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Joseph T. Hupp PERSONAL: Birth date: March 23, 1957; Cuba, New York. Address: Northwestern University Department of Chemistry and Materials Research Center Evanston, IL 60208 (847)491-3504 or (847)491-5371 E-mail: j-hupp@northwestern.edu EDUCATION: B.S., Chemistry, Houghton College, Houghton, New York, 1979. Honors thesis in electrochemistry. Ph.D., Chemistry, Michigan State University, November, 1983. EXPERIENCE: Morrison Professor of Chemistry, 2000-Present; Dow Professor of Chemistry, 1998-2000; Professor, 1993-present; Associate Professor, 1990-93; Assistant Professor, 1986-90, Department of Chemistry, Northwestern University.Research Associate, University of North Carolina, March 1984 to June 1986. Research Associate, Purdue University, November 1983 to March 1984 (with Dr. M. J. Weaver). Research and Teaching Assistant, Michigan State University, 1979-82; Purdue University, 1983. Undergraduate Research Participant at Argonne National Laboratory, Argonne, Illinois, summer 1979. National Science Foundation Undergraduate Research Participant, University of Vermont, summer 1978. HONORS: Morrison Professorship, 2000-Present. Dow Professorship, 1998-2000. National Fresenius Award of Phi Lambda Upsilon, 1993. Henry and Camille Dreyfus Teacher-Scholar Award, 1991-96. Alfred P. Sloan Fellow, 1990-92. Atlantic Richfield Foundation Junior Faculty Fellow, 1986-87. Presidential Young Investigator, 1986-91. Sohio Fellowship, Michigan State University, summer 1982. RESEARCH INTERESTS: Experimental and theoretical aspects of electron transfer reactions, new mesoporous molecular materials, photochemical energy conversion, optical electron transfer, reactivity of molecular excited states, molecular recognition in synthetic systems, molecular electronics, chemical sensors, higher order electron transfer processes, chemically modified electrodes, cluster redox chemistry, solution and surface electrochemical thermodynamics and kinetics, synthetic coordination chemistry and metallopolymer chemistry. PUBLICATIONS: 278. “Solvent-induced configuration mixing and triplet excited state inversion: insights from transient absorption and transient DC photoconductivity measurements,” X. Wang, A. A. Rachford, S. Goeb, A. E. Ballouli, C. She, J. T. Hupp, F. N. Castellano, Phys. Chem. Chem. Phys., 2009, submitted. 277. "Synthesis, Properties and Gas Separation Studies of a Robust Diimide-based Microporous Organic Polymer," O. K. Farha, A. Spokoyny, B. Hauser, Y. S. Bae, S. Brown, R. Q. Snurr, C. A. Mirkin, J. T. Hupp, J. Am. Chem. Soc., 2009, submitted. 276. "Distance Dependance of Plasmon Enhancement in Dye-Sensitized Solar Cells," S. Standridge, G. C. Schatz, J. T. Hupp, J. Am. Chem. Soc., 2009, accepted. 275. “Post-Synthesis Alkoxide Formation Within Metal-Organic Framework Materials: A Strategy for Incorporating Highly Coordinatively Unsaturated Metal Ions,” K. L. Mulfort, O. K. Farha, C. Stern, A. A. Sarjeaut, J. T. Hupp, J. Am. Chem. Soc., 2009, 131, 3866–3868. 274. “Metal Organic Framework Materials as Catalysts,” J. Y. Lee, O. K. Farha, J. Roberts, K. A. Scheidt, S. T. Nguyen, J. T. Hupp, Chem. Soc. Rev., 2009, 38, 1450-1459. 