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CO2-Cross-Linked Frustrated Lewis Networks as Gas-Regulated Dynamic Covalent Materials

机译:CO2交联令人沮丧的刘易斯网络作为气体调节的动态共价材料

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摘要

The design of structurally dynamic molecular networks can offer strategies for fabricating stimuli-responsive adaptive materials. Herein we first report a gas-responsive dynamic gel system based on frustrated Lewis pair (FLP) chemistry. Two trefoil-like molecules with bulky triphenylborane and triphenylphosphine groups are synthesized as complementary Lewis acid and base with trivalent sites. They can together bind CO2 gas molecules and further form a cross-linked network via the bonding interactions between FLPs and CO2. Such CO2-bridged dative linkages are shown to be dynamic covalent bonds, which endow the frustrated Lewis network with adaptable behaviors and unprecedented gas-regulated viscoelastic, mechanical, and self-healing performance. This study is an initial attempt to apply the FLP concept in materials chemistry, but we believe that this strategy will open a promising future for gas-sensitive smart materials.
机译:结构动态分子网络的设计可以提供制造刺激响应性自适应材料的策略。 在此首先报告基于令人沮丧的刘易斯对(FLP)化学的气体响应动态凝胶系统。 具有笨重的三苯基硼烷和三苯基膦基团的两种类似的样品样合成为互补的路易斯酸和碱基,具有三价位点。 它们可以一起结合CO 2气体分子并通过FLP和CO 2之间的粘合相互作用进一步形成交联网络。 这种二氧化碳桥接的DIFIT键被示出为动态的共价键,其具有适应性行为和前所未有的气调粘弹性,机械和自我愈合性能的令人沮丧的刘易斯网络。 本研究是初步尝试在材料化学中应用FLP概念,但我们认为这一战略将为气敏智能材料开辟有希望的未来。

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