Pan Di, Yu Jiayu, Du Ke, Yan Kexin, Ding Ling, Zhang Yahong, Tang Yi
Department of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Laboratory of Advanced Materials, Collaborative Innovation Centre of Chemistry for Energy Materials (iChEM), Fudan University Shanghai 200433 P. R. China
Chem Sci. 2025 Mar 1;16(14):5931-5941. doi: 10.1039/d5sc00987a. eCollection 2025 Apr 2.
The systemic evaluation of the collaboration between intrinsic activity of active sites and the substrate/product diffusion rate is a key challenge for rational optimization of reaction performance in alkene epoxidation. Herein, we constructed a series of TS-1 catalysts with adjustable local microenvironments around active sites to explore their performance in alkene epoxidation. This was achieved by controlling the contributions of classical and non-classical routines during the crystallization process. Based on the characterization of active sites, product diffusion and their alkene epoxidation activity, we proposed a descriptor, , for quantitative evaluation of the collaboration between intrinsic activity and product diffusion in TS-1 catalysts. This descriptor successfully explains the catalytic performance of various TS-1 catalysts including commercial TS-1 and guides further improvement of TS-1 in different alkene epoxidations. The optimal is found in various epoxidations, corresponding to peak epoxidation performance across different substrates due to the well-balanced intrinsic activity and diffusion rate.
对活性位点的本征活性与底物/产物扩散速率之间的协同作用进行系统评估,是合理优化烯烃环氧化反应性能的关键挑战。在此,我们构建了一系列活性位点周围局部微环境可调的TS-1催化剂,以探索它们在烯烃环氧化反应中的性能。这是通过在结晶过程中控制经典和非经典路径的贡献来实现的。基于对活性位点、产物扩散及其烯烃环氧化活性的表征,我们提出了一个描述符 ,用于定量评估TS-1催化剂中本征活性与产物扩散之间的协同作用。该描述符成功解释了包括商业TS-1在内的各种TS-1催化剂的催化性能,并指导了TS-1在不同烯烃环氧化反应中的进一步改进。在各种环氧化反应中发现了最佳的 ,由于本征活性和扩散速率的良好平衡,对应于不同底物的环氧化性能峰值。