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首页> 外文期刊>Macromolecules >Rational Design of Intrinsically Ultramicroporous Polyimides Containing Bridgehead-Substituted Triptycene for Highly Selective and Permeable Gas Separation Membranes
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Rational Design of Intrinsically Ultramicroporous Polyimides Containing Bridgehead-Substituted Triptycene for Highly Selective and Permeable Gas Separation Membranes

机译:含桥头取代三萜的本征超微孔聚酰亚胺的合理设计,用于高选择性和渗透性气体分离膜

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摘要

Highly ultramicroporous, solution-processable polyimides bearing 9,10-bridgehead-substituted triptycene demonstrated the highest BET surface area reported for polyimides (840 m~2 g~(-1)) and several new highs in gas selectivity and permeability for hydrogen (1630-3980 barrers, H_2/CH_4 ~ 38) and air (230-630 barrers, O_2/N_2 = 5.5-5.9) separations. Two new dianhydrides bearing 9,10-diethyl- and 9,10-dipropyltriptycenes indicate that the ultramicroporosity is optimized for fast polymeric sieving with the use of short, bulky isopropyl bridgeheads and methyl-substituted diamines(TrMPD, TMPD, and TMBZ) that increase intrachain rigidity. Mechanically, the triptycene-based analogue of a spirobisindanebased polyimide exhibited 50% increases in both tensile strength at break (94 MPa) and elastic modulus (2460 MPa) with corresponding 90% lower elongations at break (6%) likely due to the ability of highly entangled spiro-based chains to unwind. To guide future polyimide design, structure/property relationships are suggested between the geometry of the contortion center, the diamine and bridgehead substituent, and the mechanical, microstructural, and gas transport properties.
机译:带有9,10-桥头取代的三并烯的高度超微孔,可溶液加工的聚酰亚胺表现出所报道的聚酰亚胺BET表面积最高(840 m〜2 g〜(-1)),并且对氢气的气体选择性和渗透率也创下新高(1630) -3980 barrers,H_2 / CH_4〜38)和空气(230-630 barrers,O_2 / N_2 = 5.5-5.9)分离。两种新的带有9,10-二乙基和9,10-二丙基三萜烯的二酐表明,超微孔性已通过使用短而笨重的异丙基桥头和甲基取代的二胺(TrMPD,TMPD和TMBZ)进行了优化,可用于快速聚合物筛分链内刚性。在机械上,基于螺并双茚满的聚酰亚胺的基于三萜烯的类似物表现出断裂拉伸强度(94 MPa)和弹性模量(2460 MPa)均增加50%,而断裂伸长率(6%)则相应降低了90%。高度纠缠的螺旋式链条可以放松。为了指导未来的聚酰亚胺设计,建议在扭曲中心的几何形状,二胺和桥头取代基以及机械,微观结构和气体传输性能之间建立结构/性质关系。

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