273. “A catalytically active, permanently microporous MOF with metalloporphyrin struts,” A. M. Shultz, O. K. Farha, J. T. Hupp, S. T. Nguyen, J. Am. Chem. Soc., 2009, 131, 4204–4205. 272. “A Zn-based, pillared paddlewheel MOF containing free carboxylic acids via covalent post-synthesis elaboration,” T. Gadzikwa, K. L. Mulfort, O. K. Farha, S. T. Nguyne, J. T. Hupp, Chem. Comm., 2008, submitted. 271. “Strategies for Characterization of Large-pore Metal-organic Frameworks by Combined Experimental and Computational Methods,” Y.-S. Bae, D. Dubbeldam, A. Nelson, K. S. Walton, J. T. Hupp, R. Q. Snurr, Chem Mater, 2008, submitted. 270. "Supercritical Processing as a Route to High Internal Surface Areas and Permanent Microporosity in Metal-Organic Framework Materials," A. P. Nelson, O. K. Farha, K. L. Mulfort, J. T. Hupp, J. Am. Chem. Soc., 2009, 131, 458-460. Highlighted in Chemical & Engineering News, Chemistry World, and on BBC Radio. 269. “Electron Transport in Dye-Sensitized Solar Cells Based on ZnO Nanotubes: Evidence for Highly Efficient Charge Collection and Exceptionally Rapid Dynamics,” A. B. F. Martinson, M. S. Góes, F. Fabregat-Santiago, J. Bisquert, M. J. Pellin, J. T. Hupp, J. Phys. Chem. A, 2009, 113, 4015–4021. (George C. Schatz 60th birthday issue). 268. “Enhancement of CO2 / N2 Selectivity in a Metal- Organic Framework by Cavity Modification,” Y. S. Bae, O. K. Farha, J. T. Hupp, R. Q. Snurr, J. Mat. Chem., 2009, 19, 2131–2134. 267. "Electron Transfer in Platinum (II) Diimine Centered Triads: Mechanistic Insights from Photoinduced Transient Displacement Current Measurements," J. E. McGarrah, J. T. Hupp, S. Smirnov, J. Phys. Chem. C, 2009, accepted. 266. “Outer-sphere Redox Couples as Shuttles in Dye-Sensitized Solar Cells. Performance Enhancement Based on Photoelectrode Modification via Atomic Layer Deposition” T. W. Hamann, O. K. Farha, J. T. Hupp, J. Phys. Chem. C, 2008,112, 19756-19764. 265. “Gas Sorption Properties of Cobalt(II) Carborane-Based Coordination Polymers As A Function of Morphology” O. K. Farha, A. M. Spokoyny, K. L. Mulfort, S. Galli, J. T. Hupp, C. A. Mirkin, Small , 2009, accepted. 264. “An Example of Node-based Post-Assembly Modification of a Hydrogen-Sorbing, Metal-Organic Framework Material” O. K. Farha, K. L. Mulfort, J. T. Hupp, Inorg. Chem., 2008, 47, 10223-10225. 263. “Advancing Beyond Current Generation Dye-Sensitized Solar Cells,” T. W. Hamann, R. A. Jensen, A. B. F. Martinson, H. V. Ryswyk, J. T. Hupp, Energy Environ. Sci., 2008, 1, 66-78. 262. “Radial Electron Collection in Dye-Sensitized Solar Cells,” A. B. F. Martinson, J. W. Elam, J. Liu, J. T. Hupp, M. J. Pellin, T. J. Marks, Nano Lett.,2008, 8, 2862-2866. 261. “Cavity-Tailored, Self-Sorting Supramolecular Catalytic Boxes for Selective Oxidation,” S. J. Lee, S.-H. Cho, K. L. Mulfort, D. M. Tiede, J. T. Hupp, S. T. Nguyen, J. Am. Chem. Soc., 2008, 130, 16828-16829. 260. “ Toward Plasmonic Solar Cells: Protection of Silver Nanoparticles via Atomic Layer Deposition of TiO2,” S. Standridge, G. C. Schatz, J. T. Hupp, Langmuir, 2009, 25, 2596–2600. 259. “Separating Solids: Purification of Metal-Organic Framework Materials,” O. K. Farha, K. L. Mulfort, A. M. Thorsness, J. T. Hupp, J. Am. Chem. Soc., 2008, 130, 8598-8599. 