Self‐Induced and Progressive Photo‐Oxidation of Organophosphonic Acid Grafted Titanium Dioxide

Author:

Gys Nick1234ORCID,Pawlak Bram5ORCID,Marcoen Kristof6ORCID,Reekmans Gunter5,Velasco Leticia F.7ORCID,An Rui2ORCID,Wyns Kenny1ORCID,Baert Kitty6ORCID,Zhang Kaimin2,Lufungula Léon Luntadila8ORCID,Piras Alessandra910ORCID,Siemons Laurens811,Michielsen Bart1ORCID,Van Doorslaer Sabine12ORCID,Blockhuys Frank8ORCID,Hauffman Tom6ORCID,Adriaensens Peter5ORCID,Mullens Steven1ORCID,Meynen Vera12ORCID

Affiliation:

1. Sustainable Materials Flemish Institute for Technological Research (VITO NV) Boeretang 200 2400 Mol Belgium

2. Laboratory of Adsorption and Catalysis (LADCA) Department of Chemistry University of Antwerp Universiteitsplein 1 2610 Wilrijk Belgium

3. Present address: Centre for Membrane Separations Adsorption Catalysis and Spectroscopy (cMACS) KU Leuven Celestijnenlaan 200F 3001 Leuven Belgium

4. Research Group Electrochemical and Surface Engineering (SURF) Vrije Universiteit Brussel, Pleinlaan Leuven, 2 1050 Brussels Belgium

5. Analytical and Circular Chemistry (ACC) Institute for Materials Research (IMO) Hasselt University Agoralaan 1 3590 Diepenbeek Belgium

6. Research Group Electrochemical and Surface Engineering (SURF) Department Materials and Chemistry Vrije Universiteit Brussel Pleinlaan 2 1050 Brussels Belgium

7. Department of Chemistry Royal Military Academy Renaissancelaan 30 1000 Brussels Belgium

8. Structural Chemistry Group Department of Chemistry University of Antwerp Groenenborgerlaan 171 2020 Antwerp Belgium

9. Laboratory of Applied Materials Chemistry Unit of Nanomaterials Chemistry Department of Chemistry Namur University Rue de Bruxelles 61 5000 Namur Belgium

10. Design and Synthesis of Inorganic Nanomaterials (DESINe) Institute for Materials Research (IMO-IMOMEC) Hasselt University Agoralaan 1 3590 Diepenbeek Belgium

11. Present address: Institute for Applied Chromatography (IAC), SGS Belgium NV Polderdijkweg 16 2030 Antwerp Belgium

12. Laboratory of Biophysics and BioMedical Physics (BIMEF) Department of Chemistry University of Antwerp Universiteitsplein 1 2610 Wilrijk Belgium

Abstract

AbstractWhile synthesis‐properties‐performance correlations are being studied for organophosphonic acid grafted TiO2, their stability and the impact of the exposure conditions on possible changes in the interfacial surface chemistry remain unexplored. Here, the impact of different ageing conditions on the evolution of the surface properties of propyl‐ and 3‐aminopropylphosphonic acid grafted mesoporous TiO2 over a period of 2 years is reported, using solid‐state 31P and 13C NMR, ToF‐SIMS and EPR as main techniques. In humid conditions under ambient light exposure, PA grafted TiO2 surfaces initiate and facilitate photo‐induced oxidative reactions, resulting in the formation of phosphate species and degradation of the grafted organic group with a loss of carbon content ranging from 40 to 60 wt %. By revealing its mechanism, solutions were provided to prevent degradation. This work provides valuable insights for the broad community in choosing optimal exposure/storage conditions that extend the lifetime and improve the materials′ performance, positively impacting sustainability.

Funder

Fonds Wetenschappelijk Onderzoek

Hercules Foundation

Universiteit Antwerpen

Publisher

Wiley

Subject

General Chemistry

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