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An aqueous synthesis of porous PtPd nanoparticles with reversed bimetallic structures for highly efficient hydrogen generation from ammonia borane hydrolysis

机译:一个水多孔PtPd纳米粒子的合成反向双金属结构高度根据氨硼烷生成高效的氢水解

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摘要

Fine construction of porous bimetallic nanomaterials with tunable components and structures is of great importance for their catalytic performance and durability. Herein, we present a facile and mild one-pot route for the preparation of porous PtPd bimetallic nanoparticles (NPs) with reversed structures in aqueous solution for the first time. To this end, a common ionic liquid (IL) 1-hexadecyl-3-methylimidazolium chloride ([C(16)mim]Cl) is utilized to direct the growth and assembly of porous structures of PtPd NPs. It is shown that the as-prepared porous Pt25Pd75 NPs have obvious hierarchical structures with nanoflowers as subunits and nanorods as basic units. The elemental components and structures of the porous PtPd NPs can be tuned by the precursor ratio and the [C(16)mim]Cl concentration. Furthermore, various porous PtPd bimetallic structures from Pd-on-Pt to Pt-on-Pd may be efficiently switched by controlling the concentration of glycine. Owing to their high specific surface area, porous hierarchical structures (including mesopores and micropores), and probable electronic effects between Pt and Pd, the porous Pt25Pd75 NPs (Pd-on-Pt structure) are found to exhibit prominent catalytic activity and high stability for hydrogen production from hydrolysis of ammonia borane.
机译:好多孔双金属的建设纳米材料与可调组件和结构是非常重要的催化性能和耐久性。温和的和温和的锅路线制备多孔PtPd双金属纳米颗粒与扭转结构(NPs)第一次的水溶液。一个常见的离子液体(IL)1-hexadecyl-3-methylimidazolium氯([C (16) mim] Cl)是利用直接增长和组装PtPd NPs的多孔结构。表明多孔Pt25Pd75 NPs好了吗有明显的层次结构nanoflowers基本单元和纳米棒单位。多孔PtPd NPs可调谐的前兆比和[C (16) mim] Cl浓度。此外,各种多孔PtPd双金属从Pd-on-Pt Pt-on-Pd可能结构有效地将通过控制甘氨酸的浓度。比表面积,多孔分层结构(包括中孔和微孔隙),和可能的Pt与电子的影响Pd,多孔Pt25Pd75 NPs (Pd-on-Pt结构)发现表现出突出的催化活性么和高稳定的制氢水解的氨硼烷。

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