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首页> 外文期刊>Journal of power sources >Ultrafast synthesis of uniform 4-5 atoms-thin layered tremella-like Pd nanostructure with extremely large electrochemically active surface area for formic acid oxidation
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Ultrafast synthesis of uniform 4-5 atoms-thin layered tremella-like Pd nanostructure with extremely large electrochemically active surface area for formic acid oxidation

机译:超快速合成均匀的4-5原子薄层银耳状钯纳米结构,具有极大的甲酸氧化活性表面

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摘要

Herein, a uniform 4-5 atoms-thin layered tremella-like Pd nanostructure with extremely large electrochemically active surface area is ultrafast-synthesized in 1 min by a one-pot surfactant-free route at room temperature, delivering 4.2 times higher peak current density and much faster electron transfer than commercial Pd/C toward formic acid oxidation thus becoming the highest catalytic activity over the reported Pd-based nanosheet catalysts in terms of mass activity and peak potential. The enhancement mechanism of this unique architecture indicates that ultrathin layered and interconnected "clean" structure offers modified Pd electronic properties, extremely large active surface area and high conductivity for fast electrode kinetics. This work has universal significance to provide a facile and fast method to synthesize a unique nanostructure for highly active electrocatalysts, while holding great promise for an active surfactant-free Pd catalyst for formic acid oxidation.
机译:在此,在室温下通过一锅法无表面活性剂的途径在1分钟内超快合成了具有极大的电化学活性表面积的均匀的4-5原子薄层状银耳状Pd纳米结构,提供了4.2倍的峰值电流密度相对于甲酸而言,它的电子转移速度比市售Pd / C快得多,因此就质量活性和峰值电势而言,已成为报道的基于Pd的纳米片催化剂的最高催化活性。这种独特体系结构的增强机制表明,超薄层和相互连接的“清洁”结构可提供修饰的Pd电子性能,极大的有效表面积和高电导率,可实现快速的电极动力学。这项工作具有普遍的意义,为提供一种简便且快速的方法来合成高活性电催化剂的独特纳米结构,同时为无活性表面活性的Pd甲酸氧化提供广阔前景。

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