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微凝胶分散体中的自主振荡粘度

Autonomously oscillating viscosity in microgel dispersions.

作者信息

Suzuki Daisuke, Taniguchi Hajime, Yoshida Ryo

机构信息

International Young Researchers Empowerment Center, Shinshu University, 3-15-1 Tokida, Ueda, Nagano 386-8567, Japan.

出版信息

J Am Chem Soc. 2009 Sep 2;131(34):12058-9. doi: 10.1021/ja904677g.

Abstract

We present autonomously oscillating viscosity in microgel dispersions. The microgels were obtained by introducing the Ru catalyst for the Belousov-Zhabotinsky (BZ) reaction into a cross-linked copolymer. In this microgel system, the chemical energy of the BZ reaction is converted to rhythmic swelling/deswelling oscillation of the microgels. Moreover, self-flocculating/self-dispersing oscillation of the microgels occurs near its phase transition temperature. Through the use of these two oscillations of the microgels, a new function of colloidal dispersions has been discovered, namely, autonomously oscillating viscosity in a microgel dispersion. The viscosity in the dispersion oscillated autonomously, following the swelling/deswelling and self-flocculation/self-dispersion oscillations of the microgels. As a result, we can control the rhythm and amplitude of the oscillation using these two phenomena of the microgels.

摘要

我们展示了微凝胶分散体中的自主振荡粘度。通过将用于Belousov-Zhabotinsky(BZ)反应的Ru催化剂引入交联共聚物中来获得微凝胶。在这个微凝胶系统中,BZ反应的化学能被转化为微凝胶有节奏的溶胀/消溶胀振荡。此外,微凝胶在其相变温度附近会发生自絮凝/自分散振荡。通过利用微凝胶的这两种振荡,发现了胶体分散体的一种新功能,即微凝胶分散体中的自主振荡粘度。分散体中的粘度会随着微凝胶的溶胀/消溶胀以及自絮凝/自分散振荡而自主振荡。结果,我们可以利用微凝胶的这两种现象来控制振荡的节奏和幅度。

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