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Helling, C., van der Zee, L. J. C., Hofman, J., de Zwart, F. J., Mathew, S., Nieger, M., & Slootweg, J. C. (2023). Homolytic C−H Bond Activation by Phosphine−Quinone-Based Radical Ion Pairs. Angewandte Chemie - International Edition, 62(48), Article e202313397. https://doi.org/10.1002/anie.202313397 -
Dekker, M. M., Daioglou, V., Pietzcker, R., Rodrigues, R., de Boer, H.-S., Dalla Longa, F., Drouet, L., Emmerling, J., Fattahi, A., Fotiou, T., Fragkos, P., Fricko, O., Gusheva, E., Harmsen, M., Huppmann, D., Kannavou, M., Krey, V., Lombardi, F., Luderer, G., ... van Vuuren, D. (2023). Identifying energy model fingerprints in mitigation scenarios. Nature Energy, 8(12), 1395–1404. https://doi.org/10.1038/s41560-023-01399-1 -
Pope, F., Jonk, J., Fowler, M., Laan, P. C. M., Geels, N. J., Drangai, L., Gitis, V., & Rothenberg, G. (2023). From shrimp balls to hydrogen bubbles: borohydride hydrolysis catalysed by flexible cobalt chitosan spheres. Green Chemistry, 25(14), 5727-5734. https://doi.org/10.1039/d3gc00821e -
Medved’, M., Di Donato, M., Buma, W. J., Laurent, A. D., Lameijer, L., Hrivnák, T., Romanov, I., Tran, S., Feringa, B. L., Szymanski, W., & Woolley, G. A. (2023). Mechanistic Basis for Red Light Switching of Azonium Ions. Journal of the American Chemical Society, 145(36), 19894-19902. https://doi.org/10.1021/jacs.3c06157 -
Liu, X., Zhang, P., Xiong, H., Zhang, Y., Wu, K., Liu, J., Krishna, R., Chen, J., Chen, S., Zeng, Z., Deng, S., & Wang, J. (2023). Engineering Pore Environments of Sulfate-Pillared Metal-Organic Framework for Efficient C2H2/CO2 Separation with Record Selectivity. Advanced materials, 35(20), Article 2210415. https://doi.org/10.1002/adma.202210415 -
Meeus, E. J., Derks, M. T. G. M., van Leest, N. P., Verhoef, C. J., Roithová, J., Reek, J. N. H., & de Bruin, B. (2023). Styrene aziridination with [CoIII(TAMLred)]– in water: Understanding and preventing epoxidation via nitrene hydrolysis. Chem Catalysis, 3(8), Article 100700. https://doi.org/10.1016/j.checat.2023.100700 -
Rothenberg, G. (2023). A realistic look at CO2 emissions, climate change and the role of sustainable chemistry. Sustainable Chemistry for Climate Action, 2, Article 100012. https://doi.org/10.1016/j.scca.2023.100012 -
Hulleman, T., Turkina, V., O'Brien, J. W., Chojnacka, A., Thomas, K. V., & Samanipour, S. (2023). Critical Assessment of the Chemical Space Covered by LC-HRMS Non-Targeted Analysis. Environmental Science and Technology, 57(38), 14101-14492. https://doi.org/10.1021/acs.est.3c03606 -
Fontenelle, A. L., Peyerl, D., Zacharias, L. G. L., Ciotta, M., & Moretto, E. M. (2023). The role of the Sustainable Development Goals for better governance of Carbon Capture and Storage (CCS). Desenvolvimento e Meio Ambiente, 62, 478-498. https://doi.org/10.5380/dma.v62i0.82216 -
Zhou, Y., Chen, C., Krishna, R., Ji, Z., Yuan, D., & Wu, M. (2023). Tuning Pore Polarization to Boost Ethane/Ethylene Separation Performance in Hydrogen-Bonded Organic Frameworks. Angewandte Chemie, 135(25), Article e202305041. https://doi.org/10.1002/ange.202305041, https://doi.org/10.1002/anie.202305041
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