258. “Alkali Metal Cation Effects on Hydrogen Uptake and Binding in Metal-Organic Frameworks,” K. L. Mulfort, J. T. Hupp, Inorg. Chem., 2008, 47, 7936-7938. Journal Cover 257. “Carborane-Based Metal-Organic Frameworks as Highly Selective Sorbents for CO 2 Over Methane,” Y.-S. Bae, O. K. Farha, A. M. Spokoyny, C. A. Mirkin, J. T. Hupp, R. Q. Snurr, Chem. Comm., 2008, 4135 - 4137. Highlighted by "Nature Chemistry" 256. “Covalent Surface Modification of a Metal-Organic Framework: Selective Surface Engineering via Cu I-Catalyzed Huisgen Cycloaddition,” T. Gadzikwa, G. Lu, C. L. Stern, S. R. Wilson, J. T. Hupp, S. T. Nguyen, Chem. Comm., 2008, 43, 5493-5495. 255. "Framework reduction and alkali-metal doping of a triply catenating metal-organic framework enhances and then diminishes H 2 uptake," K. L. Mulfort, T. M. Wilson, M. R. Wasielewski, J. T. Hupp, Langmuir, 2009, 25, 503-508. 254. “Effect of Secondary Substituent on the Physical Properties, Crystal Structures, and Nanoparticle Morphologies of (porphyrin)Sn(OH)2: Diversity Enabled via Synthetic Manipulations” S. J. Lee, R. A. Jensen, C. D. Malliakas, M. G. Kanatzidis, J. T. Hupp, S. T. Nguyen, J. Mater. Chem., 2008, 18, 3640-3642. 253. “Atomic Layer Deposition of TiO2 on Aerogel Templates: New Photoanodes for Dye-Sensitized Solar Cells” T. W. Hamann, A. B. F. Martinson, J. W. Elam, M. J. Pellin, J. T. Hupp, J. Phys. Chem. C, 2008, 112, 10303-10307. 252. “Growth of Narrowly Dispersed Porphyrin Nanowires and Their Hierarchical Assembly into Macroscopic Columns,” S. J. Lee, J. T. Hupp, S. T. Nguyen, J. Am. Chem. Soc., 2008, 130, 9632-9633. 251. “Separation of CO2 from CH4 using Mixed-Ligand Metal-Organic Frameworks,” Y. –S. Bae, K. L. Mulfort, H. Frost, P. Ryan, S. Punnathanam, L. J. Broadbelt, J. T. Hupp, R. Q. Snurr, Langmuir, 2008, 24, 8592-8598. 250. “Hollow Porphyrin Prisms: Modular Formation of Permanent, Torsionally Rigid, Nanostructures via Templated Olefin Metathesis,” K.-T. Youm, S. T. Nguyen, J. T. Hupp, Chem. Comm., 2008, 29, 3375-3377. 249. “Fast Energy Transfer within a Self-Assembled Cyclic Porphyrin Tetramer,” R. A. Jensen, R. F. Kelley, S. J. Lee, M. R. Wasielewski, J. T. Hupp, D. M. Tiede, Chem. Comm., 2008 , 1886-1888. 248. “Aerogel Templated ZnO Dye-Sensitized Solar Cells,” T. W. Hamann, A. B. F. Martinson, J. W. Elam, M. J. Pellin, J. T. Hupp, Adv. Mater., 2008 , 20, 1560-1564. 247. “New Architectures for Dye-Sensitized Solar Cells,” A. B. F. Martinson, T. W. Hamann, M. J. Pellin, J. T. Hupp, Chem. Eur. J., 2008, 14, 4458-4467. 246. “Mechanism for Zirconium Oxide Atomic Layer Deposition using Bis(methylcyclopentadienyl) methoxymethyl Zirconium,” J. W. Elam, S. D. Elliott, M. C. Faia, A. Zydor, J. T. Hupp, M. J. Pellin, Appl. Phys. Lett. , 2007, 91, 253123. 245. “Atomic Layer Deposition of Indium-Tin Oxide Thin Films Using Non-Halogenated Precursors,” J. W. Elam, D. A. Baker, A. B. F. Martinson, M. J. Pellin, J. T. Hupp, J. Phys. Chem. C, 2008, 112, 1938-1945. 244. “Coordinative Self-Assembly and Solution-phase X-ray Structural Characterization of Cavity-tailored Porphyrin Boxes,” S. J. Lee, K. L. Mulfort, X. Zuo, A. J. Goshe, P. J. Wesson, S. T. Nguyen, J. T. Hupp, D. M. Tiede, J. Am. Chem. Soc., 2008 , 130, 836-838. 