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纳米紫外屏蔽剂的制备及性能研究

时间:2018-10-21 20:34来源:毕业论文
采用模板法制备纳米球型氧化锌颗粒,用锌盐为原材料,通过催化剂作用以及后期煅烧制备出纳米球型氧化锌颗粒。以紫外吸光性能和粒径大小为指标优化制备工艺,并通过透射电镜和

摘要:本课题采用模板法制备纳米球型氧化锌颗粒,用锌盐为原材料,通过催化剂作用以及后期煅烧制备出纳米球型氧化锌颗粒。以紫外吸光性能和粒径大小为指标优化制备工艺,并通过透射电镜和红外光扫描对煅烧前后进行测定。结果表明,制备球型氧化锌颗粒的最佳工艺为,聚合物球粒径为395nm,反应温度为60℃,催化剂用量为200ul,锌盐用量为3%,煅烧时间为3h,煅烧温度为500℃。此时制备出来的球型氧化锌颗粒粒径为647nm左右,紫外吸光性能最优。29438
毕业论文关键词:模板法 纳米球型氧化锌 紫外屏蔽性能
Preparation and Properties of Nano UV Shielding Agent
Abstract: This paper mainly adopts a certain proportion of styrene, ammonium persulfate, acrylic acid, polyvinyl pyrrolidone (PVP) fully stirring and nitrogen into the and oil bath heating to a certain temperature, later joining initiator potassium persulfate, isothermal reaction 10 hours, after centrifugation washing system for preparation of anionic PS template. Take 0.1ps template (solid content is 1%) by adding a certain amount of water, with magnetic stirring heating to 60 ℃, constant temperature reaction 1 hour, with injection machine into a certain amount of Zn(NO3)2•6H2O, isothermal reaction 3 hours, with injection molding machine into a certain amount of ammonia, reaction  for 2 hours, centrifugal washing and finally into the muffle furnace up to calcined at a certain temperature for 3 hours. The results showed that the nano zinc oxide hollow spheres of the optimum preparation process for, PS template particle size in 393-399nm, Zn(NO3)2•6H2O dosage for 0.2975g and ammonia of the injection volume 200ul, calcination temperature to 500 ℃, then prepared zinc oxide hollow spheres UV shielding performance is the best.
Keywords: Template  Nano-type zinc oxide  UV Shielding Agent
目录
1 绪论    1                                                                                                                         
  1.1 纳米材料.. 1                                           
    1.1.1 纳米材料的发展 ..1                                                                     
    1.1.2 纳米材料的制备.2                                     
    1.1.3 纳米材料的光学性质 2                                
  1.2 紫外屏蔽剂..3                                             纳米紫外屏蔽剂的制备及性能研究:http://www.youerw.com/huaxue/lunwen_24687.html
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