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Results: 6
Number of items: 6
  • Open Access
    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
  • Open Access
    Wang, Y., van Putten, R.-J., Tietema, A., Parsons, J. R., & Gruter, G. M. (2024). Polyester biodegradability: importance and potential for optimisation. Green Chemistry, 26(7), 3698-3716. https://doi.org/10.1039/d3gc04489k
  • Open Access
    Wang, Y., Davey, C. J. E., van der Maas, K., van Putten, R.-J., Tietema, A., Parsons, J. R., & Gruter, G.-JM. (2022). Biodegradability of novel high Tg poly(isosorbide-co-1,6-hexanediol) oxalate polyester in soil and marine environments. Science of the Total Environment, 815, Article 152781. https://doi.org/10.1016/j.scitotenv.2021.152781
  • Open Access
    Weinland, D. H., van der Maas, K., Wang, Y., Bottega Pergher, B., van Putten, R. J., Wang, B., & Gruter, G. J. M. (2022). Overcoming the low reactivity of biobased, secondary diols in polyester synthesis. Nature Communications, 13, Article 7370. https://doi.org/10.1038/s41467-022-34840-2
  • Open Access
    Wang, Y. (2022). Environmental biodegradability of hydrolysable polyesters from renewable resources. [Thesis, fully internal, Universiteit van Amsterdam].
  • Open Access
    Wang, Y., Murcia Valderrama, M. A., van Putten, R.-J., Davey, C. J. E., Tietema, A., Parsons, J. R., Wang, B., & Gruter, G.-JM. (2022). Biodegradation and non-enzymatic hydrolysis of poly(Lactic-co-glycolic acid) (plga12/88 and plga6/94). Polymers, 14(1), Article 15. https://doi.org/10.3390/polym14010015
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