243. “Atomic Layer Deposition of Tin Oxide Films Using Tetrakis(dimethylamino) Tin,” J. W. Elam, D. A. Baker, A. J. Hryn, A. B. F. Martinson, M. J. Pellin, J. T. Hupp, JVST A, 2008, 26, 244-252. 242. “Ligand-Elaboration as a Strategy for Engendering Structural Diversity in Porous Metal-Organic Framework Compounds,” T. Gadzikwa, B-S. Zeng, J.T. Hupp, S.T. Nguyen, Chem. Commun., 2008, 31, 3672 - 3674. 241. “Synthesis and Hydrogen Sorption Properties of Carborane based Metal-Organic Framework Materials” O. K. Farha, A. M. Spokoyny, K. L. Mulfort, M. F. Hawthorne, C. A. Mirkin, and J. T. Hupp, J. Am. Chem. Soc., 2007, 129, 12680-12681 . 240. “Intramolecular Energy Transfer within Butadiyne-Linked Chlorophyll and Porphyrin Dimer-Faced, Self-assembled Prisms” R. F. Kelley, S. J. Lee, T. M. Wilson, Y. Nakamura, D. M. Tiede, A. Osuka, J. T. Hupp, and M. R. Wasielewski, J. Am. Chem. Soc., 2008, 130, 4277-4284. [ Last edited by 纳米镍粉 on 2009-6-5 at 19:02 ] |
11楼2009-06-05 00:01:24
纳米镍粉
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2楼2009-05-27 00:23:37
纳米镍粉
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我是大好人
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毛卫民
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北京科技大学材料系 教授、博士生导师 教育简历: 1977年,东北工学院,金属材料系,毕业 1981年,北京钢铁学院,材料科学与工程系,硕士毕业 1988年,德国亚琛工业大学, 金属学研究所,工学博士毕业 工作简历: 1981 - 今, 北京科技大学,教师 主要研究方向: 1)电解电容器铝箔的材料学原理及新产品开发; 2)电工钢材料学原理及新型电工钢品种的开发研究; 3)高强度钢材各向异性的开发与利用; 4)多晶体非金属材料晶体学各向异性的形成与利用; 5)高效轻质复合电磁屏蔽材料的开发研究; 近期发表的论文: 1. Mao W, Ren H, Yu Y, Precipition behavior of an Fe-1.03wt.% Cu alloy, Z. Metallkd., 2004, 95(1): 57-59. 2.Mao W, Yu Y, Effect of elastic reaction stress on plastic behaviors of grains in polycrystalline aggregate during tensile deformation, Materials Science & Engineering, 2004,367:277-281. 3.毛卫民, 任慧平, 余永宁, 结构钢中含铜析出相的时效强化作用, 材料热处理, 2004;25(2):1-4. 4. 毛卫民, 陈垒, 萨丽曼, 余永宁, 李云峰, 晶界对低压电解电容器铝箔腐蚀结构的影响, 中国有色金属学报, 2004;14(1):1-5. 5.毛卫民, 杨宏, 杨平, 冯惠平, 退火对高压电解电容器铝箔微量元素和腐蚀性能的影响, 金属热处理, 2004; 29(9): 3-6. 6.毛卫民, 高比电容低压阳极铝箔的表面微观组织, 世界科技研究与发展, 2004; 26(3): 16-21. 7. 毛卫民, 何业东, 国产电解电容器用极铝箔的发展与展望, 世界有色金属, 2004; (8): 23-27. 8.毛卫民, 陈冷, 杨平, 冯惠平, 退火铝板织构X 射线快速检测原理, 科学通报, 2004, 49 (20), 2128-2129. 9.毛卫民, 蒋恒, 杨平, 冯惠平, 余永宁, 微观结构和微量元素对铝箔腐蚀结构的影响, 中国有色金属学报, Vol. 14(10) 2004, 1627-1631. 10.Mao W, Jiang H, Yang P, Feng H, Yu Y, Distribution of microelements and their influence on the corrosion behavior of Aluminum foil, J. Material Science and Technology, vol. 21 (1), 2005, 43-46. 11.毛卫民, 方鲲, 吴其晔, 冯惠平, 导电聚苯胺/羰基铁粉复合吸波材料, 复合材料学报, 2005, Vol. 22(1), 11-14 12.Mao W, Chen L, Yang P, Yu Y, Reaction Stresses among the Grains during Tensile Deformation of Polycrystalline Metals, Solid State Phenomena, Vol. 105 (2005) pp. 95-100. 13.Mao W, Yu Y, Reaction Stress Model and Relaxation of Reaction Stress among the Grains during Tensile Deformation of FCC metals, Materials Science Forum, 2005, Vol. 495-497, p. 995-1000. 14. 毛卫民, 朱宏喜, 陈冷, 冯惠平, 吕反修, CVD自支撑金刚石薄膜的宏观织构与微观孪晶, 无机材料学报, 2006, 21(1), 239-244. 15.毛卫民, 马全仓, 冯惠平, 陈昌云, 李吉彬, 冲压铝板塑性应变比的在线检测技术, 中国有色金属学报, 2006, 16(7), 1149-1154. 16.毛卫民, 冲压钢板塑性应变比r值的在线检测技术, 钢铁, 2006, 41(11), 37-41. 17.毛卫民, 杨平, 经济型取向电工钢的定位与发展, 世界科技研究与发展, 2006, 28(6): 23-26. 18.Mao W, Li D, Yu Y, Influence of surface oxide films on elastic behaviors of straight screw dislocations parallel to the surface of pure aluminum, J. Material Science and Technology, vol. 23(3), 2007, 392-394. [ Last edited by 纳米镍粉 on 2009-5-27 at 06:36 ] |

