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Collaborative Research Center 1333

Molecular Heterogeneous Catalysis in Confined Geometries

Collaborative Research Center 1333
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  • Research
    • Area A: Materials
      • A03 – Electrocatalytic CO2 Reduction with COFs
      • A04 – Mesoporous Metallo-Silicates
      • A08 – Dynamic Confinement in Soft Porous Crystals
    • Area B: Catalysis
      • B02 – Continuous Flow and On-line Analytics
      • B04 – Tuning C6/C8 Selectivity in Oligomerizations
      • B05 – Gas-Phase CO2 Reduction by Cu Hydrides
      • B06 – Cooperative Multiple Activation Catalysis
      • B07 – Electrocatalytic CO2 Reduction on Carbon
      • B08 – Probing Precatalyst Association by NMR
    • Area C: Analysis, Theory and Simulation
      • C02 – Porphyrinoids & Pyridyl Carbenes
      • C03 – Understanding Atom Probe Tomography
      • C04 – Simulation of Chemical Reactivities
      • C05 – Simulation of Diffusion-Reaction Processes
      • C08 – Diffraction Analysis of Complex Structures
      • C09 – Microscopic Analysis of Molecular Transport
      • C10 – Advanced Hard X-Ray Spectroscopy
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Archives: Publikationen

Molybdenum Alkylidyne Silyloxy N-Heterocyclic Carbene
Complexes – Highly Active Alkyne Metathesis Catalysts that
can be Handled in Air

J. V. Musso, V. Gramm, S. Stein, W. Frey and M. R. Buchmeiser Eur. J. Inorg. Chem. 2023, 26, e202200649.

Imaging the Permeability and Passivation Susceptibility of SiO2 Nanosphere-Based Mesoporous Supports for Molecular Heterogeneous Catalysis under Confinement

S. R. Kousik, F. Ziegler, D. Sipp, A. Rodríguez-Camargo, H. Solodenko, W. Gassner, G. Schmitz, B. V. Lotsch, M. R. Buchmeiser, K. Koynov and P. Atanasova ACS Appl. Nano Mater. 2022, 5, 10, 14733–14745.

Cationic Molybdenum Imido Alkylidene N-Heterocyclic Carbene Complexes Confined in Mesoporous Silica: Tuning Transition States Towards Z-Selective Ring-Opening Cross-Metathesis

E. L. Goldstein, F. Ziegler, A.-K. Beurer, Y. Traa, J. R. Bruckner, M. R. Buchmeiser ChemCatChem 2022,14, e202201008.

Frozen n-Tetradecane Investigated by Cryo-Atom Probe Tomography

K. Meng, T. Schwarz, E. Weikum, P. Stender and Guido Schmitz J. Microsc. Microanal. 2022, 1-11.

Understanding the Underlying Field Evaporation Mechanism of Pure Water Tips in High Electrical Fields

N. Segreto, T. M. Schwarz, C. A. Dietrich, P. Stender, R. Schuldt, G. Schmitz, and J. Kästner J. Phys. Chem. A 2022, 126, 33, 5663–5671.

Escaping the horns of the COF dilemma

– PERSPECTIVE – L. Grunenberg, B. V. Lotsch Matter 2022, 5, 8, 2482-2484.

Introducing a Novel Method for Probing Accessibility, Local Environment, and Spatial Distribution of Oxidative Sites on Solid Catalysts Using Trimethylphosphine

C. Rieg, D. Dittmann, Z. Li, A. Kurtz, E. Kaya, S. Peters, B. Kunkel, M. Parlinska-Wojtan, S. Wohlrab, A.M. Abdel-Mageed, M. Dyballa J. Phys. Chem. C 2022, 126, 31, 13213–13223.

Status and Direction of Atom Probe Analysis of Frozen Liquids

– REVIEW/PERSPECTIVE – P. Stender, B. Gault, T. M. Schwarz, E. V. Woods, S.-H. Kim, J. Ott, L. T. Stephenson, G. Schmitz, Ch. Freysoldt, J. Kästner and A. A. El-Zoka Microsc. Microanal. 2022, 28, 4 , 1150 – 1167.

A thermalized electrokinetics model including stochastic reactions suitable for multiscale simulations of reaction-advection-diffusion systems

I. Tischler, F. Weik, R. Kaufmann M. Kuron, R. Weeber and Ch. Holm J. Comput. Sci. 2022, 63, 101770.

Predictive design of ordered mesoporous silica with well-defined, ultra-large mesopores

Ch. Vogler, S. Naumann and J. R. Bruckner Mol. Syst. Des. Eng., 2022, 7, 1318-1326.

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