Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (4/4 displayed)

  • 2024Analysis of COF-300 synthesis: probing degradation processes and 3D electron diffraction structurecitations
  • 2021Emergence of Metallic Conductivity in Ordered One-Dimensional Coordination Polymer Thin Films upon Reductive Doping6citations
  • 2013New Functionalized Metal-Organic Frameworks MIL-47-X (X = -Cl, -Br, -CH3, -CF3, -OH, -OCH3)86citations
  • 2013New VIV-based metal-organic framework having framework flexibility and high CO2 adsorption capacity72citations

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Bhandary, Subhrajyoti
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Van Hecke, Kristof
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Ito, Sho
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Bourda, Laurens
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Poelman, Dirk
1 / 27 shared
Nisula, Mikko
1 / 4 shared
Karttunen, Antti J.
1 / 40 shared
Minjauw, Matthias
1 / 11 shared
Detavernier, Christophe
1 / 72 shared
Karppinen, Maarit
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Tewari, Girish C.
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Jena, Himanshu Sekhar
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Solano, Eduardo
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Denayer, Joeri F. M.
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Waroquier, Michel
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Biswas, Shyam
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Liu, Ying-Ya
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Couck, Sarah
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Leus, Karen
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Speybroeck, Veronique Van
2 / 6 shared
Vanpoucke, Danny E. P.
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Gascon, Jorge
1 / 19 shared
Denayer, Joeri
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Kapteijn, Freek
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Grzywa, Maciej
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Volkmer, Dirk
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Liu, Ying Ya
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Co-Authors (by relevance)

  • Bhandary, Subhrajyoti
  • Van Hecke, Kristof
  • Ito, Sho
  • Bourda, Laurens
  • Poelman, Dirk
  • Nisula, Mikko
  • Karttunen, Antti J.
  • Minjauw, Matthias
  • Detavernier, Christophe
  • Karppinen, Maarit
  • Tewari, Girish C.
  • Jena, Himanshu Sekhar
  • Solano, Eduardo
  • Denayer, Joeri F. M.
  • Waroquier, Michel
  • Vandichel, Matthias
  • Biswas, Shyam
  • Verstraelen, Toon
  • Liu, Ying-Ya
  • Couck, Sarah
  • Leus, Karen
  • Speybroeck, Veronique Van
  • Vanpoucke, Danny E. P.
  • Gascon, Jorge
  • Denayer, Joeri
  • Kapteijn, Freek
  • Grzywa, Maciej
  • Volkmer, Dirk
  • Liu, Ying Ya
OrganizationsLocationPeople

article

Analysis of COF-300 synthesis: probing degradation processes and 3D electron diffraction structure

  • Bhandary, Subhrajyoti
  • Van Hecke, Kristof
  • Voort, Pascal Van Der
  • Ito, Sho
  • Bourda, Laurens
Abstract

<jats:p>Although COF-300 is often used as an example to study the synthesis and structure of (3D) covalent organic frameworks (COFs), knowledge of the underlying synthetic processes is still fragmented. Here, an optimized synthetic procedure based on a combination of linker protection and modulation was applied. Using this approach, the influence of time and temperature on the synthesis of COF-300 was studied. Synthesis times that were too short produced materials with limited crystallinity and porosity, lacking the typical pore flexibility associated with COF-300. On the other hand, synthesis times that were too long could be characterized by loss of crystallinity and pore order by degradation of the tetrakis(4-aminophenyl)methane (TAM) linker used. The presence of the degradation product was confirmed by visual inspection, Raman spectroscopy and X-ray photoelectron spectroscopy (XPS). As TAM is by far the most popular linker for the synthesis of 3D COFs, this degradation process might be one of the reasons why the development of 3D COFs is still lagging compared with 2D COFs. However, COF crystals obtained via an optimized procedure could be structurally probed using 3D electron diffraction (3DED). The 3DED analysis resulted in a full structure determination of COF-300 at atomic resolution with satisfying data parameters. Comparison of our 3DED-derived structural model with previously reported single-crystal X-ray diffraction data for this material, as well as parameters derived from the Cambridge Structural Database, demonstrates the high accuracy of the 3DED method for structure determination. This validation might accelerate the exploitation of 3DED as a structure determination technique for COFs and other porous materials.</jats:p>

Topics
  • porous
  • impedance spectroscopy
  • pore
  • x-ray diffraction
  • x-ray photoelectron spectroscopy
  • electron diffraction
  • porosity
  • Raman spectroscopy
  • crystallinity