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A hydride-induced-reduction strategy for fabricating palladium-based core-shell bimetallic nanocrystals

机译:hydride-induced-reduction策略捏造palladium-based核壳双金属纳米晶体

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One key challenge in making high-quality bimetallic nanocrystals is to prevent self-nucleation of individual metal components. We report in this work an effective seeded growth strategy that uses activated hydrogen atoms as the reducing agent to prepare core-shell bimetallic nanocrystals. In the developed method, Pd nanocrystals serve as the seed and catalyst as well to activate H2 for the reductive deposition of Ag. The unique feature of the developed method is that the activated hydrogen atoms are confined on the surface of the Pd seeds. Consequently, the self-nucleation of Ag is effectively inhibited so that the deposition of Ag occurs only on Pd. The mechanism studies reveal that reductive growth of Ag on Pd seeds proceeds until the Pd surface is fully covered by Ag. The Ag/Pd ratio in the prepared Pd@Ag nanocrystals is readily fine-tuned by the amount of AgNO3 or H2. The method is effective for depositing Ag on Pd nanocrystal seeds with different morphologies such as nanosheets, nanocubes, tetrahedra and nanowires. More importantly, the deposition of Ag' on Pd nanowires allows preparation of flexible transparent electrode material with sheet electronic conductivity of 271 S sq~(-1) at a transmittance of over 90%.
机译:在制作高质量的一个关键挑战双金属纳米晶体是防止self-nucleation个人的金属部件。我们报告在这工作一个有效播种的增长使用活性氢原子的策略还原剂制备核壳双金属纳米晶体。Pd纳米晶体作为种子和催化剂激活的H2还原沉积Ag)。是活性氢原子在吗表面的Pd种子。self-nucleation Ag)的有效抑制只在Pd的沉积Ag)发生。研究表明,还原的增长机制Ag)在Pd种子收益直到Pd表面完全由Ag)。准备Pd@Ag纳米晶体是容易调整硝酸银的量或H2。有效的对Pd纳米晶体沉淀Ag)种子等不同形态nanosheets nanocubes,四面体和纳米线。更重要的是,在Pd Ag)的沉积纳米线允许灵活的准备透明电极材料表271年代的电子导电性平方~ (1)透光率超过90%。

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