The active site environment in enzymes has been known to affect catalyst performance through weak interactions with a substrate, but precise synthetic control of enzyme inspired heterogeneous catalysts remains challenging. Here, we synthesize hyper-crosslinked porous polymer (HCPs) with solely -OH or -CH(3) groups on the polymer scaffold to tune the environment of active sites. Reaction rate measurements, spectroscopic techniques, along with DFT calculations show that HCP-OH catalysts enhance the hydrogenation rate of H-acceptor substrates containing carbonyl groups whereas hydrophobic HCP- CH(3) ones promote non-H bond substrate activation. The functional groups go beyond enhancing substrate adsorption to partially activate the Câ=âO bond and tune the catalytic sites. They also expose selectivity control in the hydrogenation of multifunctional substrates through preferential substrate functional group adsorption. The proposed synthetic strategy opens a new class of porous polymers for selective catalysis.
Selective hydrogenation via precise hydrogen bond interactions on catalytic scaffolds.
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作者:Shi Song, Yang Piaoping, Dun Chaochao, Zheng Weiqing, Urban Jeffrey J, Vlachos Dionisios G
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2023 | 起止号: | 2023 Jan 26; 14(1):429 |
| doi: | 10.1038/s41467-023-36015-z | ||
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