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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Repetitively Coupled Chemical Reduction and Galvanic Exchange as a Synthesis Strategy for Expanding Applicable Number of Pt Atoms in Dendrimer-Encapsulated Pt Nanoparticles
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Repetitively Coupled Chemical Reduction and Galvanic Exchange as a Synthesis Strategy for Expanding Applicable Number of Pt Atoms in Dendrimer-Encapsulated Pt Nanoparticles

机译:重复地耦合化学还原和电催化作为合成策略,用于在树枝状聚合物包封的Pt纳米粒子中扩张适用的Pt原子数

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摘要

In this study, we report the controllable synthesis of dendrimer-encapsulated Pt nanoparticles (Pt DENs) utilizing repetitively coupled chemical reduction and galvanic exchange reactions. The synthesis strategy allows the expansion of the applicable number of Pt atoms encapsulated inside dendrimers to more than 1000 without being limited by the fixed number of complexation sites for Pt2+ precursor ions in the dendrimers. The synthesis of Pt DENs is achieved in a short period of time (i.e., similar to 10 min) simply by the coaddition of appropriate amounts of Cu2+ and Pt2+ precursors into aqueous dendrimer solution and subsequent addition of reducing agents such as BH4-, resulting in fast and selective complexation of Cu2+ with the dendrimers and subsequent chemical reduction of the complexed Cu2+ while uncomplexed Pt2+ precursors remain oxidized. Interestingly, the chemical reduction of Cu2+, leading to the formation of Cu nanoparticles encapsulated inside the dendrimers, is coupled with the galvanic exchange of the Cu nanoparticles with the nearby Pt2+. This coupling repetitively proceeds until all of the added Pt2+ ions form into Pt nanoparticles encapsulated inside the dendrimers. In contrast to the conventional method utilizing direct chemical reduction, this repetitively coupled chemical reduction and galvanic exchange enables a substantial increase in the applicable number of Pt atoms up to 1320 in Pt DENs while maintaining the unique features of DENs.
机译:在该研究中,我们报告了Dendimer封装的Pt纳米颗粒(Pt Dens)的可控合成利用重复耦合的化学还原和电催化交换反应。合成策略允许将封装在树枝状大分子内部的适用数量的Pt原子的扩增膨胀至超过1000,而不受树枝状大分子中的Pt2 +前体离子的固定数量的络合位点的限制。仅通过将适量的Cu 2 +和Pt2 +前体的共同合并到水性树枝状聚合物溶液中并随后加入降低剂如BH4 - 导致的还原剂(即,类似于10分钟)在短时间内(即,类似于10分钟)的合成。 Cu2 +的快速和选择性络合与树枝状聚合物和随后的络合Cu2 +的化学还原,同时未复杂的Pt2 +前体保持氧化。有趣的是,Cu2 +的化学还原,导致形成在树枝状大分子内部的Cu纳米颗粒,与附近Pt2 +的Cu纳米颗粒的电催化交换偶联。该偶联重复地进行,直到所有添加的Pt2 +离子形式形成到封装在树枝内的Pt纳米粒子中。与利用直接化学降低的常规方法相比,这种重复耦合的化学还原和电流交换使得能够在Pt Dens中适用的Pt原子数量的适用数量增加,同时保持静脉的独特特征。

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