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超快激光诱导水/2-丁氧基乙醇/氯化钾旋节线分解过程中的分子和形态变化。

Ultrafast laser-induced molecular and morphological changes during spinodal demixing of water/2-butoxyethanol/KCl.

作者信息

Takamizawa Atsushi, Kajimoto Shinji, Hobley Jonathan, Fukumura Hiroshi, Tran-Cong Qui

机构信息

Department of Chemistry, Graduate School of Science, Tohoku University, Sendai, 980-8578, Japan.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Aug;68(2 Pt 1):020501. doi: 10.1103/PhysRevE.68.020501. Epub 2003 Aug 28.

Abstract

We initiated morphological and molecular level changes in the spinodal decomposition (SD) of H(2)O/2-butoxyethanol/KCl with a pulsed ir laser. Transient Raman spectra gave us a molecular level view of the early stage of this process that could be linked to later morphological events. Chemical changes during SD, such as reorganization of H bonds and forced hydrophobic interactions, ended after 1 micros; however, phase domains continued to grow with self-similarity after 30 micros. The growth of the phase domains satisfied the power law L(t) approximately t(0.55) and was consistent with the late stage of SD. The time scale for the onset of late stage SD is many orders of magnitude faster than previously reported in ionic and nonionic conditions.

摘要

我们用脉冲红外激光引发了H₂O/2-丁氧基乙醇/KCl的旋节线分解(SD)过程中形态和分子水平的变化。瞬态拉曼光谱让我们得以从分子层面观察该过程的早期阶段,这一阶段与后续的形态变化相关。SD过程中的化学变化,如氢键的重新排列和被迫的疏水相互作用,在1微秒后结束;然而,相域在30微秒后继续以自相似的方式生长。相域的生长符合幂律L(t) ≈ t(0.55),与SD的后期阶段一致。后期SD开始的时间尺度比之前在离子和非离子条件下报道的要快多个数量级。

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