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Unni Olsbye

Researcher Next ID · RN-026550

Researcher · Chemical Engineering

University of Oslo

Oslo, Norway

Not currently recruitingFunding unknown
Works count
359
Citation count
32,784
H-index
79
i10-index
212

Research interests

Chemical Engineering
Materials Science
Chemistry
Catalysis and Oxidation Reactions
Catalytic Processes in Materials Science
Zeolite Catalysis and Synthesis
Catalysts for Methane Reforming
Metal-Organic Frameworks: Synthesis and Applications

Publications

  • Hydrogenation of CO2 to Methanol by Pt Nanoparticles Encapsulated in UiO-67: Deciphering the Role of the Metal–Organic Framework

    Journal of the American Chemical Society · 2019 · 10.1021/jacs.9b10873

  • Structure–performance descriptors and the role of Lewis acidity in the methanol-to-propylene process

    Nature Chemistry · 2018 · https://doi.org/10.1038/s41557-018-0081-0

  • The Nuclearity of the Active Site for Methane to Methanol Conversion in Cu-Mordenite: A Quantitative Assessment

    Journal of the American Chemical Society · 2018 · 10.1021/jacs.8b08071

  • Cu-CHA – a model system for applied selective redox catalysis

    Chemical Society Reviews · 2018 · https://doi.org/10.1039/c8cs00373d

  • Methane to Methanol: Structure–Activity Relationships for Cu-CHA

    Journal of the American Chemical Society · 2017 · https://doi.org/10.1021/jacs.7b06472

  • Defect Engineering: Tuning the Porosity and Composition of the Metal–Organic Framework UiO-66 via Modulated Synthesis

    Chemistry of Materials · 2016 · https://doi.org/10.1021/acs.chemmater.6b00602

  • Functionalizing the Defects: Postsynthetic Ligand Exchange in the Metal Organic Framework UiO-66

    Chemistry of Materials · 2016 · 10.1021/acs.chemmater.6b02749

  • The formation and degradation of active species during methanol conversion over protonated zeotype catalysts

    Chemical Society Reviews · 2015 · https://doi.org/10.1039/c5cs00304k

  • Tuned to Perfection: Ironing Out the Defects in Metal–Organic Framework UiO-66

    Chemistry of Materials · 2014 · https://doi.org/10.1021/cm501859p

  • Structural determination of a highly stable metal-organic framework with possible application to interim radioactive waste scavenging: Hf-UiO-66

    Physical Review B · 2012 · https://doi.org/10.1103/physrevb.86.125429

  • Conversion of Methanol to Hydrocarbons: How Zeolite Cavity and Pore Size Controls Product Selectivity

    Angewandte Chemie International Edition · 2012 · https://doi.org/10.1002/anie.201103657

  • Shape Selectivity in the Conversion of Methanol to Hydrocarbons: The Catalytic Performance of One-Dimensional 10-Ring Zeolites: ZSM-22, ZSM-23, ZSM-48, and EU-1

    ACS Catalysis · 2011 · https://doi.org/10.1021/cs200517u

  • Coke Formation during the Methanol‐to‐Olefin Conversion: In Situ Microspectroscopy on Individual H‐ZSM‐5 Crystals with Different Brønsted Acidity

    Chemistry - A European Journal · 2011 · https://doi.org/10.1002/chem.201002624

  • Post-synthetic modification of the metal–organic framework compound UiO-66

    Journal of Materials Chemistry · 2010 · https://doi.org/10.1039/c0jm02416c

  • Synthesis and Stability of Tagged UiO-66 Zr-MOFs

    Chemistry of Materials · 2010 · https://doi.org/10.1021/cm102601v

  • Product shape selectivity dominates the Methanol-to-Olefins (MTO) reaction over H-SAPO-34 catalysts

    Journal of Catalysis · 2009 · https://doi.org/10.1016/j.jcat.2009.03.009

  • The Effect of Acid Strength on the Conversion of Methanol to Olefins Over Acidic Microporous Catalysts with the CHA Topology

    Topics in Catalysis · 2009 · https://doi.org/10.1007/s11244-008-9158-0

  • The mechanisms of ethene and propene formation from methanol over high silica H-ZSM-5 and H-beta

    Catalysis Today · 2009 · https://doi.org/10.1016/j.cattod.2009.01.015

  • A New Zirconium Inorganic Building Brick Forming Metal Organic Frameworks with Exceptional Stability

    Journal of the American Chemical Society · 2008 · https://doi.org/10.1021/ja8057953

  • Methanol to gasoline over zeolite H-ZSM-5: Improved catalyst performance by treatment with NaOH

    Applied Catalysis A General · 2008 · https://doi.org/10.1016/j.apcata.2008.04.020

  • Space‐ and Time‐Resolved In‐situ Spectroscopy on the Coke Formation in Molecular Sieves: Methanol‐to‐Olefin Conversion over H‐ZSM‐5 and H‐SAPO‐34

    Chemistry - A European Journal · 2008 · https://doi.org/10.1002/chem.200801293

  • Conversion of methanol to hydrocarbons over zeolite H-ZSM-5: On the origin of the olefinic species

    Journal of Catalysis · 2007 · https://doi.org/10.1016/j.jcat.2007.04.006

  • The Inconsistency in Adsorption Properties and Powder XRD Data of MOF-5 Is Rationalized by Framework Interpenetration and the Presence of Organic and Inorganic Species in the Nanocavities

    Journal of the American Chemical Society · 2007 · https://doi.org/10.1021/ja0675447

  • Conversion of Methanol into Hydrocarbons over Zeolite H-ZSM-5: Ethene Formation Is Mechanistically Separated from the Formation of Higher Alkenes

    Journal of the American Chemical Society · 2006 · https://doi.org/10.1021/ja065810a

  • Mechanistic insight into the methanol-to-hydrocarbons reaction

    Catalysis Today · 2005 · https://doi.org/10.1016/j.cattod.2005.07.135

  • CO2 Sorption on MgO and CaO Surfaces: A Comparative Quantum Chemical Cluster Study

    The Journal of Physical Chemistry B · 2005 · https://doi.org/10.1021/jp052037h

Current projects

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