二甲醚
ZSM-5型
纳米结构
焦炭
催化作用
化学工程
乙醚
布朗斯特德-洛瑞酸碱理论
材料科学
纳米颗粒
化学
纳米技术
有机化学
沸石
工程类
作者
Jong Jin Kim,Dong Jae Jeong,Heon Jung,Young Gul Hur,Jin Woo Choung,Joon Hyun Baik,Myung-June Park,Chong-Pyoung Chung,Jong Wook Bae
标识
DOI:10.1016/j.micromeso.2022.112034
摘要
A superior catalyst activity and stability for dimethyl ether (DME) conversion to gasoline-range hydrocarbons (DTG) on a novel hierarchically-structured hybridized [email protected] were verified in terms of the strong interactions of ZSM-5 on the plate-like FER nanostructures, which were prepared by alcohol additive with two organic structure-directing agent (OSDA). The highly active nanostructured [email protected] with a propanol additive showed the closely interconnected and highly dispersed ZSM-5 aggregates on the larger plate-like FER surfaces, which were mainly responsible for the suppressed heavy coke depositions with the help of the closely interconnected ZSM-5 and FER interfaces with abundant acidic sites on 8-membered ring (8-MR) channels. The well-dispersed ZSM-5 nanoparticles on Brønsted acid sites of FER surfaces showed coke-resistant natures for DTG reaction due to the synergy effects of the strong acidic sites of the smaller ZSM-5 particles and larger Brønsted acid sites on the plate-like FER structures.
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