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机构地区:[1]华东理工大学材料科学与工程学院超细材料制备与应用教育部重点实验室,上海200237
出 处:《华东理工大学学报(自然科学版)》2006年第12期1427-1431,共5页Journal of East China University of Science and Technology
基 金:国家自然科学基金重点项目(20236020);上海市基础研究重大项目(04DZ14002);上海市重点实验室专项基金(04DZ05622;05DZ22302);上海市纳米科技基金项目(0452nm001;0452nm047;05nm05001)
摘 要:开发了二次球磨湿法制备锑掺杂纳米二氧化锡(ATO)/乙二醇(EG)稳定体系的新方法;选用硅烷偶联剂KH 570,实现了ATO颗粒在EG溶液中的均匀分散和稳定性控制;研究了分散工艺参数对体系的影响,探讨了ATO颗粒的表面包覆改性机理。研究表明:分散剂KH 570的含量和体系的pH显著影响ATO在EG中的分散稳定性,在KH 570含量为1.5%,体系pH为8.5时,ATO/EG浆料的分散性能最佳。KH 570与ATO颗粒表面羟基发生的化学键结合,提高了颗粒表面的疏水性,改善了ATO颗粒与有机极性溶剂及高聚物之间的亲和力。A new method called twice ball-milling was developed for dispersing antimony doped tin oxide (ATO) nanoparticles in ethylene glycol (EG) solutions. The monodispersed solution of ATO in EG was successfully achieved using KH570 as the dispersant, and then the dispersion mechanism was discussed based on the TG and FT-IR results of ATO particles coated by KH570. The results indicate that the dispersion properties of ATO are strongly affected by the pH of solution and the concentration of KH570. ATO nanoparticles can be dispersed stably in EG solution when the concentration of KH570 is 1. 5 % and the pH of solution is 8. 5. FT-IR and TG results indicate that chemically bound is formed of KH570 on the surface of ATO nanoparticles, which makes the surface of ATO exhibit more hydrophobic than that of unmodified ATO nanoparticles.
关 键 词:锑掺杂纳米二氧化锡颗粒 乙二醇 分散稳定性 表面改性
分 类 号:TB383[一般工业技术—材料科学与工程]
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