Zhuang Junze, Qin Tianjiao, Qi Wenqing, Cao Lan, Yao Zhenhua, Hu Maocong, Bing Liancheng, Wang Yishan, Deng Kangqing, Liu Xuguang
College of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
School of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
JACS Au. 2025 Jul 1;5(7):3374-3386. doi: 10.1021/jacsau.5c00468. eCollection 2025 Jul 28.
The highly efficient synthesis of titanium silicate-1 (TS-1) zeolite remains a challenge. In this work, solid boron free radicals within hexagonal boron nitride (-BN) were employed to accelerate the crystallization of TS-1. With the introduction of -BN (1-10 wt % of SiO) into the traditional hydrothermal synthesis system, TS-1 zeolite can be obtained within 6-24 h with yields of 90-96%. The geometric matching between -BN layered structure and the TS-1 crystal plane was observed by both TEM analysis and theoretical modeling, while solid-state free radicals generated at the edges of -BN with defects were evidenced by aberration-corrected transmission electron microscopy and EPR analysis. initio molecular dynamics simulation further indicated that the free radicals in -BN promoted the transformation of orthosilicic acid (HSiO) into metasilicic acid (HSiO) with a negative LUMO, which is beneficial for the rapid dimerization reaction as the zeolite structural species. The resulting TS-1 zeolite then bonded with the -BN as -BN/TS-1 heterostructure, which exhibited enhanced catalytic performance for the propane dehydrogenation reaction, while the promotion mechanism was revealed by time-dependent density functional theory. This work developed an effective strategy to accelerate zeolite production with the assistance of solid free radicals, while providing a molecular-level understanding of the synthesis process.
钛硅分子筛-1(TS-1)沸石的高效合成仍然是一个挑战。在这项工作中,利用六方氮化硼(-BN)中的固态硼自由基来加速TS-1的结晶。通过将-BN(占SiO的1-10 wt%)引入传统水热合成体系,可在6-24小时内获得TS-1沸石,产率为90-96%。通过透射电子显微镜(TEM)分析和理论建模观察到-BN层状结构与TS-1晶面之间的几何匹配,而通过像差校正透射电子显微镜和电子顺磁共振(EPR)分析证明了在有缺陷的-BN边缘产生的固态自由基。从头算分子动力学模拟进一步表明,-BN中的自由基促进了具有负最低未占分子轨道(LUMO)的原硅酸(HSiO)向偏硅酸(HSiO)的转化,这有利于作为沸石结构物种的快速二聚反应。所得的TS-1沸石然后与-BN结合形成-BN/TS-1异质结构,其对丙烷脱氢反应表现出增强的催化性能,同时通过含时密度泛函理论揭示了促进机制。这项工作开发了一种在固态自由基辅助下加速沸石生产的有效策略,同时提供了对合成过程的分子水平理解。