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    • 1. 发明申请
    • POLYMER COMPLEX HAVING CHANNELS AND METHOD FOR CHEMICALLY MODIFYING INNER SURFACES OF CHANNELS OF POLYMER COMPLEX
    • US20100324249A1
    • 2010-12-23
    • US12449925
    • 2008-03-07
    • Makoto FujitaMasaki KawanoTakehide KawamichiKiyoshi NakanishiTakahiro KojimaTomoki Kodama
    • Makoto FujitaMasaki KawanoTakehide KawamichiKiyoshi NakanishiTakahiro KojimaTomoki Kodama
    • C08G79/00
    • C07D401/14C08G83/008C08K5/0091C08K5/34926
    • The present invention is to provide a method for chemically modifying the inner surfaces of channels capable of further regulating characteristics of the internal environment of channels, by forming a polymer complex having a specific channel group B, the channel environmental characteristics of which are regulated by a specific substituent A, followed by utilizing the channels of the channel group B as a reaction field to convert the substituent A to a different substituent, and also to provide a polymer complex having highly specific channel environmental characteristics obtained by the chemical modification method. A method for chemically modifying inner surfaces of channels of at least one kind of channel group in a polymer complex provided with two or more kinds of channel groups each composed of channels identical with one another and having inherent affinity for a guest molecule, wherein the polymer complex comprises an aromatic compound; has two or more coordinating sites as a ligand, a metal ion as a central metal, and an uncoordinating aromatic compound, has a three-dimensional lattice-like structure containing a stack structure comprising the uncoordinating aromatic compound intercalated between aromatic compound ligands in a three-dimensional coordination network formed by coordinating the aromatic compound ligands to the central metal ion, and is provided with two or more kinds of the channel groups in the three-dimensional coordination network, and the uncoordinating aromatic compound has a specific substituent A at a specific position on the aromatic ring thereof, and is arranged regularly such that the substituent A is directed to the inside of a specific channel group B out of the two or more kinds of channel groups, the method comprising the steps of: including the guest molecule in the channel of the channel group B in which the substituent A is arranged; and reacting the guest molecule with the substituent A in the channel to convert the substituent A to a substituent A′, and to arrange the substituent A′ regularly directing to the inside of the channel of the channel group B or any channel of other channel groups.