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Coordinative Nanoporous Polymers Synthesized with Hydrogen-Bonded Columnar Liquid Crystals

机译:氢键合柱状液晶合成的配位纳米多孔聚合物

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In this paper, we report the development of nanoporous polymer which demonstrates the coordination property toward zinc porphyrin. A hydrogen-bonded columnar liquid crystalline precursor composed of a triphenylene template and three equivalent of the surrounding dendric amphiphile bearing a pyridyl head group and a polymerizable aliphatic chain, was covalently fixed by photopolymerization, and then the subsequent selective removal of the template successively resulted in a nanoporous polymer in which the pore wall is modified with pyridyl groups. The nanoporous polymer reflected the conformation of template, and displayed considerable coordination ability of the pyridyl groups towards zinc porphyrin. The coordinative nanoporous polymer is promising as a nano-scaled scaffold for the organization of dyes into functional supramolecular architectures.
机译:在本文中,我们报道了纳米多孔聚合物的发展,该聚合物证明了对卟啉锌的配位性能。氢键合的柱状液晶前体由三亚苯基模板和三当量的周围的带有吡啶基头基和可聚合的脂肪族链的树枝状两亲物组成,通过光聚合作用共价固定,然后依次选择性除去模板,得到一种纳米孔聚合物,其中的孔壁被吡啶基改性。纳米多孔聚合物反映了模板的构象,并显示了吡啶基对卟啉锌的相当大的配位能力。配位纳米多孔聚合物有望作为一种纳米尺度的支架,用于将染料组织成功能性超分子结构。

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