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通过金属间转移反应制备双金属 CoPd 和 CuPd 纳米粒子的有效策略。

Transmetallation as an effective strategy for the preparation of bimetallic CoPd and CuPd nanoparticles.

机构信息

University of Padova, Department of Industrial Engineering, via F. Marzolo 9, 35131 Padova, Italy.

出版信息

Nanoscale. 2014;6(3):1560-6. doi: 10.1039/c3nr04409b.

Abstract

The preparation of palladium alloy nanoparticles is of great interest for many applications, especially in catalysis. Starting from presynthesized nanoparticles of a less noble metal, a transmetallation reaction involving a redox process at the nanoparticle surface can be exploited to modify the nanoparticle composition and crystalline phase. As an example, monodispersed ε-cobalt and face-centered cubic copper nanoparticles were synthesized in organic solvents at high temperature and the as-formed nanoparticles were reacted with palladium(ii) hexafluoroacetylacetonate resulting in the formation of alloyed nanoparticles whose composition closely follows the reactant ratio. The oxidative state of the nanoparticle surface greatly affects the success of the transmetallation reaction and a reduction treatment was necessary to achieve the desired final product. Electron microscopy and X-ray diffraction showed that for cobalt a limiting palladium content for the ε-phase alloy is found, above which an fcc alloy nucleates, while for copper the fcc crystalline phase is preserved throughout the whole composition range.

摘要

钯合金纳米粒子的制备在许多应用中都具有重要意义,特别是在催化领域。从预先合成的低贵金属纳米粒子开始,可以利用涉及纳米粒子表面氧化还原过程的转移金属反应来修饰纳米粒子的组成和晶体相。例如,在高温下的有机溶剂中合成了单分散的ε-钴和面心立方铜纳米粒子,然后将形成的纳米粒子与六氟乙酰丙酮钯(ii)反应,形成合金纳米粒子,其组成与反应物的比例密切相关。纳米粒子表面的氧化态极大地影响了转移金属反应的成功,需要进行还原处理才能得到所需的最终产物。电子显微镜和 X 射线衍射表明,对于钴,在ε 相合金的钯含量达到一定限制后,会形成面心立方合金核,而对于铜,整个组成范围内都保持着面心立方晶体相。

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