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A spectroscopic analysis of the role of side chains in controlling thermochromic transitions in polydiacetylenes

机译:侧链在控制聚二乙炔中热致变色中的作用的光谱分析

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摘要

A systematic study has been carried out to investigate the role of the side chains in lowering the reversible thermochromic transition temperature of polydiacetylenes. The type of interacting groups also proved to be crucial. Polymers with hydrogen-bonded side chains have consistently behaved differently as compared to polymers with less specific interactions associated with metallic ions. The most striking factor is the orderliness of the polymethylene portion of the side chains. The length of the side chains is critical in determining the transition temperature. In some cases, the packing order of the side chains is of sufficient order to crystallize. When high order exists, a reversible thermochromic transition is difficult to achieve. Conversely, if the side chains are disordered at any temperature, the transition temperatures are low and the transition is always reversible. This is the case for side chains stabilized by the presence of metallic ions. It is apparent that the presence of long-range nonspecific electrostatic interactions is important in determining reversible thermochromic transitions. These structural features are most easily observed using infrared spectroscopy and Raman scattering. Supporting evidence have been obtained using thermal analysis and X-ray diffraction.
机译:已经进行了系统的研究以研究侧链在降低聚二乙炔的可逆热致变色转变温度中的作用。互动小组的类型也被证明是至关重要的。与具有与金属离子相关的特定相互作用较少的聚合物相比,具有氢键合侧链的聚合物始终具有不同的性能。最显着的因素是侧链的多亚甲基部分的有序性。侧链的长度对于确定转变温度至关重要。在某些情况下,侧链的堆积顺序足以结晶。当存在高阶时,难以实现可逆的热致变色转变。相反,如果侧链在任何温度下都是无序的,则转变温度低,转变总是可逆的。对于通过存在金属离子而稳定的侧链而言,就是这种情况。显然,在确定可逆的热致变色转变中,长距离非特异性静电相互作用的存在很重要。使用红外光谱和拉曼散射最容易观察到这些结构特征。使用热分析和X射线衍射已获得支持证据。

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  • 来源
    《Macromolecules》 |2012年第1期|共10页
  • 作者

    Yu L.; Hsu S.L.;

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