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Insulated Polyacetylene Chains in an Inclusion Complex by Photopolymerization

机译:通过光聚合包涵体中的绝缘聚乙炔链

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The properties of a material often depend on the degree of order of their atomic, molecular, or crystalline domain components. This is expected to be especially true for the case of polyacetylene, whose properties are highly anisotropic. For many applications, it may be necessary to have macroscopic order but not necessarily crystalline order. Having polyacetyelene chains fully extended and aligned parallel to each other may be sufficient for these applications even without order of the chains around their long axis. We report here progress in the use of an inclusion crystal containing a photo-reactive precursor to prepare high molecular weight polyacetylene. Raman spectroscopy was performed to probe the resulting conjugated polyene chains. Ultraviolet irradiation of a 1,4-diiodo-1,3-butadiene/urea inclusion complex results in the appearance of new resonance-enhanced Raman modes at 1125 and 1509 cm~(-1). The Raman spectra of the resulting confined polyene chains are very similar to freestanding isolated trans-polyacetylene prepared by solution methods.
机译:材料的性质通常取决于原子,分子或结晶结构域组分的顺序。对于聚乙炔的情况,这预计尤其如此,其性质是高度各向异性的。对于许多应用,可能有必要具有宏观顺序,但不一定是晶体顺序。即使在它们周围的链条周围的链条围绕链条,可以为这些应用完全伸展并彼此平行地对准的多鞘环链。我们在此报告使用包含光反应性前体的包含晶体来制备高分子量聚乙炔的进展。进行拉曼光谱法以探测所得的共轭多烯链。紫外线照射1,4-二碘-1,3-丁二烯/尿素包合物导致1125和1509cm〜(-1)的新共振增强拉曼模式的外观。所得狭窄的多烯链的拉曼光谱与通过溶液方法制备的独立分离的反式聚乙炔非常相似。

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