Chitosan as Support Material for Metal-Organic Framework based Catalysts

Publication date

2024-09-02

Authors

Jabbour, Christia RISNI 0000000506767840
Schnabl, KordulaISNI 0000000526456572
Yan, Haoxiang
O'Beirn, Naoise N
Dorresteijn, Joren MISNI 0000000492853050
Meirer, FlorianISNI 0000000137317800
Mandemaker, Laurens D.B.ORCID 0000-0003-2630-7855ISNI 000000049261341X
Weckhuysen, Bert MORCID 0000-0001-5245-1426ISNI 0000000110540180

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Abstract

Turning waste into valuable products is one of the main challenges of the chemical industry. In this work, chitosan (CS), an abundant, low-cost, and non-toxic biopolymer derived from chitin, was reshaped into beads of ~3 mm. Their suitability as a support material for active phase catalyst materials was tested for a zirconium-based Metal-Organic Framework (MOF) with incorporated Pt, namely UiO-67-Pt. Its incorporation was investigated via two procedures: a one-pot synthesis (OPS) and a post-synthetic functionalization (PSF) synthesis method. Scanning electron microscopy (SEM) images show good UiO-67-Pt dispersion throughout the CS beads for the one-pot synthesized material (UiO-67-Pt-OPS@CS). However, this uniform dispersion was not observed for the post-synthetically functionalized material (UiO-67-Pt-PSF@CS). The success of the implementation of UiO-67-Pt was evaluated with ultraviolet-visible and infrared spectroscopy for both composite materials. Thermogravimetric analysis (TGA) reveals higher thermal stabilities for UiO-67-Pt-OPS@CS composite beads in comparison to pure CS beads, but not for UiO-67-Pt-PSF@CS. The study provides valuable insights into the potential of chitosan as a green, bead-shaped support material for MOFs, offering flexibility in their incorporation through different synthesis routes. It further contributes to the broader goal of the sustainable and eco-friendly design of a new generation of catalysts made from waste materials, which will be the topic of future studies.

Keywords

chitosan, composite material, metal-organic framework, synthesis, Atomic and Molecular Physics, and Optics, Physical and Theoretical Chemistry

Citation

Jabbour, C R, Schnabl, K B, Yan, H, O'Beirn, N N, Dorresteijn, J M, Meirer, F, Mandemaker, L D B & Weckhuysen, B M 2024, 'Chitosan as Support Material for Metal-Organic Framework based Catalysts', ChemPhysChem, vol. 25, no. 17, e202400154. https://doi.org/10.1002/cphc.202400154