杜淼
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"""""分子基晶太材料"近期论文
M. Du,* Z.-H. Zhang, L.-F. Tang, X.-J. Zhao, S. R. Batten. “Molecular tectonics of metal-organic frameworks (MOFs) – a rational design strategy for unusual mixed-connected network topologies” Chem. Eur. J. 2007, 13, 2578–2586.\r\rX.-D. Chen, H.-F. Wu, M. Du.* “Controllable preparation of ZnII coordination polymers: unusual solvothermal formation of a LiGe-type framework directed by in situ S–S coupling of 5-(4-pyridyl)-1-H-1,2,4-triazole-3-thiol” Chem. Commun. 2008, 1296–1298.\r\rM. Du,* X.-J. Jiang, X.-J. Zhao. “Direction of unusual mixed-ligand metal-organic frameworks: a new type of 3-D polythreading involving 1-D and 2-D structural motifs and a 2-fold interpenetrating porous network” Chem. Commun. 2005, 5521–5523.\r\rM. Du,* X.-J. Zhao, J.-H. Guo, S. R. Batten. “Direction of topological isomers of silver(I) coordination polymers induced by solvent, and selective anion-exchange of a class of PtS-type host frameworks” Chem. Commun. 2005, 4836–4838.\r\rM. Du,* X.-J. Jiang, X.-J. Zhao. “Molecular tectonics of mixed-ligand metal-organic frameworks (MOFs): positional isomeric effect, metal-directed assembly and structural diversification” Inorg. Chem. 2007, 46, 3984–3995.\r\rM. Du,* Z.-H. Zhang, X.-J. Zhao, Q. Xu. “Modulated preparation and structural diversification of ZnII and CdII metal-organic frameworks with a versatile building block 5-(4-pyridyl)-1,3,4-oxadiazole-2-thiol” Inorg. Chem. 2006, 45, 5785–5792.\r\rM. Du,* X.-J. Jiang, X.-J. Zhao. “Controllable assembly of metal-directed coordination polymers under diverse conditions: a case study of the MII–H3tma/bpt mixed-ligand system” Inorg. Chem. 2006, 45, 3998–4006.\r\rM. Du,* X.-J. Zhao, Y. Wang. “Crystal engineering of a versatile building block toward the design of novel inorganic-organic coordination architectures” Dalton Trans. 2004, 2065–2072.\r\rM. Du,* Z.-H. Zhang, W. Guo, X.-J. Fu. “Multi-Component hydrogen-bonding assembly of a pharmaceutical agent pamoic acid with piperazine or 4,4’-bipyridyl: a channel hydrated salt with multiple-helical motifs vs. a bimolecular co-crystal” Cryst. Growth Des. 2009, 9, DOI: 10.1021/cg801393a.\r\rX.-D. Chen, H.-F. Wu, X.-H. Zhao, X.-J. Zhao, M. Du.* “Metal-organic coordination architectures with thiazole-spaced pyridinecarboxylates: conformational polymorphism, structural adjustments and ligand flexibility” Cryst. Growth Des. 2007, 7, 124–131.\r\rM. Du,* Z.-H. Zhang, X.-G. Wang, H.-F. Wu, Q. Wang. “Flexible building blocks N,N'-bis(picolinoyl) hydrazine for hydrogen-bonding directed cocrystallization: structural diversity, concomitant polymorphs and synthon prediction” Cryst. Growth Des. 2006, 6, 1867–1875.\r\rM. Du,* Z.-H. Zhang, X.-J. Zhao. “A search for predictable hydrogen-bonding synthons in cocrystallization of unusual organic acids with a bent dipyridine” Cryst. Growth Des. 2006, 6, 390–396.\r\rM. Du,* C.-P. Li, X.-J. Zhao. “Metal-controlled assembly of coordination polymers with the flexible building block 4-pyridylacetic acid (Hpya)” Cryst. Growth Des. 2006, 6, 335–341.\r\rM. Du,* Z.-H. Zhang, X.-J. Zhao, H. Cai. “Synthons competition/prediction in cocrystallization of flexible dicarboxylic acids with bent dipyridines” Cryst. Growth Des. 2006, 6, 114–121.\r\rM. Du,* Z.-H. Zhang, X.-J. Zhao. “Cocrystallization of trimesic acid and pyromellitic acid with bent dipyridines” Cryst. Growth Des. 2005, 5, 1247–1254.\r\rM. Du,* Z.-H. Zhang, X.-J. Zhao. “Cocrystallization of bent dipyridyl type compounds with aromatic dicarboxylic acids: effect of the geometries of building blocks on hydrogen-bonding supramolecular patterns” Cryst. Growth Des. 2005, 5, 1199–1208.\r\rM. Du,* X.-J. Zhao, S. R. Batten, J. Ribas. “From 1-D coordination polymers to 3-D hydrogen-bonding networks: crystal engineering and magnetism of CuII–dca–cyanopyridine supramolecular systems (dca = dicyanamide, N(CN)2–)” Cryst. Growth Des. 2005, 5, 901–909.\r\rX.-J. Jiang, S.-Z. Zhang, J.-H. Guo, X.-G. Wang, J.-S. Li, M. Du.* “Structural diversity and modulation of metal-organic coordination frameworks with a flexible V-shaped dicarboxyl building block” CrystEngComm 2009, 11, DOI: 10.1039/b818567k.\r\rM. Du,* X.-J. Jiang, X. Tan, Z.-H. Zhang, H. Cai. “Co-crystallization of a versatile building block 4-amino-3,5-bis(4-pyridyl)-1,2,4-triazole with R-isophthalic acids (R = –H, –NH2, –SO3H, and –COOH): polymorphism and substituent effect on structural diversity” CrystEngComm 2009, 11, 454–462.\r\rM. Du,* Z.-H. Zhang, X.-G. Wang, L.-F. Tang, X.-J. Zhao. “Structural modulation of polythreading and interpenetrating coordination networks with an elongated dipyridyl building block and various anionic co-ligands” CrystEngComm 2008, 10, 1855–1865.\r\rZ.-H. Zhang, M. Du.* “Flexible and versatile anionic modules in the direction of 1-D, 2-D, and 3-D coordination frameworks by metal-ligand synergistic interactions” CrystEngComm 2008, 10, 1350–1357.\r\rM. Du,* Z.-H. Zhang, Y.-P. You, X.-J. Zhao. “R-Isophthalate (R = –H, –NO2, and –COOH) as modular building blocks for mixed-ligand coordination polymers incorporated with a versatile connector 4-amino-3,5-bis(3-pyridyl)-1,2,4-triazole” CrystEngComm 2008, 10, 306–321 (cover article).\r\rM. Du,* C.-P. Li, X.-J. Zhao, Q. Yu. “Interplay of coordinative and supramolecular interactions in engineering unusual crystalline architectures of low-dimensional metal-pamoate complexes under co-ligand intervention” CrystEngComm 2007, 9, 1011–1028 (highlighted by Nature China).\r\rM. Du,* X.-G. Wang, Z.-H. Zhang, L.-F. Tang, X.-J. Zhao. “Solvent-directed layered Co(II) coordination polymers with unusual solid-state properties: from a nanoporous framework to the dense polythreading 3-D aggregation” CrystEngComm 2006, 8, 788–793 (inside cover article).\r\rM. Du,* C.-P. Li, X.-J. Zhao. “Hierarchical regulated assembly of new metallosupramolecular networks based on metal thiocyanate and trans-1-(2-pyridyl)-2-(4-pyridyl)ethylene (bpe) via multiple interactions” CrystEngComm 2006, 8, 552–562. 相关热点
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