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Synthesis, characterization, and high gas permeability of poly(diarylacetylene)s having fluorenyl groups

机译:具有芴基的聚二芳基乙炔的合成,表征和高透气性

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摘要

Diarylacetylenes having fluorenyl groups and other substituents (trimethylsilyl, t-butyl, bromine, fluorine) (1a–1) were polymerized with TaCl5–n-Bu4Sn. Monomers 1a–l produced high molecular weight polymers 2a–l (Mw 5.1 × 105–1.3 × 106) in 12–59% yields. All of the polymers were soluble in common organic solvents, and gave tough free-standing membranes by the solution casting method. The onset temperatures of weight loss of polymers 2a–l in air were over 400 °C, indicating considerably high thermal stability. All the polymer membranes showed high gas permeability; e.g., the oxygen permeability coefficient (PO2) of 2a was as large as 4800 barrers. Membrane 2d possessing two fluorine atoms at meta and para positions of the phenyl ring showed the highest oxygen permeability (PO2 = 6600 barrers) among the present polymers.
机译:具有芴基和其他取代基(三甲基甲硅烷基,叔丁基,溴,氟)(1a-1)的二芳基乙炔与TaCl5-n-Bu4Sn聚合。单体1a–l产生高分子量聚合物2a-1(Mw 5.1×105–1.3×106),产率为12–59%。所有聚合物都可溶于常见的有机溶剂,并通过溶液流延法制得坚韧的自支撑膜。聚合物2a–l在空气中开始失重的起始温度超过400°C,这表明其具有很高的热稳定性。所有的聚合物膜都显示出高的透气性。例如2a的透氧系数(PO2)高达4800 barrers。在本发明聚合物中,在苯环的间位和对位具有两个氟原子的膜2d显示出最高的氧渗透性(PO 2 = 6600barrers)。

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