催化作用
双功能
化学
催化氧化
材料科学
化学工程
高分子化学
双功能催化剂
有机化学
异质结
科技与社会
反应条件
硫黄
作者
Zhen-Dong Yu,Peng Cui,Kai-Kai Li,Suhang Xun,Hao-Feng Wu,Yiru Zou,Xiao-Xiao Xing,Xiao-Xiao Yu,Peiwen Wu,Wenshuai Zhu
标识
DOI:10.1016/j.petsci.2026.04.005
摘要
With the increasing need for high-value utilization of diesel components, catalytic oxidative desulfurization (ODS) emerges as an efficient non-hydrogenation approach to desulfurization and utilization of aromatic sulfides. Although TiO 2 is a promising candidate for ODS, the catalytic activity is limited. Herein, with the heterojunction interface formation, a series of TiO 2 /three-dimensional porous carbon nitride catalysts (Ti/3D g-C 3 N 4 ) has been developed for ODS. Notably, the successful construction of the type II heterojunction between TiO 2 and 3D g-C 3 N 4 is confirmed through systematic characterizations. The bandgap is narrowed in the hybrid materials, accelerating the electron transfer from the N to the Ti center, conducive to the activation of hydrogen peroxide in the radical pathway. Also, the emergence of micro-mesoporous pores in 3D g-C 3 N 4 enhances the adsorption mass transfer of aromatic sulfides. The synergistic effect between heterostructures and extended mesopores generates superoxide radicals, attaining >99% adsorption-promoted catalytic oxidation reactivity of aromatic sulfides. The work develops bifunctional heterogeneous materials of efficient adsorption-promoted catalytic oxidation, expanding the development for the high-value utilization of sulfides in diesel fuel.
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