A non-hydrolytic sol-gel route to highly active MoO 3-SiO 2-Al 2O 3 metathesis catalysts


Journal article


D.P. Debecker, K. Bouchmella, M. Stoyanova, U. Rodemerck, E.M. Gaigneaux, P. Hubert Mutin
Catalysis Science and Technology, vol. 2, 2012, pp. 1157-1164


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APA   Click to copy
Debecker, D. P., Bouchmella, K., Stoyanova, M., Rodemerck, U., Gaigneaux, E. M., & Hubert Mutin, P. (2012). A non-hydrolytic sol-gel route to highly active MoO 3-SiO 2-Al 2O 3 metathesis catalysts. Catalysis Science and Technology, 2, 1157–1164. https://doi.org/10.1039/c2cy00475e


Chicago/Turabian   Click to copy
Debecker, D.P., K. Bouchmella, M. Stoyanova, U. Rodemerck, E.M. Gaigneaux, and P. Hubert Mutin. “A Non-Hydrolytic Sol-Gel Route to Highly Active MoO 3-SiO 2-Al 2O 3 Metathesis Catalysts.” Catalysis Science and Technology 2 (2012): 1157–1164.


MLA   Click to copy
Debecker, D. P., et al. “A Non-Hydrolytic Sol-Gel Route to Highly Active MoO 3-SiO 2-Al 2O 3 Metathesis Catalysts.” Catalysis Science and Technology, vol. 2, 2012, pp. 1157–64, doi:10.1039/c2cy00475e.


BibTeX   Click to copy

@article{debecker2012a,
  title = {A non-hydrolytic sol-gel route to highly active MoO 3-SiO 2-Al 2O 3 metathesis catalysts},
  year = {2012},
  journal = {Catalysis Science and Technology},
  pages = {1157-1164},
  volume = {2},
  doi = {10.1039/c2cy00475e},
  author = {Debecker, D.P. and Bouchmella, K. and Stoyanova, M. and Rodemerck, U. and Gaigneaux, E.M. and Hubert Mutin, P.}
}


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