Search results
Results: 62
Number of items: 62
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Brits, M., van Poelgeest, B., Nijenhuis, W., van Velzen, M. J. M., Béen, F. M., Gruter, G. J. M., Brandsma, S. H., & Lamoree, M. H. (2024). Quantitation of polystyrene by pyrolysis-GC-MS: The impact of polymer standards on micro and nanoplastic analysis. Polymer Testing, 137, Article 108511. https://doi.org/10.1016/j.polymertesting.2024.108511 -
van der Maas, K., Weinland, D. H., van Putten, R.-J., Wang, B., & Gruter, G.-JM. (2024). Catalyst free PET and PEF polyesters using a new traceless oxalate chain extender. Green Chemistry, 26(22), 11182-11195. https://doi.org/10.1039/d4gc02791d -
van der Maas, K., Wang, Y., Weinland, D. H., van Putten, R.-J., Wang, B., & Gruter, G. M. (2024). PISOX Copolyesters─Bio- and CO2-Based Marine-Degradable High-Performance Polyesters. ACS Sustainable Chemistry and Engineering, 12(26), 9822-9832. https://doi.org/10.1021/acssuschemeng.4c02266 -
Morón, J. B., Arbore, F., van Klink, G. P. M., Mascal, M., & Gruter, G.-JM. (2024). Industrial Routes from Sugars and Biomass to CMF and Other 5-(Halomethyl)furfurals. ChemSusChem, 17(20), Article e202400495. https://doi.org/10.1002/cssc.202400495 -
Wang, Y., van der Maas, K., Weinland, D. H., Trijnes, D., van Putten, R.-J., Tietema, A., Parsons, J. R., de Rijke, E., & Gruter, G.-JM. (2024). Relationship between Composition and Environmental Degradation of Poly(isosorbide-co-diol oxalate) (PISOX) Copolyesters. Environmental Science and Technology, 58(5), 2293-2302. https://doi.org/10.1021/acs.est.2c09699 -
Blom, M., van Putten, R.-J., van der Maas, K., Wang, B., van Klink, G. P. M., & Gruter, G.-JM. (2024). Terephthalate Copolyesters Based on 2,3-Butanediol and Ethylene Glycol and Their Properties. Polymers, 16(15), Article 2177. https://doi.org/10.3390/polym16152177 -
Bottega Pergher, B., Girigan, N., Vlasblom, S., Weinland, D. H., Wang, B., van Putten, R.-J., & Gruter, G.-JM. (2023). Reactive phenolic solvents applied to the synthesis of renewable aromatic polyesters with high isosorbide content. Polymer Chemistry, 14(27), 3225-3238. https://doi.org/10.1039/d2py01578a -
Gruter, G.-JM. (2023). Using carbon above the ground as feedstock to produce our future polymers. Current opinion in green and sustainable chemistry, 40, Article 100743. https://doi.org/10.1016/j.cogsc.2022.100743 -
Schuler, E., Grooten, L., Kasireddy, M., More, S., Shiju, N. R., Tanielyan, S. K., Augustine, R. L., & Gruter, G.-JM. (2023). Oxalic acid hydrogenation to glycolic acid: heterogeneous catalysts screening. Green Chemistry, 25(6), 2409-2426. https://doi.org/10.1039/d2gc02411j -
Schuler, E., Grooten, L., Oulego, P., Shiju, N. R., & Gruter, G.-JM. (2023). Selective reduction of oxalic acid to glycolic acid at low temperature in a continuous flow process. RSC Sustainability, 1(8), 2072-2080. https://doi.org/10.1039/d3su00185g
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