Wang Huan, Du Guo, Chen Shaohua, Su Zhipeng, Sun Pingchuan, Chen Tiehong
Institute of New Catalytic Materials Science, School of Materials Science and Engineering, Key Laboratory of Advanced Energy Materials Chemistry (MOE), Nankai University, Tianjin 300350, PR China.
Key Laboratory of Functional Polymer Materials (MOE), College of Chemistry, Nankai University, Tianjin 300071, PR China.
J Colloid Interface Sci. 2022 Jul;617:32-43. doi: 10.1016/j.jcis.2022.02.121. Epub 2022 Feb 28.
As an important heterogeneous catalyst, Titanium Silicalite-1 (TS-1) zeolite has been widely applied in various catalytic processes. Here, hierarchical TS-1 single-crystals were successfully synthesized by a steam-assisted crystallization strategy using hierarchically porous titanium-containing silica (Ti-NKM-5) as a precursor. Due to the presence of large mesopores (10-40 nm), the microporous structure-directing agents penetrated the interstitial structure of silica particles, inducing the dissolution and crystallization process. During crystallization, the generated nanocrystals grew together to form a hierarchical structure. Titanium was fully incorporated into the zeolite framework, and no extra-framework anatase was formed. Compared with the traditional microporous TS-1 zeolite, the synthesized hierarchical TS-1 single-crystal exhibited superior catalytic performance in oxidative desulfurization (ODS) of dibenzothiophene (DBT) and 4, 6-dimethyl dibenzothiophene (4, 6-DMDBT) owing to the hierarchically porous and anatase-free structure. The recycling test revealed the durability of the obtained hierarchical TS-1 catalyst under moderate reaction conditions.
作为一种重要的多相催化剂,钛硅分子筛-1(TS-1)已广泛应用于各种催化过程。在此,以分级多孔含钛二氧化硅(Ti-NKM-5)为前驱体,通过蒸汽辅助结晶策略成功合成了分级TS-1单晶。由于存在大孔(10-40纳米),微孔结构导向剂渗透到二氧化硅颗粒的间隙结构中,引发了溶解和结晶过程。在结晶过程中,生成的纳米晶体生长在一起形成分级结构。钛完全掺入沸石骨架中,未形成额外的骨架锐钛矿。与传统的微孔TS-1沸石相比,合成的分级TS-1单晶由于其分级多孔且无锐钛矿结构,在二苯并噻吩(DBT)和4,6-二甲基二苯并噻吩(4,6-DMDBT)的氧化脱硫(ODS)中表现出优异的催化性能。循环测试表明,所制备的分级TS-1催化剂在温和反应条件下具有耐久性。