Huang Yi, Kobayashi Motoyoshi
Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1, Tennoudai, Tsukuba, Ibaraki 305-8572, Japan.
Faculty of Life and Environmental Sciences, University of Tsukuba, 1-1-1, Tennoudai, Tsukuba, Ibaraki 305-8572, Japan.
Polymers (Basel). 2020 May 16;12(5):1141. doi: 10.3390/polym12051141.
Controlling the rheological property of suspensions consisting of colloidal particles and polymers is necessary in industry. Especially, gels induced by shear (shake-gel) are interesting phenomena in rheological field. To gain insight into the shake-gel phenomena of the aqueous suspensions of silica nanoparticles and poly(ethylene oxide) (PEO) and its temporal change, we observed the state transition and measured the viscosity of the silica-PEO suspensions. Our results showed that PEO dose, pH, and molecular weight of PEO influence the state of suspension greatly, and revealed the differences of the suspension states, namely, cloudy, permanent gel, shake-gel, and high viscosity sol. We found that the relaxation time from shake-gel to flowable sol increases to the maximum and decreases again with increasing PEO dose. Shake-gels at pH 8.4 relaxed more slowly than at pH 9.4, and shake-gel did not form at pH above 10 in most of cases, indicating high pH inhibits the formation of shake-gels. PEO of molecular weight of 1000 and 4000 kDa easily bonds more silica nanoparticles by bridging and results in the formation of gels with more stable polymer networks. PEO of molecular weight of 1000 and 4000 kDa also led to longer relaxation time of the silica-PEO suspensions from gel to sol.
在工业中,控制由胶体颗粒和聚合物组成的悬浮液的流变性质是必要的。特别是,剪切诱导凝胶(摇变凝胶)是流变学领域中有趣的现象。为了深入了解二氧化硅纳米颗粒和聚环氧乙烷(PEO)水悬浮液的摇变凝胶现象及其时间变化,我们观察了状态转变并测量了二氧化硅 - PEO悬浮液的粘度。我们的结果表明,PEO剂量、pH值和PEO的分子量对悬浮液状态有很大影响,并揭示了悬浮液状态的差异,即浑浊、永久凝胶、摇变凝胶和高粘度溶胶。我们发现,从摇变凝胶到可流动溶胶的弛豫时间随着PEO剂量的增加先增加到最大值然后再次减小。pH值为8.4时的摇变凝胶比pH值为9.4时松弛得更慢,并且在大多数情况下,pH值高于10时不会形成摇变凝胶,这表明高pH值会抑制摇变凝胶的形成。分子量为1000和4000 kDa的PEO通过桥连更容易结合更多的二氧化硅纳米颗粒,并导致形成具有更稳定聚合物网络的凝胶。分子量为1000和4000 kDa的PEO还导致二氧化硅 - PEO悬浮液从凝胶到溶胶的弛豫时间更长。