2,947 | 100 | 108 |
下载次数 | 被引频次 | 阅读次数 |
由于尺寸效应,纳米氧化锌具备普通氧化锌所没有的特殊性能。介绍了电化学、物理改性和化学改性等纳米氧化锌的表面处理方法,以及溶胶凝胶、原位聚合、共混和插层等纳米涂料的制备方法。还介绍了纳米氧化锌的性能,如紫外屏蔽性能、补强性、抗菌除臭性、阻燃性等,分析了纳米氧化锌具备这些特殊性能的机理。由于具备以上性能,纳米氧化锌作为颜填料对涂料性能有明显的改善作用并赋予了涂料新的功能。对纳米氧化锌在涂料中的应用前景提出了展望。
Abstract:Nano-ZnO is of special characteristics for its dimension effect. The surface treatment methods of nano-ZnO were introduced, which include electrochemistry, physical modification and chemical modification. The preparation methods of nano-coating including solgel-gel, in-situ polymerization, physicalblend and insert-layer, etc., and the characteristics of nano-ZnO such as ultraviolet shielding, enhanced-intensity, antibiosis-deodorization, antiflaming, etc. were described. The mechanisms of special characteristics were analyzed. Nano-ZnO used as pigment filler improves the coatings performance obviously and gives the coating′s novel functions. The prospect of nano-ZnO applications in coatings was presented.
[1] 徐甲强,潘庆宜,孙雨安,等.纳米氧化锌的乳液合成、结构表征与气敏性能[J].无机化学学报,1998,14(3):355-359.
[2] MSeidl,MSchurr,ABrugger,etal.Zincoxidethinfilmspreparedbymeansoflangmuir blodgettmultilayers[J].AppliedPhysicsA,1999,68:81-85.
[3] YDu,MSZang,JHong,etal.Structuralandopticalpropertiesofnanophasezincoxide[J].AppliedPhysicsA,2003,76:171-176.
[4] 祖庸,刘超峰,李晓娥,等.均匀沉淀法合成纳米氧化锌[J].现代化工,1997,(9):33-35.
[5] 郑水林.粉体表面改性[M].北京:中国建材工业出版社,1995.213.
[6] 刘雪宁,杨治中.表面改性的纳米氧化锌的制备及其吸收特性[J].物理化学学报,2000,16(8):746-748.
[7] 余爱萍,陈雪花,陈忠伟,等.抗紫外线纳米氧化锌粉体的制备与表面改性[J].上海化工,2001,20:13-35.
[8] AAmmala,AJHill,PMeakin,etal.DegradationstudiesofpolyolefinsincorporatingtransparentnanoparticulatezincoxideUVstabilizers[J].JournalofNanoparticleResearch,2002,(4):167-174.
[9] 刘福春,韩恩厚,柯伟.抗紫外线纳米ZnO/氧化锌复合丙烯酸酯涂料[J].材料研究学报,2003,17(2):138-144.
[10] 祖庸,王训,吴金龙,等.新型无机抗菌剂———超微细氧化锌[J].化工时刊,1999,13(1):7-9.
[11] 张梅,杨绪杰,陆路德,等.纳米TiO2———一种性能优良的光催化剂[J].化工新型材料,2000,28(4):11-14.
[12] 李毕忠.抗菌塑料的发展和应用[J].化工新型材料,2000,28(6):8-12.
[13] 李彦峰,汪斌华,黄婉霞,等.纳米氧化锌改性内墙涂料抗菌性研究[J].涂料工业,2003,33(8):3-6.
[14] 谌伟庆,付敏恭.应用与开发纳米材料对醇酸树脂涂料的改性[J].江苏化工,2003,31(6):30-32.
[15] 施文芳,刘和文.γ-辐射交联ZnO/含氯聚合物阻燃性能的研究[J].高分子材料科学与工程,1999,15(1):149-151.
[16] 欧育湘.实用阻燃技术[M].化学工业出版社,2002:120.
[17] 刘超峰,王振红,胡行方.氧化锌色素在真空紫外辐照下降解机理的研究[J].中国空间科学技术,1999,(4):32-38.
[18] YuanFangli,HuPeng,YinChunlei,etal.Preparationandpropertiesofzincoxidenanoparticlascoatedwhithzincalumniate[J].MaterialsChemistry,2003,13:634-637.
[19] JRJensen,TJohannessen,SWedel,etal.PreparationofZnO AlOparticlesinapremixedflame[J].JournalofNanoparticleResearch,2000,(2):363-373.
[20] DaeJongSeo,SeungBinPark,YunChanKang,etal.FormationofZnO,MgOandNiOnanoparticlesfromaqueousdropletsinflamereactor[J].JournalofNanoparticleResearch,2003,(5):199-210
基本信息:
DOI:10.19289/j.1004-227x.2005.03.009
中图分类号:TQ630.49
引用信息:
[1]王小丹,铁绍龙.纳米氧化锌的性能及其在涂料中的应用[J].电镀与涂饰,2005(03):27-30.DOI:10.19289/j.1004-227x.2005.03.009.
基金信息: