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具有本征导电性和稳定性的纯磺基苯二胺共聚物纳米粒子的合成及重金属离子吸附

Synthesis and heavy-metal-ion sorption of pure sulfophenylenediamine copolymer nanoparticles with intrinsic conductivity and stability.

作者信息

Lü Qiu-Feng, Huang Mei-Rong, Li Xin-Gui

机构信息

Institute of Materials Chemistry, Key Laboratory of Advanced Civil Engineering Materials, College of Materials Science and Engineering, Tongji University, 1239 Siping Road, Shanghai 200092, China.

出版信息

Chemistry. 2007;13(21):6009-18. doi: 10.1002/chem.200700233.

Abstract

Novel copolymer nanoparticles were easily synthesized with a polymerization yield of 59.3 % by an oxidative precipitation polymerization of aniline (AN) and m-sulfophenylenediamine (SP) in HCl without any external stabilizer. The polymerization yield, size, morphology, electroconductivity, solubility, solvatochromism, lead and mercury ion adsorbability of the HCl-doped copolymer salt particles were studied by changing the AN/SP ratio. The AN/SP (80:20) copolymer particles are found to have the minimal number-average diameter(84.4 nm), minimal size polydispersity index (1.149), high stability, good long-term stability, powerful redispersibility in water, high purity, and clean surface because of a complete elimination of the contamination from external stabilizer. The copolymer salts possess a remarkably enhanced solubility, interesting solvatochromism, and widely adjustable electroconductivity moving across nine orders of magnitudes from 10(-9) to 10(0) S cm(-1). The AN/SP (70:30) copolymer particles have the highest Hg2+ adsorbance and adsorptivity of 497.7 mg g(-1) and 98.8 %, respectively, which are much higher values than those of other materials. The sorption mechanism of lead and mercury ions on the particles is proposed. The copolymer bases with 5-10 mol % SP unit show excellent film formability, flexibility, and smooth appearance. The copolymer should be very useful in the fabrication of cost-effective conductive nanocomposite with low percolation threshold and in removal of toxic metallic ions from waste water.

摘要

通过在盐酸中对苯胺(AN)和间苯二胺磺酸(SP)进行氧化沉淀聚合,无需任何外部稳定剂,即可轻松合成新型共聚物纳米颗粒,聚合产率为59.3%。通过改变AN/SP比例,研究了盐酸掺杂共聚物盐颗粒的聚合产率、尺寸、形态、电导率、溶解性、溶剂化显色性、铅和汞离子吸附性。发现AN/SP(80:20)共聚物颗粒具有最小的数均直径(84.4 nm)、最小的尺寸多分散指数(1.149)、高稳定性、良好的长期稳定性、在水中强大的再分散性、高纯度以及清洁的表面,这是因为完全消除了外部稳定剂的污染。共聚物盐具有显著增强的溶解性、有趣的溶剂化显色性以及可在九个数量级范围内广泛调节的电导率,从10^(-9)到10^(0) S cm^(-1)。AN/SP(70:30)共聚物颗粒具有最高的Hg2+吸附量和吸附率,分别为497.7 mg g^(-1)和98.8%,远高于其他材料。提出了铅和汞离子在颗粒上的吸附机理。含有5 - 10 mol% SP单元的共聚物碱表现出优异的成膜性、柔韧性和光滑外观。该共聚物在制备具有低渗滤阈值的经济高效导电纳米复合材料以及从废水中去除有毒金属离子方面应非常有用。

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