Published December 20, 2019 | Version v1

Experimental evidence for the incorporation of two metals at equivalent lattice positions in mixed metal organic frameworks. Dataset related to publication. Version: 1

  • 1. Faculty of Chemistry and Biochemistry Industrial Chemistry – Nanostructured Catalyst Materials Ruhr University Bochum Universitätsstraße 150, 44801 Bochum (Germany)
  • 2. Institute for Chemical Technology and Polymer Chemistry Karlsruhe Institute of Technology Engesserstr. 18 / 20, 76131 Karlsruhe (Germany)
  • 3. Felix Bloch Institute for Solid State Physics Leipzig University Linnéstr. 5, 04103 Leipzig (Germany)
  • 4. Faculty of Chemistry and Biochemistry Chair of Inorganic Chemistry 2 - Computational Materials Chemistry Ruhr University Bochum Universitätsstraße 150, 44801 Bochum (Germany)

Description

Experimental evidence for the incorporation of two metals at equivalent lattice positions in mixed metal organic frameworks. Dataset related to publication. Version: 1

Notes

Data type: Experimental measurements. Date format: .txt, .opj. Origin of the data: Experimental spectroscopic measurements. Data generated by a machine. Firm which produced the machine: Bruker. Version of the machine : EMX Micro. Purchase date: 2008. Information on data generation / collection: 1. methodology used to collect the data: EPR spectroscopy 2. analytical and procedural information: EPR Spectroscopy 3. definitions of variables: Magnetic field and temperature 4. units of measurement: milli Tesla 5. any assumptions made: No No software needed to read the data. Sotware needed to plot the data: Origin OR Matlab OR Python. All files can be opened via Origin (by all versions of Origin). In our case, OriginPro 2019 which has been offered by the Leipzig university. Website where to purchase/get trial version of Origin: https://www.originlab.com/index.aspx?go=Purchase/PricingAndOrdering&pid=1780

Files

Experimental evidence for the incorporation of two metals at equivalent lattice positions in mixed metal organic frameworks.zip

Additional details

Related works

Documents
Journal article: 10.1002/chem.201905596 (DOI)

Funding

European Commission
PARACAT - Paramagnetic Species in Catalysis Research. A Unified Approach Towards Heterogeneous, Homogeneous and Enzyme Catalysis 813209