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Solid-State 2H NMR Analysis for Hierarchical Water Clusters Confined to Quasi-One-Dimensional Molecular Nanoporous
Tomoya Namiki1, Akira Saito1, Fumiya Kobayashi1
1Department of Chemistry, Faculty of Science, Tokyo University of Science, Kagurazaka 1-3, Shinjuku-ku, Tokyo 162-8601, Japan.
Abstract:
Water confined to the quasi-one-dimensional hydrophilic molecular nanoporous crystal of {[CoII(H2bim)3](TMA)·20H2O}n (1) (H2bim = 2,2'-biimidazole, TMA3- = trimesate) forms dynamic water molecule clusters (WMCs) with a hierarchical three-layered hydrogen-bonding (H-bonding) structure and a time-averaged structure in the melting state due to interactions with the walls of the ∼1.6 nm nanopores. This was first revealed by measuring the solid-state 2H NMR spectra of a single crystal of {[CoIII(D2bim)3](TMA)·20D2O}n (1'), which revealed distinct hierarchical peaks of H2O H-bonding interactions. In addition, the frozen WMCs in 1 exhibit a premelting state, retaining some ice structures, just before melting through a first-order phase transition during the heating process. Measurements of the spin-lattice relaxation time (T1) in solid-state 2H NMR revealed rapid rotation motions for water molecules in these premelting WMCs, resulting in a correlation time τ closer to that of bulk liquid water.
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