posted on 2024-01-03, 05:13authored byXiao Feng, Song Shi, Guozhi Zhu, Yinwei Wang, Jieqi Cao, Jie Xu
Enzymes have unique structures, with various amino acid
residues
encapsulating metal active sites. Their high performance is mainly
achieved via weak interactions between the functional
groups and the substrate. Inspired by the enzyme structure, we designed
an encapsulated catalyst (E-SO) wherein AuPd nanoparticles
were encapsulated by porous organic frameworks (POFs) modified with
SO groups. The alcohol reaction rate of E-SO increased
2-fold compared with the control catalyst without SO groups.
The hydrogen bond was formed between alcohol and SO groups,
which was confirmed via1H NMR and inverse-phase
gas chromatography (IGC) tests. Further insight including adsorption
isotherm, in situ diffuse reflective infrared Fourier
transform spectroscopy (DRIFTS), and the kinetics data confirmed the
hydrogen bond could account for the rate enhancement. The proposed
catalyst preparation strategy through precise microenvironment control via hydrogen bonds with substrates paves a new way for high-performance
catalyst design.