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Liquid crystalline anisotropic gels prepared from optical alignment: Polymer network formed in the isotropic phase

机译:通过光学对准制备的液晶各向异性凝胶:在各向同性相中形成的聚合物网络

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摘要

Anisotropic gels were prepared through the induction of a long-range liquid crystal (LC) orientation by the action of an anisotropic polymer network formed in the isotropic phase. The method uses a mixture composed of a nonreactive nematic Liquid crystal and a reactive diacrylate monomer bearing azobenzene groups. When thermal polymerization is carried out in the isotropic phase while the mixture is exposed to linearly polarized light, an anisotropic polymer network can be obtained as a result of the optical alignment of either the azobenzene monomer or the azobenzene moieties on the network. By holding the irradiation, the anisotropy of the network is preserved in the isotropic phase, and upon cooling, the network is able to induce a long-range LC orientation in the nematic phase. Subsequent heating of the sample into the isotropic phase, with irradiation turned off, can no longer randomize the azobenzene network, which leads to the LC orientation recovery once the sample is cooled to the nematic phase. The orientation recovery is complete or partial depending on the concentration of azobenzene monomer, the nematic LC used, and the polymerization temperature. [References: 12]
机译:通过在各向同性相中形成的各向异性聚合物网络的作用,通过诱导长程液晶(LC)取向来制备各向异性凝胶。该方法使用由非反应性向列型液晶和带有偶氮苯基的反应性二丙烯酸酯单体组成的混合物。当在各向同性相中进行热聚合,同时混合物暴露于线性偏振光下时,由于网络上偶氮苯单体或偶氮苯部分的光学取向,可以获得各向异性的聚合物网络。通过保持照射,在各向同性相中保持了网络的各向异性,并且在冷却时,网络能够在向列相中诱导长距离LC取向。随后在关闭辐照的情况下将样品加热到各向同性相,不再能使偶氮苯网络随机化,一旦将样品冷却到向列相,就可以恢复LC取向。取决于偶氮苯单体的浓度,所使用的向列LC和聚合温度,取向恢复是完全还是部分。 [参考:12]

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