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姓名: 陈小明 单位:中山大学化学与化学工程学院 领域:晶体工程 业绩(论文,专著等等) 1) Optimized acetylene/carbon dioxide sorption in a dynamic porous crystal Zhang, J.-P.; Chen, X.-M., J. Am. Chem. Soc. 2008, ja-2008-089872. 2) Two metal-carboxylate frameworks featuring uncommon 2D + 3D and 3-fold-interpenetration: (3,5)-connected isomeric hms and gra nets Hou, L.; Zhang, J.-P.; Chen, X.-M., Cryst. Growth Des. 2009, cg-2008-01308u. 3) Isomeric zinc(II) triazolate frameworks with 3-connected networks: syntheses, structures, and sorption properties Zhu, A.-X.; Lin, J.-B.; Zhang, J.-P.; Chen, X.-M., Inorg. Chem. 2009, ic-2008-02446m. 4) A spin-frustrated complex, [FeIIFeIII(trans-1,4-cyclohexanedicarboxylate)1.5]∞: Interplay between single-chain magnet behavior and magnetic ordering Zheng, Y.-Z.; Xue, W.; Zhang, W.-X.; Tong, M.-L.; Chen, X.-M., Grandjean, F.; Long, G. J.; Ng, S. W.; Panissod, P.; Drillon M., Inorg. Chem. 2009, 48, 2028–2042. 5) Syntheses, structures and magnetic properties of a family of metal carboxylate polymers via in-situ metal/ligand reactions of benzene-1,2,3-tricarboxylic acid Zheng, Y.-Z.; Zhang, Y.-B.; Tong, M.-L.; Xue, W.; Chen, X.-M., Dalton Trans. 2009, 1396-1406. 6) Syntheses, structures and sorption properties of two framework-isomeric porous copper-coordination polymers Xue, D.-X.; Lin, J.-B.; Zhang, J.-P.; Chen, X.-M., CrystEngComm 2009, 11, 183-188.. (2008) 7) Probing single-chain magnets in a family of linear chain compounds constructed by magnetically anisotropic metal-ions and cyclohexane-1,2-dicarboxylate analogues Zheng, Y.-Z.; Xue, W.; Tong, M.-L.; Chen, X.-M., Zheng, S.-L. Inorg. Chem. 2008, 47, 11202–11211. 8) Microwave-assisted solvothermal synthesis of a dynamic nanoporous metal-carboxylate framework Wang, X.-F.; Zhang, Y.-B.; Huang, H.; Zhang, J.-P.; Chen, X.-M.; Cryst. Growth Des. 2008, 8, 4559-4563. 9) Pillaring Zn-triazolate layers with flexible aliphatic dicarboxylates into three-dimensional metal-organic frameworks Lin, Y.-Y.; Zhang, Y.-B.; Zhang, J.-P.; Chen, X.-M.; Cryst. Growth Des. 2008, 8, 3673–3679. 10) (Hot Paper) Assembly of 3D geometrically frustrated magnets with tranistion metal ion and 1,2,3-triazole-4,5-dicarboxylate as triangular nodes Zhang, W.-X.; Xue, W.; Lin, J.-B.; Zheng, Y.-Z.; Chen, X.-M., CrystEngComm 2008, 10, 1770-1776. 11) Two highly-connected, chiral, porous coordination polymers featuring novel heptanuclear metal carboxylate clusters Hou, L.; Zhang, J.-P.; Chen, X.-M., Ng, S.W. Chem. Commun. 2008, 4019–4021. 12) Weak ferromagnetism and dynamic magnetic behaviors of two 2D compounds with hydroxy/carboxylate-bridged Co(II) chains Cheng, X.-N.; Xue, W.; Zhang, W.-X.; Chen, X.-M., Chem. Mater. 2008, 20, 5345–5350. 13) Pentanuclear and heptanuclear metal helicates by self-assembly of d10 metal ions and a rigid aromatic bis-bidentate chelator Zhu, A.-X.; Zhang, J.-P.; Lin, Y.-Y.; Chen, X.-M., Inorg. Chem. 2008, 47, 7389-7395.. 14) Two microporous metal-organic frameworks with different topologies constructed from linear trinuclear M3(COO)n secondary building units Wang, X.-F.; Zhang, Y.-B.; Cheng, X.-N.; Chen, X.