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Tethering chiral Rh diene complexes inside mesoporous solids: experimental and theoretical study of substituent, pore and linker effects on asymmetric catalysisDedicated to Professor Wolfgang A. Herrmann on the occasion of his 75th birthday.Electronic supplementary information (ESI) available. See DOI: https://doi.org/10.1039/d3cy00381g

Authors :
Kirchhof, Manuel
Gugeler, Katrin
Beurer, Ann-Katrin
Fischer, Felix Richard
Batman, Derman
Bauch, Soeren M.
Kolin, Sofia
Nicholas, Elliot
Schoch, Roland
Vogler, Charlotte
Kousik, Shravan R.
Zens, Anna
Plietker, Bernd
Atanasova, Petia
Naumann, Stefan
Bauer, Matthias
Bruckner, Johanna R.
Traa, Yvonne
Kästner, Johannes
Laschat, Sabine
Source :
Catalysis Science & Technology; 2023, Vol. 13 Issue: 12 p3709-3724, 16p
Publication Year :
2023

Abstract

Understanding confinement effects in molecular heterogeneous catalysis is a challenging task. In a combined experimental and theoretical approach, we studied the influence of the type, polarity, pore size and shape of the mesoporous material as well as of the aryl substituent at the diene, spacer type and lengths on asymmetric Rh diene catalysis under confinement. For this purpose, a library of novel chiral Rh norbornadiene complexes was immobilized on ordered mesoporous silica (OMS), ordered mesoporous carbon (OMC) and non-templated mesoporous SiO2materials with different pore sizes viaazide–alkyne 1,3-dipolar click reaction. Among the different materials, Rh complexes immobilized on OMS performed best in the 1,2-addition of aryl boroxines to N-tosyl imines as a benchmark reaction. High yields were achieved when Rh complexes were connected to pore walls by unbranched linkers of medium lengths (dpore= 5.9 nm). Good enantioselectivities were obtained either by linear alkyl linkers in smaller pores (dpore= 4.9 nm) or branched aminoethanol linkers in larger pores (dpore= 6.8 nm). However, the largest confinement effect was caused by the aryl substituent at the diene moiety, giving up to e.r. 99 : 1 for 1-naphthyl. While complementary X-ray absorption experiments (EXAFS, XANES) could not distinguish between triazole and amide carbonyl coordination at Rh, computational studies supported the triazole coordination.

Details

Language :
English
ISSN :
20444753 and 20444761
Volume :
13
Issue :
12
Database :
Supplemental Index
Journal :
Catalysis Science & Technology
Publication Type :
Periodical
Accession number :
ejs63357128
Full Text :
https://doi.org/10.1039/d3cy00381g