Synthesis and Study of Superhigh-Concentrated Organosols of Silver Nanoparticles

IF 1.4 4区 化学 Q4 CHEMISTRY, PHYSICAL
S. A. Vorobyev, M. Yu. Flerko, S. A. Novikova, E. V. Mazurova, Ye. V. Tomashevich, M. N. Likhatski, S. V. Saikova, A. S. Samoilo, N. A. Zolotovsky, M. N. Volochaev
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Abstract

Due to their unique properties, organosols of silver nanoparticles are widely used in optical and semiconductor devices, to produce electrically and thermally conductive films, as catalysts, antibacterial materials, etc. This work proposes a simple and highly productive method for the preparation of silver organosols, which have a metal concentration as high as 1800 g/L and contain spherical nanoparticles with low polydispersity and a median size of 9.1 nm. The method consists in the initial preparation of silver nanoparticle hydrosols with a concentration of higher than 30 g/L followed by the transfer of the NPs into an organic phase of o-xylene. A set of physical research methods has been employed to study the regularities of the extraction of silver nanoparticles with o-xylene in the presence of cetyltrimethylammonium bromide (CTAB) and ethanol and to determine the optimal process conditions, under which the extraction degree is as high as 62.5%. It has been found that bromine anions contained in CTAB molecules cause the aggregation of some amount of silver nanoparticles with the formation of silver metal sediment in the aqueous phase. According to X-ray photoelectron spectroscopy data, the sediment contains bromide ions (up to 4 at %) on the particle surface. Organosols synthesized under optimal conditions are stable for more than 7 months and withstand repeated cycles of drying and redispersing. Silver organosols have been used to obtain metal films with an electrical conductivity of about 68 500 S/cm, which increases to 412 000 and 509 500 S/cm (87.8% of the electrical conductivity of bulk silver) after thermal treatment at 150 and 250°C, respectively.

Abstract Image

超高浓缩银纳米颗粒有机溶剂的合成与研究
摘要由于其独特的性质,纳米银颗粒的有机溶剂被广泛应用于光学和半导体器件、导电和导热薄膜的生产、催化剂、抗菌材料等。本研究提出了一种简单、高效的银有机溶剂制备方法,其金属浓度高达 1800 克/升,并含有多分散性低、中值尺寸为 9.1 纳米的球形纳米粒子。该方法包括首先制备浓度高于 30 克/升的银纳米粒子水溶液,然后将纳米粒子转移到邻二甲苯有机相中。在十六烷基三甲基溴化铵(CTAB)和乙醇存在下,采用了一套物理研究方法来研究邻二甲苯萃取纳米银颗粒的规律性,并确定了最佳工艺条件,在此条件下,萃取率高达 62.5%。研究发现,CTAB 分子中含有的溴阴离子会导致一定量的纳米银颗粒聚集,并在水相中形成银金属沉淀。根据 X 射线光电子能谱数据,沉积物的颗粒表面含有溴离子(高达 4%)。在最佳条件下合成的有机溶胶可稳定 7 个月以上,并可经受反复循环的干燥和再分散。银有机溶剂可用于获得电导率约为 68 500 S/cm 的金属膜,在 150 和 250°C 的温度下进行热处理后,电导率分别增至 412 000 和 509 500 S/cm(银块电导率的 87.8%)。
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来源期刊
Colloid Journal
Colloid Journal 化学-物理化学
CiteScore
2.20
自引率
18.20%
发文量
36
审稿时长
6-12 weeks
期刊介绍: Colloid Journal (Kolloidnyi Zhurnal) is the only journal in Russia that publishes the results of research in the area of chemical science dealing with the disperse state of matter and surface phenomena in disperse systems. The journal covers experimental and theoretical works on a great variety of colloid and surface phenomena: the structure and properties of interfaces; adsorption phenomena and structure of adsorption layers of surfactants; capillary phenomena; wetting films; wetting and spreading; and detergency. The formation of colloid systems, their molecular-kinetic and optical properties, surface forces, interaction of colloidal particles, stabilization, and criteria of stability loss of different disperse systems (lyosols and aerosols, suspensions, emulsions, foams, and micellar systems) are also topics of the journal. Colloid Journal also includes the phenomena of electro- and diffusiophoresis, electro- and thermoosmosis, and capillary and reverse osmosis, i.e., phenomena dealing with the existence of diffusion layers of molecules and ions in the vicinity of the interface.
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