Covalent triazine-based frameworks – switching selectivity in HMF photooxidation

Author:

Ditz Daniel1,Sackers Nina M.1,Müller Felix2,Zobel Mirijam2ORCID,Bergwinkl Sebastian3,Nuernberger Patrick3ORCID,Häser Leonie Sophie1,Brettschneider Sarah1,Wisser Florian M.4ORCID,Bannwarth Christoph5ORCID,Palkovits Regina16ORCID

Affiliation:

1. Heterogeneous Catalysis and Technical Chemistry, Institute of Technical and Macromolecular Chemistry, RWTH Aachen University, Worringerweg 2, 52074 Aachen, Germany

2. Institute of Crystallography, RWTH Aachen University, Jägerstraße 17-19, 52066 Aachen, Germany

3. Institute of Physical and Theoretical Chemistry, University of Regensburg, Universitätsstr. 31, 93053 Regensburg, Germany

4. Erlangen Center for Interface Research and Catalysis (ECRC) Friedrich-Alexander-Universität Erlangen-Nürnberg Egerlandstraße 3, 91058 Erlangen, Germany

5. Theoretical Physical Chemistry of Large Molecules, Institute of Physical Chemistry, RWTH Aachen University, Melatener Str. 20, 52074 Aachen, Germany

6. Max-Planck-Institute for Chemical Energy Conversion, Stiftstr. 34-36, 45470 Mülheim an der Ruhr, Germany

Abstract

Switching the HMF photooxidation pathway is possible by tailoring the CTF photocatalyst.

Funder

Deutsche Bundesstiftung Umwelt

RWTH Aachen University

Deutsche Forschungsgemeinschaft

Centre National de la Recherche Scientifique

Publisher

Royal Society of Chemistry (RSC)

Reference77 articles.

1. Europäischer Grüner Deal, available at: https://ec.europa.eu/info/strategy/priorities-2019-2024/european-green-deal_de

2. VCI Online, So gelingt der Green Deal, available at: https://www.vci.de/themen/europa/green-deal/so-gelingt-der-green-deal.jsp

3. Emerging applications of porous organic polymers in visible-light photocatalysis

4. Polymer photocatalysts for solar-to-chemical energy conversion

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