油基纳米氧化锌分散浆的制备及其流变特性
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TQ658

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江苏省重点研发计划-产业前瞻与共性关键技术;淮安市自然科学研究计划


Preparation and rheological properties of oil-based nano zinc oxide dispersion slurry
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Jiangsu Province Key R&D Program-Industry Foresight and Common Key Technologies; Huai'an City Natural Science Research Program

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    摘要:

    选用硬脂酸钠对ZnO进行表面湿法改性,以环十五硅氧烷硅油为溶剂,PEG-10聚二甲基硅氧烷为分散剂,通过机械球磨法制备了纳米ZnO分散浆。利用水接触角、热重、TEM和FTIR对纳米ZnO粉体进行表征。结果表明,硬脂酸钠改性后,粉体具有疏水性,且硬脂酸钠最佳包覆量为6%(以ZnO的质量计,下同)。硬脂酸钠包覆量为6%的疏水性纳米ZnO粉体,包覆层厚度约为2 nm,此时水接触角最大为145.4°。模拟防晒乳液的防晒性能测试中,纳米氧化锌分散浆的紫外屏蔽性能显著优于粉体。流变特性测试表明,分散浆为假塑性流体,流动曲线符合Ostwald-de Wale幂律方程,具有剪切稀化特性;分散浆的黏度低,触变性小,储存稳定性高;温度升高,黏度降低,配方生产中对温度的敏感程度较小 。

    Abstract:

    ZnO was modified with sodium stearate by surface wet modification. Then, the nano-ZnO dispersion slurry was prepared by mechanical grinding, using cyclopentadecane silicone oil as solvents and PEG-10 polydimethylsiloxane as dispersants. The powder were characterized by water contact angle, TG, TEM and FTIR test, respectively. The result showed that the powder has hydrophobicity after sodium stearate modified. The coating thickness was about 2 nm and the maximum water contact angle was 145.4° when the amount of sodium stearate was 6%. In the sunscreen performance test of simulated sunscreen emulsion, the UV shielding performance of nano-ZnO dispersion powder was significantly better than that of powder. The rheological study showed that the dispersion slurry was a pseudoplastic fluid, which conformed to the Ostwald-de Wale power law equation, and had shear thinning characteristics. The viscosity of the dispersed slurry was low, the thixotropy was small, and the storage stability was high; when the temperature was increased, the viscosity of the slurry was reduced and the sensitivity to temperature in formula production was lower.

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倪璟怡,姚超,左士祥,刘文杰,李霞章.油基纳米氧化锌分散浆的制备及其流变特性[J].精细化工,2021,38(3):

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  • 收稿日期:2020-07-31
  • 最后修改日期:2020-10-07
  • 录用日期:2020-10-10
  • 在线发布日期: 2021-02-02
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