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通过准弹性和非弹性中子散射研究光敏侧链聚合物液晶中的光诱导动力学。

Photoinduced dynamics in a photosensitive side chain polymeric liquid crystal by quasielastic and inelastic neutron scattering.

作者信息

Cristofolini L, Fontana M P, Laus M, Frick B

机构信息

Dipartimento di Fisica and INFM, Università di Parma, Parco Area delle Scienze 7/A, I-43100 Parma, Italy.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Dec;64(6 Pt 1):061803. doi: 10.1103/PhysRevE.64.061803. Epub 2001 Nov 27.

Abstract

We report the first study by inelastic (INS) and quasielastic neutron scattering of photoinduced changes in the reorientational and vibrational dynamics of a liquid crystalline side chain polymer. We use the cis-trans photoisomerization transition to take the system out of equilibrium and determine the quasielastic (QE) and inelastic scattering laws on two distinct time windows, corresponding to the time-of-flight (IN6) and backscattering (IN16) spectrometers at Institut Laue Langevin (ILL) (Grenoble). Our investigation was focused on the dynamics of the coupling between the mesogenic side chains and the polymeric main chain, which is connected to the extensive optical writing and memory effects that have been demonstrated in this complex material. We report data on the QE broadening and Debye-Waller factors, as a function of temperature across the glass transition (T(g)=293 K). We also studied the dynamical coupling of side and main chains. We report photoinduced changes on the static structure factor, on the purely elastic scattering fraction, on the low frequency vibrational dynamics (around the boson peak region). In particular, we find that on the space-time scales accessible to the INS techniques there is a time structure in the coupling, and that over longer times and distances the two dynamics are decoupled.

摘要

我们报告了第一项关于液晶侧链聚合物光致重取向和振动动力学变化的非弹性(INS)和准弹性中子散射研究。我们利用顺反光异构化转变使系统偏离平衡态,并在两个不同的时间窗口确定准弹性(QE)和非弹性散射规律,这两个窗口分别对应于法国劳厄 - 朗之万研究所(ILL,格勒诺布尔)的飞行时间(IN6)和背散射(IN16)光谱仪。我们的研究重点是介晶侧链与聚合物主链之间耦合的动力学,这与这种复杂材料中已证明的广泛光写入和记忆效应相关。我们报告了作为玻璃化转变温度(T(g)=293 K)范围内温度函数的QE展宽和德拜 - 瓦勒因子的数据。我们还研究了侧链和主链的动力学耦合。我们报告了光致静态结构因子、纯弹性散射分数以及低频振动动力学(玻色子峰区域附近)的变化。特别是,我们发现在INS技术可及的时空尺度上,耦合存在时间结构,并且在更长的时间和距离上,两种动力学解耦。

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