-M., CrystEngComm 2008, 10, 753–758. 15) A two-dimensional iron(II) carboxylate linear chain polymer that exhibits a metamagnetic spin-canted antiferromagnetic to single-chain magnetic transition Zheng, Y.-Z.; Xue, W.; Tong, M.-L.; Zhang, W.-X.; Chen, X.-M.; Grandjean, F.; Long, G.J., Inorg. Chem. 2008, 47, 4077-4087. 16) Exceptional framework flexibility and sorption behavior of a multifunctional porous cuprous triazolate framework Zhang, J.-P.; Chen, X.-M., J. Am. Chem. Soc. 2008, 130, 6010–6017. 17) Néel temperature enhanced by increasing the in-plane magnetic correlation in layered inorganic-organic hybrid materials Zheng, Y.-Z.; Xue, W.; Zheng, S.-L.; Tong, M.-L.; Chen, X.-M., Adv. Mater. 2008, 20, 1534–1538. 18) Single-crystal-to-single-crystal transformation involving release of bridging water molecules and transform of chain helicity in a chiral three-dimensional metal-organic framework Xue, D.-X.; Zhang, W.-X.; Chen, X.-M.; Wang, H.-Z., Chem. Commun. 2008, 1551-1553. 19) Porous metal-organic framework based on μ4-oxo tetrazinc clusters: sorption and guest-dependent luminescent properties Hou, L.; Lin, Y.-Y.; Chen, X.-M., Inorg. Chem. 2008, 47, 1346-1351. (2007) 20) Single-crystal-to-single-crystal transformation from ferromagnetic discrete molecules to a spin-canting antiferromagnetic layer Cheng, X.-N.; Zhang, W.-X.; Chen, X.-M., J. Am. Chem. Soc. 2007, 129, 15738-15739. 21) Rational construction and hydrogen storage behavior of a dynamic microporous metal-organic framework with BCT zeolite topology Hu, S.; Zhang, J.-P.; Tong, M.-L.; Chen, X.-M.; Kitagawa, S. Cryst. Growth Des. 2007, 7, 2286-2289. 22) A “star” antiferromagnet: A polymeric iron(III) acetate exhibiting the coexistence of spin-frustration and long-range magnetic order Zheng, Y.-Z.; Tong, M.-L.; Xue, W.; Zhang, W.-X.; Chen, X.-M.; Grandjean, F.; Long, G. J., Angew. Chem. Int. Ed. 2007, 46, 6076-6080. (Highlighted in Nature China) 23) From pseudo to true C3-symmetry: Magnetic anisotropy enhanced by site-specific ligand substitution in two Mn15-carboxylate clusters Zheng, Y.-Z.; Zhang, W.-X.; Xue, W.; Tong, M.-L.; Chen, X.-M., Inorg. Chem. 2007, 46, 6437-6443. 24) A tetracarboxylate–bridged dicopper(II) paddle-wheel-based 2-D porous coordination polymer with gas sorption properties Xue, D.-X; Lin, Y.-Y.; Cheng, X.-N.; Chen, X.-M., Cryst. Growth Des. 2007, 7, 1332-1336. 25) Unprecedented (3,9)-connected (42.6)3(46.621.89) net constructed by trinclear mixed-valence cobalt clusters Zhang, X.-M.; Zheng, Y.-Z.; Li, C.-R.; Zhang, W.-X.; Chen, X.-M., Cryst. Growth Des. 2007, 7, 980–983. 26) A dynamic porous magnet exhibiting reversible guest-induced magnetic behavior modulation Cheng, X.-N.; Zhang, W.-X.; Lin, Y.-Y.; Zheng, Y.-Z.; Chen, X.-M., Adv. Mater. 2007, 19, 1494–1498. 27) Solvothermal in-situ metal/ligand reactions: A new bridge between coordination chemistry and organic synthetic chemistry Chen, X.-M.; Tong, M.-L., Acc. Chem. Res. 2007, 40, 162-170. 28) In situ solvothermal generation of 1,2,4-triazolates and related compounds from organonitriles and hydrazine hydrate: A mechanism study Cheng, L.; Zhang, W.-X.; Ye, B.-H.; Lin, J.-B.; Chen, X.