Back to Search Start Over

Encapsulation of an organometallic cationic catalyst by direct exchange into an anionic MOF

Authors :
Alexandros P. Katsoulidis
Robert P. Davies
Noémie Perret
George F. S. Whitehead
Anthony Haynes
Jianliang Xiao
F. Mark Chadwick
Lee Brammer
Andrew S. Weller
Matthew J. Rosseinsky
Alexios Grigoropoulos
Source :
CHEMICAL SCIENCE
Publication Year :
2016

Abstract

Metal–Organic Frameworks (MOFs) are porous crystalline materials that have emerged as promising hosts\ud for the heterogenization of homogeneous organometallic catalysts, forming hybrid materials which\ud combine the benefits of both classes of catalysts. Herein, we report the encapsulation of the\ud organometallic cationic Lewis acidic catalyst [CpFe(CO)2(L)]+ ([Fp–L]+, Cp ¼ h5\ud -C5H5, L ¼ weakly bound\ud solvent) inside the pores of the anionic [Et4N]3[In3(BTC)4] MOF (H3BTC ¼ benzenetricarboxylic acid) via\ud a direct one-step cation exchange process. To conclusively validate this methodology, initially [Cp2Co]+\ud was used as an inert spatial probe to (i) test the stability of the selected host; (ii) monitor the\ud stoichiometry of the cation exchange process and (iii) assess pore dimensions, spatial location of the\ud cationic species and guest-accessible space by single crystal X-ray crystallography. Subsequently,\ud the quasi-isosteric [Fp–L]+ was encapsulated inside the pores via partial cation exchange to form\ud [(Fp–L)0.6(Et4N)2.4][In3(BTC)4]. The latter was rigorously characterized and benchmarked as\ud a heterogeneous catalyst in a simple Diels–Alder reaction, thus verifying the integrity and reactivity of\ud the encapsulated molecular catalyst. These results provide a platform for the development of\ud heterogeneous catalysts with chemically and spatially well-defined catalytic sites by direct exchange\ud of cationic catalysts into anionic MOFs.

Details

ISSN :
20416539 and 20416520
Volume :
7
Issue :
3
Database :
OpenAIRE
Journal :
Chemical Science
Accession number :
edsair.doi.dedup.....45fd8195821b8a81e4a5cfb19f59cc71