Related Experiment Video
Updated: Jul 10, 2026

Synthesis and Testing of Supported Pt-Cu Solid Solution Nanoparticle Catalysts for Propane Dehydrogenation
Published on: July 18, 2017
Tuning the electronic states of Pd(II) defect-engineered metal-organic framework catalysts for efficient conversion
Shaoting Su1, Yilei Cao1, Yanwei Ren1
1Key Laboratory of Functional Molecular Engineering of Guangdong Province, School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, 510641, China.
Abstract:
Recently, defective sites in MOFs have become an important tool for tuning the catalytic performance of MOFs. Herein, we report a heterogeneous catalyst "Pd-UiO-67(N)x" by utilizing the active site of defective MOF to modulate the electronic state of Pd, which demonstrates excellent catalytic performances in the oxidative cyclization reaction of isocyanides with o-aminophenols benefiting from the electron-deficient nature of the Pd species. When the Pd loading in defective Pd-UiO-67(N)x system was decreased to 0.37 mol %, the catalytic efficiency was significantly enhanced and the Pd turnover number (TON) increased to 232, which was 27 and 2.6 times higher than that of homogeneous Pd catalysts and defect-free Pd-UiO-67(N)0, respectively. The open pore structure of d-MOFs supports the adsorption of o-aminophenols. Additionally, the domain-limiting effect of the framework restricts the aggregation of Pd, resulting in good stability of the Pd species, which without significant loss of its activity in five consecutive reaction cycles. This work provides an insight into the improvement of stereoelectronic properties of organometallic catalysts through defect-engineered MOFs.