-M., Inorg. Chem. 2007, 46, 1135-1143. (2006) 29) Encapsulation of water cluster, meso-helical chain and tapes in metal-organic frameworks based on double-stranded Cd(II) helicates and carboxylates Cheng, L.; Lin, J.-B.; Gong, J.-Z.; Sun, A.-P.; Ye, B.-H.; Chen, X.-M., Cryst. Growth Des. 2006, 6, 2739-2746. 30) A robust microporous 3D cobalt(II) coordination polymer with new magnetically frustrated 2D lattices: single-crystal transformation and guest modulation of cooperative magnetic properties Zeng, M.-H.; Feng, X.-L.; Zhang, W.-X.; Chen, X.-M., Dalton Trans. 2006, 5294-5303. 31) Chiral magnetic metal-organic frameworks of dimetal sub-units: Magnetism tuning by mixed-metal compositions of the solid solutions Zeng, M.-H.; Wang, B.; Wang, X.-Y.; Zhang, W.-X.; Chen, X.-M., Gao, S. Inorg. Chem. 2006, 45, 7069-7076. 32) Assembling “magnetic nanowires” into network: A layered Co(II)-carboxylate coordination polymer exhibiting single-chain-magnet behavior Zheng, Y.-Z.; Tong, M.-L.; Zhang, W.-X.; Chen, X.-M., Angew. Chem. Int. Ed. 2006, 45, 6310-6314. 33) The slow magnetic relaxation observed in a mixed carboxylate/hydroxide-bridged compound [Co2Na(4-cpa)2(m3-OH)(H2O)]¥ featuring spin-frustrated magnetic D-chains Cheng, X.-N.; Zhang, W.-X.; Zheng, Y.-Z.; Chen, X.-M., Chem. Commun. 2006, 3603-3605. 34) Syntheses, structures and photoluminescence of three coordination polymers of cadmium dicarboxylates Zhang, L.-Y.; Zhang, J.-P.; Lin, Y.-Y.; Chen, X.-M., Cryst. Growth Des. 2006, 6, 1684-1689. 35) Solvent-induced supramolecular isomerism in silver(I) 2-methylimidazolate Huang, X.-C.; Li, D.; Chen, X.-M., CrystEngComm 2006, 8, 351-355. 36) One-dimensional supramolecular isomerism of copper(I) and silver(I) imidazolates based on the ligand orientations Huang, X.-C.; Zhang, J.-P.; Chen, X.-M., Cryst. Growth Des. 2006, 6, 1194-1198. 37) (Feature Article) Crystal engineering of binary metal imidazolate and triazolate frameworks Zhang, J.-P.; Chen, X.-M., Chem. Commun. 2006, 1689-1699. 38) Ligand-directed strategy for zeolite-type metal-organic frameworks: Zinc(II) imidazolates with unusual zeolitic topologies Huang, X.-C.; Lin, Y.-Y.; Zhang, J.-P.; Chen, X.-M., Angew. Chem. Int. Ed. 2006, 45, 1557-1559. 39) From one- to three-dimensional architectures: Supramolecular isomerism of copper(I) 3,5-di(4-pyridyl)-1,2,4-triazolate involving in situ ligand synthesis Zhang, J.-P.; Lin, Y.-Y.; Huang, X.-C.; Chen, X.-M., Cryst. Growth Des. 2006, 6, 519–523. 40) Coexistence of spin frustration and long-range magnetic ordering in a triangular CoII3(m3-OH)-based two-dimensional compound Zheng, Y.-Z.; Tong, M.-L.; Zhang, W.-X.; Chen, X.-M., Chem. Commun. 2006, 165–167. (2005) 41) Synthesis, structures, magnetic properties of heteronuclear Cu(II)-Ln(III) (Ln = La, Gd or Tb) complexes He, F.; Tong, M.-L.; and Chen, X.-M., Inorg. Chem. 2005, 44, 8285-8292. 42) Supramolecular isomerism within three-dimensional 3-connnected nets: Unusual synthesis and characterization of trimorphic copper(I) 3,5-dimethyl-1,2,4-triazolate Zhang, J.-P.; Lin, Y.-Y.; Huang, X.-C.; Chen, X.-M., Dalton Trans. 2005, 3681-3685. 43) Temperature- or guest-induced drastic single-crystal-to-single-crystal transformations of a nanoporous coordination polymer Zhang, J.-P.; Lin, Y.-Y.; Zhang, W.-X.; Chen, X.-M., J. Am. Chem. Soc. 2005, 127, 14162-14163. 