H2020Individual fellowship2015–2017

NONNH · Mechanism of hydrogenation and transfer hydrogenation of polar unsaturations catalyzed by non N-H systems

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2015-07-12 → 2017-07-11
EU contribution
€185,076
Participants
1
Scheme
MSCA-IF-EF-ST

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Results in brief

Mechanism of hydrogenation and transfer hydrogenation of polar unsaturations catalyzed by non N-H systems

The project addresses the reduction of compounds containing polar unsaturations, catalyzed by metal complexes under strongly basic conditions. This is an important reaction that enters the manufacture of many high added value fine chemicals. The role of the strong base for catalysts that do not contain active protons in the ligand donor functions is unclear, as well as the relationship between the mechanisms of hydrogenation by H2 and transfer hydrogenation, for instance by alcohols or formic acid. The sought mechanistic understanding can lead to the design of improved catalysts and operating conditions. The project is being implemented by a multifaceted approach that includes synthesis, characterization, catalysis, kinetics, and computations and is further enriched by parahydrogen NMR studies through a 3-month secondment at the University of York. This multisectorial training puts the ER on an excellent basis to further develop his professional career in research. The ER has an excellent basic training from one of the premier institutions in his Country and an outstanding publication record. The ER is also depeloping transferrable skills by assisting the permanent staff with mentoring undergraduate students in the group. He has delivered presentations at internal group meetings and oral/poster presentations at two international conferences. He has also contributed to drafting his research publications.

Data: CORDIS, © European Union

Project objective

The project addresses the reduction of polar unsaturations catalyzed by metal complexes under strongly basic conditions. This is an important reaction that enters the manufacture of many high added value fine chemicals. The role of the strong base for catalysts that do not contain active protons in the ligand donor functions is unclear, as well as the relationship between the mechanisms of hydrogenation by H2 and transfer hydrogenation. The sought mechanistic understanding can lead to the design of improved catalysts and operating conditions. The project will be implemented by a multifaceted approach that includes synthesis, characterization, catalysis, kinetics, and computations and be further enriched by parahydrogen NMR studies through a 3-month secondment at the University of York. This multisectorial training will put the ER on an excellent basis to further develop his professional career in research. The ER has an excellent basic training from one of the premier institutions in his Country and an outstanding publication record. The ER will be expected to mentor undergraduate students in the group, to deliver 4 presentations at group meetings, to present his results in at least one international conference and to contribute to drafting research publications. The project is expected to lead to high impact fundamental knowledge resulting in high quality publications, presentations at international conferences, and popularized articles in University magazines.

Original text from CORDIS.

Participants

  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS · ParisCoordinatorFrance

Links

Data: CORDIS, © European Union