arrow
Return

Diffusion-Selective Tandem Catalysis for Alkane Hydroisomerization

delete2026-04-20
delete0
PRE
AI
F
Feng Yi
申渝 cover
申渝 (Yu Shen) *
W
Wen-Tao Qiu
H
He-You Du
A
An-Kang Jiang
C
Chunmu Guo
J
Jia-Min Lyu
M
Ming-Hui Sun
Z
Zhao Deng
Y
Yilong Wang
Y
Yu Li
Z
Zhou Jian
陈丽华 cover
陈丽华 (Lihua Chen) *
B
Bao‐Lian Su *
DOI:10.1002/anie.1016593delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
The molecular diffusion behaviors in catalytic systems can influence product selectivity. Such a phenomenon, analogous to shape selectivity in zeolite catalysis, can be referred to as diffusion-selectivity. However, diffusion-selectivity is often neglected, and its connotation has scarcely been revealed. Herein, a tandem diffusion system of n-alkene and i-alkene intermediates in catalytic hydroisomerization was precisely modulated for the demonstration of intermediate diffusion-selective effects. In a series of Pt/zeolite composites, the diffusion distance of n-alkene intermediates from Pt sites towards zeolitic acid sites was prolonged by depositing Pt nanoparticles at the external surface of zeolite, leading to a reduced surface permeability by 20%, which facilitated the dispersion of n-alkene intermediates and mitigated side-reactions. On the contrary, the diffusion length of i-alkene intermediates inside zeolites decreased with reduced channel length, resulting in an enhanced intracrystal diffusion by two orders of magnitude, which avoided the long-time residence in zeolite and thus the secondary cracking of i-alkene intermediates. In this case, a high isomer yield of 62% can be obtained, outperforming the counterparts and those reported in the literature. The proposed diffusion-selective catalysis can be generalized to reactant and product diffusion-selectivity.
Keywords:
diffusion-selective catalysis
hierarchical zeolite
hydroisomerization
metal spatial location
tandem catalysis

Journal

Angewandte Chemie International Edition cover
Angewandte Chemie International Edition
IF:
16.9
Papers:
4.7K
Citations:
368

Organization

W
wuhan university of technology
Scholars:
7.7K
Papers: 2.3K
Citations: 0
S
sinopec
Scholars:
602
Papers: 283
Citations: 0
W
Wuhan University of Technology
Scholars:
3.4W
Papers: 2.4W
Citations: 4.4W
researcher View more organizations