44) Infinite water chains trapped in organic framework constructed from melamine with 1,5-naphthalenedisulfonic acid via hydrogen bonds Zhang, X.-L.; Ye, B.-H.; Chen, X.-M., Cryst. Growth Des. 2005, 5, 1609-1616. 45) Syntheses, structures, photoluminescence and theoretical studies of a class of Be(II) compounds of aromatic N,O-chelate ligands Tong, Y.-P.; Zheng, S.-L.; Chen, X.-M., Inorg. Chem. 2005, 44, 4270-4275. 46) A solvothermally in-situ generated mixed-ligand approach for NLO-active metal–organic framework materials Wang, Y.-T.; Fan, H.-H.; Wang, H.-Z.; Chen, X.-M., Inorg. Chem. 2005, 44, 4148-4149. 47) Spin-canting and metamagnetism observed in a unique 3D homometallic molecular material constructed by interpenetration of two kinds of cobalt(II) coordination polymer sheets Zeng, M.-H.; Zhang, W.-X.; Sun, X.-Z.; Chen, X.-M., Angew. Chem. Int. Ed. 2005, 44, 3079-3082. 48) Well-resolved, new water morphologies obtained by modification of the hydrophilic/hydrophobic characters and shapes of the supporting surfaces Zhang, J.-P.; Huang, X.-C.; Lin, Y.-Y.; Chen, X.-M., Inorg. Chem. 2005, 44, 3146-3150. 49) Luminescent zigzag chains and triple-stranded helices of copper(I) 2-ethylimidazolate: Solvent polarity-induced supramolecular isomerism Huang, X.-C.; Zhang, J.-P.; Lin, Y.-Y.; Chen, X.-M., Chem. Commun. 2005, 2232–2234. 50) Copper(I) 1,2,4-triazolates and related complexes: Studies of the olvothermal ligand reactions, network topologies, and photoluminescence roperties Zhang, J.-P.; Lin, Y.-Y.; Huang, X.-C.; Chen, X.-M., J. Am. Chem. Soc. 2005, 127, 5495-5506. 51) Effect of the size of aromatic chelate ligands on the frameworks of metal dicarboxylate polymers: from helical chains to 2-D networks Han, Z.-B.; Cheng, X.-N.; Chen, X.-M., Cryst. Growth Des. 2005, 5, 695–700. 52) Supramolecular architectures and helical water chains in cocrystals of melamine and aromatic carboxylic acids Zhang, X.-L.; Chen, X.-M., Cryst. Growth Des. 2005, 5, 617-622. 53) Molecular chairs, zippers, zigzag and helical chains: chemical enumeration of supramolecular isomerism based on a predesigned metal-organic building-block Zhang, J.-P.; Lin, Y.-Y.; Huang, X.-C.; Chen, X.-M., Chem. Commun. 2005, 1258–1260. (Hot Paper) 54) (Review Article) Metal-organic molecular architectures with 2,2’-bipyridyl-like and carboxylate ligands Ye, B.-H.; Tong, M.-L.; Chen, X.-M., Coord. Chem. Rev. 2005, 249, 545–565. 55) Controlled assembly of nanoscale heterometallic Cu12Ln6 Clusters (Ln = GdIII or NdIII) into 2D coordination polymers He, F.; Tong, M.-L.; Yu, X.-L.; Chen, X.-M., Inorg. Chem. 2005, 44, 559-565. 56) Homochiral crystallization of helical coordination chains bridged by achiral ligands: can it be controlled by the ligand structure? Wang, Y.-T.; Tong, M.-L., Fan, H.-H.; Wang, H.-Z.; Chen, X.-M., Dalton Trans. 2005, 424-426. (Hot Paper, Highlighted in Chemical Science) 57) Metallophilicity versus p-p interactions: Ligand-unsupported rgentophilicity/cuprophilicity in oligomers-of-dimers [M2L2]n (M = CuI or AgI, L = tridentate ligand) Zhang, J.-P.; Wang, Y.-B.; Huang, X.-C.; Lin, Y.-Y.; Chen, X.-M., Chem. Eur. J. 2005, 11, 552-561. http://ce.sysu.edu.cn/cxm/ [ Last edited by 纳米镍粉 on 2009-6-5 at 18:59 ] |
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