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国家自然科学基金(51103143)

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Property variation of ionic liquid [Bmim][AuCl_4] immobilized on carboxylated polystyrene submicrospheres with a small surface area
2013年
In order to understand the effect of surface chemical groups on the immobilized species, Au-containing imidazolium-based ionic liquid (IL) [Bmim][AuCl4] was intentionally immobilized on polystyrene (PS) submicrospheres (d~300 nm) with a very small surface area (4-10 m2/g), which possess carboxyl-moiety (COONa or COOH) on the surface. The behavior of immobilized [Bmim][AuCl4 ] on the two types of submicrospheres was investigated by transmission electron microscopy (TEM), differential scanning calorimetry (DSC), and powder X-ray diffraction (XRD). It was revealed that the melting points (Tm) of [Bmim][AuCl4 ] that had been immobilized on PS-COONa and PS-COOH submicrospheres were decreased by 2.7 and 4.1℃, respectively. The interaction mechanism between the IL and submicrosphere surface moieties was further analyzed by X-ray absorption fine structure (XAFS) analysis. The data indicated that the coordination environment of Au species changed markedly when [Bmim] [AuCl4] was immobilized on the surfaces of PS-COONa and PS-COOH submicrospheres, as illustrated by the decrease in white line peak intensity. The effect of surface COOH groups on Tm depression and the white line peak intensity of the XANES spectrum is more pronounced than that of COONa groups, most likely due to the possible hydrogen bond formation between the COOH group and [Bmim]+.
HE YaXingFU HaiYingLI ChengJI XiangGE XueWuZOU YangJIANG ZhengXU HongJieWU GuoZhong
关键词:表面积X射线吸收精细结构差示扫描量热法
防腐自修复涂层研究进展及展望
金属腐蚀遍及各行各业,给国民经济带来了巨大的损失。在金属表面施予涂层防腐蚀是最有效、最经济、应用最普遍的方法。本文介绍了包埋金属缓蚀剂的主动防腐涂层和具有自修复功能的被动防腐涂层的研究进展,并对今后构筑长效智能型金属防腐...
汪谟贞葛学武
关键词:防腐涂层自修复缓蚀剂微胶囊
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Fabrication of macroporous polystyrene/graphene oxide composite monolith and its adsorption property for tetracycline被引量:8
2016年
Macroporous polystyrene microsphere/graphene oxide(PS/GO) composite monolith was first prepared using Pickering emulsion droplets as the soft template. The Pickering emulsion was stabilized by PS/GO composite particles in-situ formed in an acidic water phase. With the evaporation of water and the oil phase(octane), the Pickering emulsion droplets agglomerated and combined with each other, forming a three-dimensional macroporous PS/GO composite matrix with excellent mechanical strength. The size of the macrospores ranged from 4 mm to 20 mm. The macroporous PS/GO composite monolith exhibited high adsorption capacity for tetracycline(TC) in an aqueous solution at p H 4–6. The maximum adsorption capacity reached 197.9 mg g 1at p H 6. The adsorption behaviour of TC fitted well with the Langmuir model and pseudo-second-order kinetic model. This work offers a simple and efficient approach to fabricate macroporous GO-based monolith with high strength and adsorption ability for organic pollutants.
Le-Chen ChenShan LeiMo-Zhen WangJun YangXue-Wu Ge
关键词:ADSORPTIONTETRACYCLINE
Synthesis and morphology control of raspberry-like poly(ethylene terephthalate)/polyacrylonitrile microspheres被引量:2
2016年
The fabrication of raspberry-like poly(ethylene terephthalate)/polyacrylonitrile(PET/PAN) microspheres by g-ray radiation-induced polymerization of acrylonitrile on micron-sized PET microspheres were first reported in this work. A PET emulsion was firstly prepared by dispersing a PET solution with 1,1,2,2-tetrachloroethane/phenol mixture as the solvent into an aqueous solution of sodium dodecyl sulfate.Then, PET microspheres were formed by precipitating the PET emulsion droplets from ethanol. The influence of the PET solvent and the weight ratio of ethanol to PET emulsion on the morphology of the PET microspheres had been investigated. After the surface of the prepared PET microspheres was grafted with poly(acrylic acid), the grafting polymerization of AN also had been successfully initiated by g-ray radiation to form PAN microspheres with a size of about 100 nm on the PET microspheres. This work provides a new method to fabricate micron-sized PET microspheres, and further expands the functionalization of PET and its application fields.
Yong-Fei XuMo-Zhen WangQi-Chao WuXiao ZhouXue-Wu Ge
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