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Palladium-cobalt nanodots anchored on graphene: In-situ synthesis, and application as an anode catalyst for direct formic acid fuel cells

机译:锚固在石墨烯上的钯钴纳米点:原位合成及其作为直接甲酸燃料电池的阳极催化剂的应用

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摘要

Highly active, "clean" and stable PdCo nanodots anchored on graphene is successfully synthesized using an in-situ adsorption-reduction method, exhibiting the highest peak current density (up to 1362.1 mA mg(-1)) toward formic acid oxidation over previously published PdCo based alloy catalysts under the same characterization conditions. The nanodots could keep their original size and dispersity even after 200 cycles electrochemical test. This work not only demonstrates a universal in-situ adsorption-reduction route to preparing an active electrocatalyst toward formic acid oxidation for direct formic acid fuel cells but also offers new opportunities to design and synthesis of noble metal alloy based nanodots with improved electrocatalytic performance for energy conversion/storage and sensor systems.
机译:使用原位吸附-还原方法成功合成了锚固在石墨烯上的高活性,“清洁”和稳定的PdCo纳米点,在甲酸氧化过程中表现出最高的峰值电流密度(高达1362.1 mA mg(-1))。以前在相同的表征条件下发表的PdCo基合金催化剂。即使经过200次循环电化学测试,纳米点仍可以保持其原始大小和分散性。这项工作不仅展示了一种通用的原位吸附还原途径,可以制备用于直接甲酸燃料电池的甲酸氧化用活性电催化剂,而且还为设计和合成基于贵金属合金的纳米点提供了新的机会,这些纳米点具有改善的能量电催化性能转换/存储和传感器系统。

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