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Lanthanide Complex [Nd(dpdo)_4(H_2O)_3][ClO_4]_3·4.5H_2O·dpdo Containing Framework Based on 4,4′-Dipyradine-Dioxide

Lanthanide Complex [Nd(dpdo)_4(H_2O)_3][ClO_4]_3·4.5H_2O·dpdo Containing Framework Based on 4,4′-Dipyradine-Dioxide
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摘要 A novel lanthanide coordination polymer formulated as [Nd(dpdo) 4(H 2O) 3] 3·4.5H 2O·dpdo 1(dpdo=4,4′-dipyrazine-dioxide) was synthesized and structurally characterized. The Nd 3+ ions are bridged by dpdo ligands in a cis-mode to form a zigzag chain along direction. Meanwhile, each Nd 3+ ion is coordinated with three terminal dpdo molecules. One of them is overlapped with the bridging one through π-π stackings, and the other two are bound to the opposite directions of the bridging ones, producing a ribbon-like motif with rectangular cavity. These adjacent ribbons are connected through inter-molecular π-π stackings to give parquet-like architecture with a large rectangular channel (1.108 nm×1.660 nm) in which the crystal lattice water molecules and ClO 4 - anions are included. Thermal analysis shows that the solvate dpdo and water molecules can be removed at lower temperature, while coordinated dpdo molecules are lost simultaneously at higher temperature. A novel lanthanide coordination polymer formulated as [Nd(dpdo) 4(H 2O) 3] 3·4.5H 2O·dpdo 1(dpdo=4,4′-dipyrazine-dioxide) was synthesized and structurally characterized. The Nd 3+ ions are bridged by dpdo ligands in a cis-mode to form a zigzag chain along direction. Meanwhile, each Nd 3+ ion is coordinated with three terminal dpdo molecules. One of them is overlapped with the bridging one through π-π stackings, and the other two are bound to the opposite directions of the bridging ones, producing a ribbon-like motif with rectangular cavity. These adjacent ribbons are connected through inter-molecular π-π stackings to give parquet-like architecture with a large rectangular channel (1.108 nm×1.660 nm) in which the crystal lattice water molecules and ClO 4 - anions are included. Thermal analysis shows that the solvate dpdo and water molecules can be removed at lower temperature, while coordinated dpdo molecules are lost simultaneously at higher temperature.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2002年第4期313-317,共5页 稀土学报(英文版)
基金 rojectsupportedbytheStateKeyProjectofFundamentalResearch (G19980 6 130 5 ) ,andtheNationalNaturalScienceFoundationofChina ( 2 0 0 2 30 0 5,2 98310 10)
关键词 rare earths π-π stacking lanthanide complex crystal engineering dipyradine-dioxide SUPRAMOLECULE rare earths π-π stacking lanthanide complex crystal engineering dipyradine-dioxide supramolecule
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