论文标题

纳米颗粒的胶体合成:从双金属到高熵合金

Colloidal Synthesis of Nanoparticles: from Bimetallic to High Entropy Alloys

论文作者

da Silva, Cora Moreira, Amara, Hakim, Fossard, Frédéric, Girard, Armelle, Huc, Vincent, Loiseau, Annick

论文摘要

在纳米量表上,即使对于简单的二进制类型系统,化学合成的随机合金(即没有相位分离,无论是任何相位)的合成仍然并不容易。在这种情况下,提出了一种基于胶体途径的独特方法,可以使面部中心和单分散的双层金属,三金属,四边形和五型金属纳米颗粒的合成,其直径约为5 nm。 Fe-Co-Ni-PT-RU合金及其子集被认为是一个具有挑战性的任务,因为每个元素具有相当不同的物理化学特性。纳米颗粒是通过在存在表面活性剂的情况下在温度辅助的金属乙酰乙酸酯前体的合并辅助还原制备的。它强调了前体的降解温度与降低电势值之间的相关性是如何实现纳米颗粒内所有元素的同质分布的驱动力。

At the nanometric scale, the synthesis of a random alloy (i.e. without phase segregation, whatever the composition) by chemical synthesis remains a not easy task, even for simple binary type systems. In this context, a unique approach based on the colloidal route is proposed enabling the synthesis of face-centred cubic and monodisperse bimetallic, trimetallic, tetrametallic and pentametallic nanoparticles with diameters around 5 nm as solid solutions. The Fe-Co-Ni-Pt-Ru alloy and its subsets are considered which is a challenging task as each element has fairly different physico-chemical properties. Nanoparticles are prepared by temperature-assisted co-reduction of metal acetylacetonate precursors in the presence of surfactants. It is highlighted how the correlation between precursors' degradation temperatures and reduction potentials values of the metal cations is the driving force to achieve a homogenous distribution of all elements within the nanoparticles.

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