| 288 | 0 | 15 |
| 下载次数 | 被引频次 | 阅读次数 |
以苯乙烯(St)和含氟单体(G04)为原料、聚乙烯吡咯烷酮(PVP)为分散剂和乙醇/水为混合溶剂,采用分散聚合法制备出PS-F(含氟聚苯乙烯)微球;然后以苯丙乳液提供的附着力、PS-F微球提供的疏水性能,制备PS-F疏水涂层。结果表明:制备PS-F微球的最佳工艺条件是m(总单体)=m(St+含氟单体)=20 g且m(St):m(含氟单体)=18:2、w(AIBN)=1.5%、w(PVP)=7.5%、V(乙醇)=108 mL、V(H_2O)=72mL、反应温度70℃和反应时间10 h,此时PS-F微球的粒径为0.4~1.0μm;当w(PS-F微球)=60%时,疏水涂层的水接触角为130。左右;含氟单体含量和苯丙乳液含量对水接触角的影响不大,涂层疏水性能主要与PS-F微球大小、涂层表面粗糙度有关。
Abstract:With styrene(St) and F-containing monomer(G04) as raw materials,polyvinylpyrrolidone(PVP) as dispersant,and ethanol/water as mixed solvent,a PS-F(F-containing polystyrene) microsphere was prepared by dispersion polymerization.Then a PS-F hydrophobic coat was prepared by adhesion from St-acrylate emulsion and hydrophobic property from PS-F microspheres.The results showed that the optimal process conditions for preparing PS-F microspheres were preferred when total monomers(namely St and F-containing monomer) were 20 g,and mass ratio of m(St ):m(F-containing monomer) was 18:2,mass fractions of AIBN and PVP were 1.5%and 7.5%respectively, V(ethanol) = 108 mL,V(H_2O)=72 mL,reaction temperature and time were 70℃and 10 h respectively,so the particle sizes of PS-F microspheres were 0.4-1.0μm.The water-contact angle of hydrophobic coat was about 130°when mass fraction of PS-F microspheres was 60%.The influences of F-containing monomer contents and St-acrylate emulsion contents on water-contact angle were lesser,the hydrophobic property of coat depend mainly on particles sizes of PS-F microspheres and roughness of coat surface.
[1]Barthlott W,Neinhuis C.Purity of the sacred lotus,or escape from contamination in biological surfaces[J].Planta,1997, 202(1):1-8.
[2]Feng L,Song Y L,Zhai J,et al.Creation of a superhydrophobic surface from an amphiphilic polymer[J].Angewandte Chenie-International Edition,2003,42(7):800-802.
[3]Feng L,Li S,Li Y,et al.Super-hydrophobic surfaces:From natural to artificial[J].Advanced Materials,2002,14(24): 1 857-1 860.
[4]Shang H M,Wang Y,Limmer S J,et al.Optically transparent superhydrophobic silica-based fibns[J].Thin Solid Fibns, 2005,472(1-2):37-43.
[5]Wu Y Y,Bekke M,lnoue Y,et al.Mechanical durability of ultra-water-repellent thin film by microwave plasma-enhanced CVD[J].Thin Solid Fihns,2004,457(1):122-127.
[6]Shirtcliffe N J,McHale G,Newton M I,et al.Wetting and wetting transitions on copper-based super-hydrophobic surfaces[J].Langmuir,2005,21(3):937-943.
[7]Song X Y,Zhai J,Wang Y L,et al.Fabrication of superhydrophobic surfaces by self-assembly and their wateradhesion properties[J],The Journal of Physical Chemistry(B), 2005,109(9):4 048-4 052.
[8]刘端,朱仕惠,刘丹,等.聚苯乙烯微球分散聚合的研究[J].甘肃科技,2010,26(5):25-29.
[9]范婷,陈建定,黄广建.分散聚合法制备单分散聚苯乙烯微球[J].功能高分子学报,2007,20(2):172-177.
基本信息:
DOI:10.13416/j.ca.2012.06.003
中图分类号:O632.13
引用信息:
[1]刘增金,蔡松,梁小杰,等.含氟聚苯乙烯微球的制备及其疏水性能研究[J].中国胶粘剂,2012,21(06):6-9+18.DOI:10.13416/j.ca.2012.06.003.
基金信息:
高分子国家重点实验室自主项目(GFZ201 1002)
2012-06-30
2012-06-30