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Reactivity and Chemical Sintering of Carey Lea Silver Nanoparticles

机译:凯里精银纳米颗粒的反应性和化学烧结

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摘要

Carey Lea silver hydrosol is a rare example of very concentrated colloidal solutions produced with citrate as only protective ligands, and prospective for a wide range of applications, whose properties have been insufficiently studied up to now. Herein, the reactivity of the immobilized silver nanoparticles toward oxidation, sulfidation, and sintering upon their interaction with hydrogen peroxide, sulfide ions, and chlorocomplexes of Au(III), Pd(II), and Pt(IV) was investigated using SEM and X-ray photoelectron spectroscopy (XPS). The reactions decreased the number of carboxylic groups of the citrate-derived capping and promoted coalescence of 7 nm Ag NPs into about 40 nm ones, excluding the interaction with hydrogen peroxide. The increased nanoparticles form loose submicrometer aggregates in the case of sulfide treatment, raspberry-like micrometer porous particles in the media containing Pd(II) chloride, and densely sintered particles in the reaction with inert H PtCl complexes, probably via the formation of surface Ag-Pt alloys. The exposure of Ag NPs to HAuCl solution produced compact Ag films along with nanocrystals of Au metal and minor Ag and AgCl. The results are promising for chemical ambient temperature sintering and rendering silver-based nanomaterials, for example, for flexible electronics, catalysis, and other applications.
机译:Carey Lea银水溶胶是仅以柠檬酸盐作为保护性配体生产的非常浓缩的胶体溶液的稀有实例,并且对于广泛的应用前景广阔,到目前为止,其性能尚未得到充分研究。本文中,使用SEM和X研究了固定化银纳米粒子与过氧化氢,硫化物离子和Au(III),Pd(II)和Pt(IV)的氯配合物相互作用时对氧化,硫化和烧结的反应性。射线光电子能谱(XPS)。反应减少了柠檬酸盐衍生的封端的羧基基团,并促进了7 nm Ag NP聚结成约40 nm,而与过氧化氢的相互作用除外。在硫化物处理的情况下,增加的纳米颗粒形成疏松的亚微米聚集体,在含有氯化钯(II)的介质中呈覆盆子状的微米级多孔颗粒,并且在与惰性H PtCl络合物的反应中可能紧密地烧结形成了Ag -Pt合金。 Ag NPs暴露在HAuCl溶液中会产生致密的Ag膜,以及金金属和次要Ag和AgCl的纳米晶体。该结果对于化学环境温度烧结和提供基于银的纳米材料,例如,用于柔性电子,催化和其他应用,是有希望的。

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