"Nanoscale Lattice Fence" in a Metal-Organic Framework: Interplay between Hinged Topology and Highly Anisotropic Thermal Response.

A thermoresponsive, 3D hinged metal-organic framework (HMOF-1) assembled from meso-tetra(4-pyridyl)porphine and CdI exhibits a 3D "lattice fence" topology with extraordinary thermal expansion and shrinkage. A simple structural model is established to elucidate such a drastic thermal response. The hi...

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Publicado en:Journal of the American Chemical Society Vol. 133; no. 38; pp. 14848 - 14852
Autores principales: DeVries, Lucas D., Barron, Paul M., Hurley, Evan P., Chunhua Hu, Wonyoung Choe
Formato: Artículo
Publicado: American Chemical Society 9/28/2011
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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        atl: "Nanoscale Lattice Fence" in a Metal-Organic Framework: Interplay between Hinged Topology and Highly Anisotropic Thermal Response.
      aug:
        au:
          DeVries, Lucas D.
          Barron, Paul M.
          Hurley, Evan P.
          Chunhua Hu
          Wonyoung Choe
        affil:
          Department of Chemistry, University of Nebraska-Lincoln, Lincoln, Nebraska 68588-0304, United States
          Department of Chemistry, New York University, New York, New York 10003-6688, United States
          Nebraska Center for Materials and Nanoscience, University of Nebraska-Lincoln, Lincoln, Nebraska 68588-0304, United States
      su:
        Anisotropy
        Lattice dynamics
        Thermal expansion
        Structural frame models
        Topology
      sug:
        subj:
          Anisotropy
          Lattice dynamics
          Thermal expansion
          Structural frame models
          Topology
      ab: A thermoresponsive, 3D hinged metal-organic framework (HMOF-1) assembled from meso-tetra(4-pyridyl)porphine and CdI exhibits a 3D "lattice fence" topology with extraordinary thermal expansion and shrinkage. A simple structural model is established to elucidate such a drastic thermal response. The hinged structure model presented here can also be applied to other "lattice fence" topologies with little or no modification, depending on the symmetry of the molecular building blocks.
      pubtype: Academic Journal
      doctype: Article
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    language: English
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