Search results
Results: 608
Number of items: 608
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James, C. C., Laan, P. C. M., de Bruin, B., & Reek, J. N. H. (2023). Kinetic Protection of a Water-Soluble Olefin Metathesis Catalyst for Potential Use under Biological Conditions. ChemCatChem, 15(7), Article e202201272. https://doi.org/10.1002/cctc.202201272 -
Ham, R., Nielsen, C. J., Pullen, S., & Reek, J. N. H. (2023). Supramolecular Coordination Cages for Artificial Photosynthesis and Synthetic Photocatalysis. Chemical Reviews, 123(9), 5225-5261. https://doi.org/10.1021/acs.chemrev.2c00759 -
Chakrabortty, S., Konieczny, K., de Zwart, F. J., Bobylev, E. O., Baráth, E., Tin, S., Müller, B. H., Reek, J. N. H., de Bruin, B., & de Vries, J. G. (2023). Cobalt-Catalyzed Enantioselective Hydrogenation of Trisubstituted Carbocyclic Olefins: An Access to Chiral Cyclic Amides. Angewandte Chemie - International Edition, 62(26), Article e202301329. https://doi.org/10.1002/anie.202301329 -
Reek, J. N. H., Rutjes, F. P. J. T., & Hensen, E. J. M. (2023). A Snapshot of the Catalysis Research in the Netherlands as Carried Out Within the Netherlands Institute for Catalysis Research (NIOK). ChemCatChem, 15(19), Article e202300928. https://doi.org/10.1002/cctc.202300928 -
Bobylev, O., Plessius, R., Van Der Vlugt, J. I., Reek, J. N. H., & Zaffaroni, R. (2022). CCDC 1922846: Experimental Crystal Structure Determination [Data set]. The Cambridge Structural Database. https://doi.org/10.5517/ccdc.csd.cc22jw9t
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Reek, J. N. H., Zaffaroni, R., Bobylev, O., Plessius, R., & Van Der Vlugt, J. I. (2022). CCDC 1922847: Experimental Crystal Structure Determination [Data set]. The Cambridge Structural Database. https://doi.org/10.5517/ccdc.csd.cc22jwbv
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Zaffaroni, R., Bobylev, O., Reek, J. N. H., Plessius, R., & Van Der Vlugt, J. I. (2022). CCDC 1922848: Experimental Crystal Structure Determination [Data set]. The Cambridge Structural Database. https://doi.org/10.5517/ccdc.csd.cc22jwcw
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Bouwens, T., Bakker, T., Hasenack, J., Dieperink, M., Brouwer, F., Huijser, A., Mathew, S., & Reek, J. N. H. (2022). Using supramolecular machinery to engineer directional charge propagation in photoelectrochemical devices [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.20508852.v1
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Mouarrawis, V., Mathew, S., Meeus, E. J., de Bruin, B., & Reek, J. (2022). A chromatography-free synthesis of meso-tetrakis(4-formylphenyl) porphyrin and meso-tetrakis(3-formylphenyl) porphyrin: Versatile synthons in supramolecular and macromolecular chemistry. Journal of Porphyrins and Phthalocyanines, 26(6-7), 427-433. https://doi.org/10.1142/S1088424621500504
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Keijer, T., & Reek, J. N. H. (2022). Metalloporphyrins as Building Blocks to Supramolecular Architectures with Catalytic Functions. In S. Ma, & G. Verma (Eds.), Porphyrin-based Supramolecular Architectures: From Hierarchy to Functions (pp. 59-105). (Monographs in Supramolecular Chemistry; No. 32). Royal Society of Chemistry. https://doi.org/10.1039/9781839164934
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