li-air batteries.
机译:为了研究用作锂空气电池正极材料的潜在氧还原反应(ORR)和氧释放反应(OER)催化剂,开发了一种组合合成和高通量筛选方法。通过薄膜溅射沉积离散的三元金属合金组成的库。使用循环伏安法在O-2-饱和KOH电解质中对样品进行电化学平行测试。相对于内部Pt参考,通过ORR和OER发作电位对成分进行排名。报告了Pt-Mn-Co,Cr-Mn-Co,Pd-Mn-Co和Pd-Mn-Ru系统的结果。与纯Pt相比,许多合金成分均显示出明显的催化活性改善。在所考虑的系统中,Pt12Mn44Co44,Pd43Co57和Pd36Mn28Ru36特别显示出较低的氧反应过电势,发生在锂空气电池的阴极。

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