首页> 外文期刊>Macromolecules >Functional disubstituted polyacetylenes and soluble cross-linked polyenes: Effects of pendant groups or side chains on liquid crystallinity and light emission of poly(1-phenyl-1-undecyne)s
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Functional disubstituted polyacetylenes and soluble cross-linked polyenes: Effects of pendant groups or side chains on liquid crystallinity and light emission of poly(1-phenyl-1-undecyne)s

机译:功能性双取代聚乙炔和可溶性交联聚烯:侧基或侧链对聚(1-苯基-1-十一炔)的液晶性和发光的影响

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摘要

A group of new poly(1-phenyl-1-undecyne)s with different mesogenic and chromophoric pendant groups or side chains were successfully synthesized and the structural variations were found to greatly affect the mesomorphic and luminescent properties of the polymers. The 1-phenyl-1-undecyne monomers (C6H5)C equivalent to C(CH2)(9)OCOR with R=C6H4-C6H10-C5H11 (1), C6H4-OCO-C6H4-OC6H13 (2), and C6H4-C equivalent to C-C6H4-OC7H15 (3) were prepared by simple esterification and/or coupling reactions. The polymerizations of 1-3 were effected by WCl6-Ph4Sn in toluene at 60-80 degrees C, giving polymers with high molecular weights in good isolation yields. The structures and properties of the polymers were characterized and evaluated by GPC, III, NMR, TGA, DSC, POM, XRD, U-V, and PL analyses. The polymerizations of 1 and 2 yield linear poly(1-phenyl-1-alkyne)s P1 and P2, respectively, while that of 3 gives a nonlinear macromolecule with its poly(1-phenyl-1-alkyne) main chain cross-linked by the oligo(diphenylacetylene) side chains resulted from the partial polymerization of its diphenylacetylene pendants (P3x). All the polymers are completely soluble in common solvents and are thermally stable with T-d >= 390 degrees C. Polymers P1 and P2 undergo nematic and smectic transitions at similar to 100 and similar to 170 degrees C, respectively, while P3x is nonmesomorphic. Upon excitation, the poly(1-phenyl-1-alkyne) chains of P1 and P2 emit a strong blue light of 460 rim, with their fluorescence quantum efficiencies comparable to or higher than that of poly(1-phenyl-1-octyne), a highly emissive disubstituted polyacetylene. Polymer P3x emits a blue-green light of 490 nm, due to the energy transfer from its poly(l-phenyl-l-octyne) main chain to its oligo(diphenylacetylene) side chains.
机译:成功地合成了一组具有不同的介晶和发色侧基或侧链的新型聚(1-苯基-1-十一碳烯),发现结构变化极大地影响了聚合物的介晶和发光性能。相当于C(CH2)(9)OCOR的1-苯基-1-十一碳烯单体(C6H5)C,R = C6H4-C6H10-C5H11(1),C6H4-OCO-C6H4-OC6H13(2)和C6H4-C通过简单的酯化和/或偶联反应制备相当于C-C6H4-OC7H15(3)的化合物。 1-3的聚合反应是通过WCl6-Ph4Sn在60-80摄氏度的甲苯中进行的,从而获得具有高分子量的聚合物,并具有良好的分离收率。聚合物的结构和性质通过GPC,III,NMR,TGA,DSC,POM,XRD,U-V和PL分析进行表征和评估。 1和2的聚合反应分别生成线性聚(1-苯基-1-炔烃)P1和P2,而3的聚合反应则生成带有交联的聚(1-苯基-1-炔烃)主链的非线性高分子寡聚(二苯乙炔)侧链是由于其二苯乙炔侧基(P3x)的部分聚合而产生的。所有聚合物都完全溶于普通溶剂中,并且在T-d> = 390℃时具有热稳定性。聚合物P1和P2分别在接近100摄氏度和接近170摄氏度的温度下经历向列和近晶相转变,而P3x是非同晶的。激发后,P1和P2的聚(1-苯基-1-辛炔)链发出460 rim的强蓝光,其荧光量子效率与聚(1-苯基-1-辛炔)相当或更高。 ,高发射率的二取代聚乙炔。由于能量从其聚(1-苯基-1-辛炔)主链转移至其低聚(二苯基乙炔)侧链,聚合物P3x发出490 nm的蓝绿色光。

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