Pillared, 3D metal-organic frameworks with rectangular channels. Synthesis and characterization of coordination polymers based on tricadmium carboxylates

被引:120
|
作者
Evans, OR [1 ]
Lin, WB [1 ]
机构
[1] Brandeis Univ, Dept Chem, Waltham, MA 02454 USA
关键词
D O I
10.1021/ic991360u
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Hydro(solvo)thermal reactions between cadmium(II) perchlorate and 4-pyridinecarboxaldehyde in the presence of various guest molecules have resulted in a series of 3-D coordination polymers based on tricadmium carboxylates [Cd-6(isonicotinate)(10)(H2O)(2)](ClO4)(2)(EtOH)(4), 1, [Cd-3(isonicotinate)(5)(EtOH)](ClO4)(EtOH)(4-nitroaniline)(0.5) 2, and [Cd-6(isonicotinate)(11)](ClO4)(EtOH)(2)(H2O)(2)(4-cyanopyridine)(0.5), 3. X-ray single crystal structure determinations show that they exhibit similar pillared, 3D framework structures based on tricadmium carboxylate building blocks. Rectangular channels are clearly present in these polymeric networks and are occupied by perchlorate anions and disordered guest molecules. Quantitative NMR and X-ray powder diffraction studies and thermogravimetric analyses (TGA) reveal that these coordination networks are capable of accommodating different guest molecules. More significantly, the guest molecules can be readily removed via evacuation to result in nanoporous polymeric coordination networks retaining the framework structures of the pristine solids. Crystal data for 1: monoclinic space group P2(1)/n, a = 19.041(1) Angstrom, b = 23.654(1) Angstrom, c = 21.568(1) Angstrom, beta = 95.440(1)degrees, and Z = 4. Crystal data for 2: triclinic space group P (1) over bar, a = 12.050(1) Angstrom, b = 12.277(1) Angstrom, c = 19.103(1) Angstrom, alpha = 91.669(1)degrees, beta = 96.850(1)degrees, gamma = 117.945(1)degrees and Z = 2. Crystal data for 3: monoclinic space group P2(1)/n, a = 19.038(1) Angstrom, b = 23.834(1) Angstrom, c = 21.756(1) Angstrom, beta = 97.580(1)degrees,and Z = 4.
引用
收藏
页码:2189 / 2198
页数:10
相关论文
共 50 条
  • [21] Metal-organic frameworks: Efficient and green synthesis of cyanide-based 3D porous networks
    Kaur, Raj
    Pintauer, Tomislav
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2013, 245
  • [22] 3D Energetic Metal-Organic Frameworks: Synthesis and Properties of High Energy Materials
    Li, Shenghua
    Wang, Yuan
    Qi, Cai
    Zhao, Xiuxiu
    Zhang, Jichuan
    Zhang, Shaowen
    Pang, Siping
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2013, 52 (52) : 14031 - 14035
  • [23] Magnetic Properties of Metal-Organic Coordination Networks Based on 3d Transition Metal Atoms
    Blanco-Rey, Maria
    Sarasola, Ane
    Nistor, Corneliu
    Persichetti, Luca
    Stamm, Christian
    Piamonteze, Cinthia
    Gambardella, Pietro
    Stepanow, Sebastian
    Otrokov, Mikhail M.
    Golovach, Vitaly N.
    Arnau, Andres
    MOLECULES, 2018, 23 (04):
  • [24] Synthesis, crystal structures, luminescent and thermal properties of two new metal-organic coordination polymers based on zinc(II) carboxylates
    Sapchenko, Sergey A.
    Dybtsev, Danil N.
    Samsonenko, Denis G.
    Fedin, Vladimir P.
    NEW JOURNAL OF CHEMISTRY, 2010, 34 (11) : 2445 - 2450
  • [25] Synthesis and Structural Characterization of Lithium-Based Metal-Organic Frameworks
    Banerjee, Debasis
    Borkowski, Lauren A.
    Kim, Sun Jin
    Parise, John B.
    CRYSTAL GROWTH & DESIGN, 2009, 9 (11) : 4922 - 4926
  • [26] CelloMOF: Nanocellulose Enabled 3D Printing of Metal-Organic Frameworks
    Sultan, Sahar
    Abdelhamid, Hani Nasser
    Zou, Xiaodong
    Mathew, Aji P.
    ADVANCED FUNCTIONAL MATERIALS, 2019, 29 (02)
  • [27] Mechanically-interlocked molecules in 3D metal-organic frameworks
    Sue, Chi-Hau
    Li, Qiaowei
    Yaghi, Omar M.
    Stoddart, J. Fraser
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2010, 239
  • [28] Topologically guided exfoliation of 3D metal-organic frameworks into nanosheets
    Zhang, Yaxin
    V. Sokolov, Andrey
    V. Vologzhanina, Anna
    V. Sudakova, Tatyana
    Wang, Junjie
    V. Alexandrov, Eugeny
    MATERIALS CHEMISTRY AND PHYSICS, 2024, 325
  • [29] Coordination polymers and metal-organic frameworks based on paddlewheel-type dirhodium(II) tetracarboxylates
    Kataoka, Yusuke
    Yano, Natsumi
    Mikuriya, Masahiro
    Handa, Makoto
    COORDINATION CHEMISTRY REVIEWS, 2022, 472
  • [30] Self-assembly of lanthanide helicate coordination polymers into 3D metal-organic framework structures
    Ghosh, SK
    Bharadwaj, PK
    INORGANIC CHEMISTRY, 2004, 43 (07) : 2293 - 2298