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Rapid, general synthesis of pdpt bimetallic alloy nanosponges and their enhanced catalytic performance for ethanol/methanol electrooxidation in an alkaline medium

机译:pdpt双金属合金纳米海绵的快速常规合成及其在碱性介质中对乙醇/甲醇电氧化的增强催化性能

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摘要

We have demonstrated a rapid and general strategy to synthesize novel three-dimensional PdPt bimetallic alloy nanosponges in the absence of a capping agent. Significantly, the as-prepared PdPt bimetallic alloy nanosponges exhibited greatly enhanced activity and stability towards ethanol/methanol electrooxidation in an alkaline medium, which demonstrates the potential of applying these PdPt bimetallic alloy nanosponges as effective electrocatalysts for direct alcohol fuel cells. In addition, this simple method has also been applied for the synthesis of AuPt, AuPd bimetallic, and AuPtPd trimetallic alloy nanosponges. The as-synthesized three-dimensional bimetallic/trimetallic alloy nanosponges, because of their convenient preparation, well-defined sponge-like network, large-scale production, and high electrocatalytic performance for ethanol/methanol electrooxidation, may find promising potential applications in various fields, such as formic acid oxidation or oxygen reduction reactions, electrochemical sensors, and hydrogen-gas sensors. Soak it up: A rapid and general strategy is demonstrated for the preparation of novel three-dimensional PdPt bimetallic alloy nanosponges (see figure) that exhibit greatly enhanced activity and stability towards ethanol/methanol electrooxidation in an alkaline medium
机译:我们已经证明了在没有封端剂的情况下合成新型三维PdPt双金属合金纳米海绵的快速通用策略。重要的是,所制备的PdPt双金属合金纳米海绵在碱性介质中对乙醇/甲醇电氧化表现出大大增强的活性和稳定性,这证明了将这些PdPt双金属合金纳米海绵作为直接乙醇燃料电池的有效电催化剂的潜力。此外,这种简单的方法也已用于合成AuPt,AuPd双金属和AuPtPd三金属合金纳米海绵。合成后的三维双金属/三金属合金纳米海绵,由于其制备方便,海绵状网络清晰,大规模生产以及对乙醇/甲醇电氧化的高电催化性能,因此有望在各个领域找到潜在的应用前景,例如甲酸的氧化或氧还原反应,电化学传感器和氢气传感器。吸收:展示了一种快速而通用的策略,用于制备新颖的三维PdPt双金属合金纳米海绵(参见图),该海绵在碱性介质中表现出对乙醇/甲醇电氧化的活性和稳定性大大提高

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