Gelation of Hydrophilic Polymer Bearing Metal-coordination Units with Au(III) Ions: Application to Synthesis of Porous Gold

IF 2.1 4区 工程技术 Q3 CHEMISTRY, INORGANIC & NUCLEAR
Daisuke Nagai, Aoi Mano, Takafumi Ishii, Shusuke Okamoto
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Abstract

We describe an environmentally benign method for the synthesis of porous gold by gelation of a hydrophilic polymer bearing metal-coordination units (thiocarbonyl groups, denoted as HPMC) and Au(III) ions. The gelation was performed by dropwise addition of a dispersed aqueous solution of HPMC to an aqueous solution of Au(III) in a test tube. Concentrations of 15 and 20 wt% HPMC provided elongated and fibrous gels. Scanning electron microscopy and transmission electron microscopy analyses of the fibrous gels revealed the formation of porous gels containing Au nanoparticles. Calcination of the polymer parts in the porous gels at 550 °C for 7 h, followed by self-assembly of the remaining Au nanoparticles, provided the golds with micrometer-size pores. Thermogravimetric analysis of the porous golds indicated that its purity was high (96 ~ 99%). Because the metal-coordination unit has soft basic characteristics, it preferentially coordinate to soft acidic noble metal ions such as platinum group metal ions, Ag(I), and so on. Therefore, this method will be applied to synthesis of various porous metals.

Abstract Image

含金属配位单元的亲水性聚合物与金(III)离子的凝胶化:应用于多孔金的合成
我们介绍了一种通过凝胶化含有金属配位单元(硫代羰基基团,简称 HPMC)的亲水性聚合物和 Au(III)离子来合成多孔金的环保方法。凝胶化是将分散的 HPMC 水溶液滴加到试管中的 Au(III)水溶液中进行的。浓度为 15 和 20 wt% 的 HPMC 提供了拉长的纤维状凝胶。纤维状凝胶的扫描电子显微镜和透射电子显微镜分析表明形成了含有金纳米颗粒的多孔凝胶。将多孔凝胶中的聚合物部分在 550 °C 下煅烧 7 小时后,剩余的金纳米粒子进行自组装,形成了具有微米大小孔隙的金。多孔金的热重分析表明其纯度很高(96 ~ 99%)。由于金属配位单元具有软碱性特征,它优先与软酸性贵金属离子(如铂族金属离子、Ag(I)等)配位。因此,这种方法可用于合成各种多孔金属。
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来源期刊
Gold Bulletin
Gold Bulletin Chemistry-Inorganic Chemistry
CiteScore
3.70
自引率
4.50%
发文量
21
期刊介绍: Gold Bulletin is the premier international peer reviewed journal on the latest science, technology and applications of gold. It includes papers on the latest research advances, state-of-the-art reviews, conference reports, book reviews and highlights of patents and scientific literature. Gold Bulletin does not publish manuscripts covering the snthesis of Gold nanoparticles in the presence of plant extracts or other nature-derived extracts. Gold Bulletin has been published over 40 years as a multidisciplinary journal read by chemists, physicists, engineers, metallurgists, materials scientists, biotechnologists, surface scientists, and nanotechnologists amongst others, both within industry and academia. Gold Bulletin is published in Association with the World Gold Council.
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