Schuler, E., Grooten, L., Kasireddy, M., More, S., Shiju, N. R., Tanielyan, S. K., Augustine, R. L., Oulego, P., & Gruter, G. J. M. (2025). Oxalic Acid Hydrogenation to Glycolic Acid: Toward Stable and Selective Ruthenium Catalysts. ACS Omega, 10(21), 21213-21226. https://doi.org/10.1021/acsomega.4c10268
2023
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[details]
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[details]
Schuler, E., Morana, M., Ermolich, P. A., Lüschen, K., Greer, A. J., Taylor, S. F. R., Hardacre, C., Shiju, N. R., & Gruter, G. J. M. (2022). Formate as a key intermediate in CO2 utilization. Green Chemistry, 24(21), 8227-8258. https://doi.org/10.1039/d2gc02220f[details]
Schuler, E., Morana, M., Shiju, N. R., & Gruter, G.-JM. (2022). A new way to make oxalic acid from CO2 and alkali formates: Using the active carbonite intermediate. Sustainable Chemistry for Climate Action, 1, Article 100001. https://doi.org/10.1016/j.scca.2022.100001[details]
Devid, E. J., Ronda-Lloret, M., Zhang, D., Schuler, E., Wang, D., Liang, C.-H., Huang, Q., Rothenberg, G., Shiju, N. R., & Kleyn, A. W. (2021). Enhancing CO2 plasma conversion using metal grid catalysts. Journal of Applied Physics, 129(5), Article 053306. https://doi.org/10.1063/5.0033212[details]
Schuler, E., Demetriou, M., Shiju, N. R., & Gruter, G.-JM. (2021). Towards Sustainable Oxalic Acid from CO2 and Biomass. ChemSusChem, 14(18), 3636-3664. https://doi.org/10.1002/cssc.202101272[details]
Schuler, E., Ermolich, P. A., Shiju, N. R., & Gruter, G.-JM. (2021). Monomers from CO2: Superbases as Catalysts for Formate-to-Oxalate Coupling. ChemSusChem, 14(6), 1517-1523. https://doi.org/10.1002/cssc.202002725[details]
Schuler, E., Stoop, M., Shiju, N. R., & Gruter, G.-JM. (2021). Stepping Stones in CO2 Utilization: Optimizing the Formate to Oxalate Coupling Reaction Using Response Surface Modeling. ACS Sustainable Chemistry & Engineering, 9(44), 14777-14788. https://doi.org/10.1021/acssuschemeng.1c04539[details]
Zhang, D., Huang, Q., Devid, E. J., Schuler, E., Shiju, N. R., Rothenberg, G., van Rooij, G., Yang, R., Liu, K., & Kleyn, A. W. (2018). Tuning of Conversion and Optical Emission by Electron Temperature in Inductively Coupled CO2 Plasma. Journal of Physical Chemistry C, 122(34), 19338-19347. https://doi.org/10.1021/acs.jpcc.8b04716[details]
Schuler, E., Morana, M., Shiju, N. R., & Gruter, G. J. M. (2025). Erratum to “A new way to make oxalic acid from CO2 and alkali formates: Using the active carbonite intermediate” [Sustainable Chemistry for Climate Action (2022) 100001] (Sustainable Chemistry for Climate Action (2022) 1, (S2772826922000013), (10.1016/j.scca.2022.100001)). Sustainable Chemistry for Climate Action, 6, Article 100078. https://doi.org/10.1016/j.scca.2025.100078
Schuler, E. (speaker) (6-2020). Oceans full of possibilities-A quest for polymers from CO2, 24th Annual Green Chemistry & Engineering Conference .
Schuler, E. (speaker) (3-2020). Formate coupling to oxalate, NCCC 2020.
Schuler, E. (speaker) (1-2020). Formate coupling revisited – a key step, UKCC – Annual conference of UK catalysis hub , Loughborough.
2022
Schuler, E. (2022). Stepping stones in CO2 utilization: Towards process development of oxalic and glycolic acid monomers. [Thesis, fully internal, Universiteit van Amsterdam]. [details]
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