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Controlling the Deposition of Pd on Au Nanocages: Outer Surface Only versus Both Outer and Inner Surfaces

机译:控制Au Nanoges上PD的沉积:外表面仅与外表面和内表面相反

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When a metal precursor is reduced in the presence of Au nanocages with a hollow interior and porous walls, in principle the resultant metal atoms can be deposited onto both the outer and inner surfaces or just the outer surface. Here we demonstrate that these two different scenarios of metal deposition can be deterministically achieved by controlling the reduction kinetics of the precursor. Specifically, if PdCl42- is employed as the precursor, its fast reduction kinetics favors the solution reduction pathway, in which the resultant Pd atoms are deposited only onto the outer surface for the generation of Au@Pd double-shelled nanocages. When the precursor is switched to PdBr42- to slow down the reduction, the precursor can readily-diffuse into the interior of the Au nanocages prior to its reduction to elemental Pd. As such, both the outer and inner surfaces of the nanocages become coated with Pd for the generation of Pd@Au@Pd triple-shelled nano cages. This study not only offers a new synthetic approach to metal nanocages with diverse compositions and structures but also demonstrates the necessity of controlling the relative rates of reduction and bulk diffusion of a metal precursor when nanostructures with a hollow interior and porous walls are used for seed-mediated growth.
机译:当在使用中空内部和多孔壁的Au纳米腔的存在下减少金属前体时,原则上,所得金属原子可以沉积在外表面和内表面上或仅外表面上。在这里,我们证明通过控制前体的减少动力学,可以确定地实现这两个不同的金属沉积场景。具体地,如果使用PdCl42-作为前体,其快速减少动力学将求解溶液还原途径,其中所得的PD原子仅沉积到外表面上,用于产生Au @ Pd双壳纳米图像。当前体切换到PDBr42-以减慢减少时,前体可以在减少到元素Pd之前容易地扩散到Au纳米的内部。因此,纳米载体的外表面和内表面都涂覆有PD的PD @ Au @ Pd三壳纳米笼的产生。这项研究不仅为具有多种组合物和结构的金属纳米片提供了一种新的合成方法,而且还表明了当用中空内部和多孔壁用于种子的纳米结构时,控制金属前体的相对速率的必要性。介导的生长。

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