期刊文献+

ZnO纳米球的微波水热合成及纯丙乳液改性研究 被引量:4

Microwave hydrothermal synthesis of ZnO nanospheres and its modified pure acrylic emulsion
在线阅读 下载PDF
导出
摘要 以六水合硝酸锌和三乙醇胺为原料,采用微波水热法快速合成出形貌规则的ZnO纳米球。利用XRD、SEM、TEM等分析手段对样品进行表征。结果表明ZnO纳米球直径约150nm且单分散性良好;TEM分析显示ZnO纳米球是由10~20nm的晶粒堆积而成的疏松球形结构;在较大的水热温度和水热时间范围内,所得产物均为100~200nm的颗粒。将ZnO纳米粒子改性后掺入到纯丙乳液中形成复合乳液,其涂膜的抗张强度和断裂伸长率均有较大提高,涂膜浸泡48h后的吸水率也降低约10%。 Well monodispersed ZnO nanospheres have been prepared by using triethanolamine(TEA) as complexant and zinc nitrate hexahydrate as zinc source under microwave hydrothermal conditions.The structure and morphology of the samples were characterized by XRD,SEM and TEM.Results show that each ZnO nanospheres(about 150nm) is composed of numerous ZnO aggregates nanocrystallines with diameters of 10-20nm.Moreover,TEM observations indicate that the structure of ZnO nanospheres is loose.In the SEM images,the products obtained at different temperatures(140-180℃) and different times(1-60min) have the similar morphologies under the otherwise identical conditions.The composite latex was obtained by pure acrylic emulsion mixed with a small amount of modified ZnO nanoparticles.Water absorption ratio of composite films decrease by 10% after soaking 48h,in addition,both elongation at break and tensile strength of composite films significantly improve.
出处 《功能材料》 EI CAS CSCD 北大核心 2011年第12期2285-2288,共4页 Journal of Functional Materials
基金 高等学校博士学科点专项科研基金资助项目(20096125110001)
关键词 ZNO 纳米球 微波水热法 三乙醇胺 纯丙乳液 ZnO nanospheres microwave hydrothermal method triethanolamine pure acrylic emulsion
  • 相关文献

参考文献12

  • 1Tigli R S, Evren V, et al. [J]. Progress in Organic Coatings, 2005, 52.. 144-150.
  • 2胡静,马建中,邓维钧.有机硅烷偶联剂对聚丙烯酸酯/纳米SiO_2复合材料性能的影响[J].功能材料,2008,39(12):2065-2067. 被引量:5
  • 3郭文录,张莉.纯丙微乳液的合成与表征[J].合成材料老化与应用,2009,38(2):10-13. 被引量:1
  • 4Silva A, Dahmouche k, et al. [J]. Applied Clay Science, 2010, 47: 414-420.
  • 5Huang H C, Hsieh T E, et al. [J]. Ceramics International, 2010, 36: 1245-1251.
  • 6Jiang H, Hu J Q, et al. [J]. The Journal of Physical Chemistry C, 2008, 112: 12138-12141.
  • 7Hossain M F, Takahashi T, et al. [J]. Electrochemistry Communications, 2009, 11: 1756-1759.
  • 8Zhang G K, Shen X, et al. [J].The Journal of Physical Chemistry C, 2011, 115: 7145-7152.
  • 9Wu X, Jiang P, et al. [J]. Advanced Engineering Materi als, 2008, 10(5): 476-481.
  • 10Yi R, Zhang N, et al. [J]. Materials Science and Engineering B, 2008, 153: 25-30.

二级参考文献19

共引文献4

同被引文献43

引证文献4

二级引证文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部