论文著作:
1. Liang, T.; Chen, J.; Qin, Z.; Li, J.; Wang, P.; Wang, S.; Wang, G.; Dong, M; Fan, W.; Wang, J., Conversion of Methanol to Olefins over H-ZSM-5 Zeolite: Reaction Pathway is Related to the Framework Aluminum Siting. ACS Catal. 2016, 6, 7311-7325. (IF=13.084, cited by 224, ESI Highly cited)
2. Chen, G.1; Liang, T.1; Pilsun, Y.1; Fadaeerayeni, S.; Sarnello, E.; Li, T.; Liao, P.; Xiang, Y., Catalytic Light Alkanes Conversion through Anaerobic Ammodehydrogenation. ACS Catal. 2021, 11, 7987-7995. (IF=13.084, co-first author)
3. Liu, Y.; Li, T.; Qiao, S.; Heng, Z.; Zhao, T.; Wu, H.; Xiong, T.; Li, J.; Yao, X.; Long, L.; Xiang, Y.; Liu, Q.; Lu, L.; Liang, T.*; Chen, J.*; Jin, F.*, Ethane Ammoxidation over Sn/H-Zeolite Catalysts: towards the Factors Contributing to the Yield of Acetonitrile, ACS Appl. Mater. Interfaces 2023, 15, 25604–25614. (IF= 10.383, first corresponding author)
4. Liang, T.; Chen, J.; Qin, Z.; Wang, S.; Wang, P.; Jin, F.; Dong, M.; Wang, J.; Fan, W., Insight into induction period of methanol conversion reaction: Reactivity of ethene-precursors over H-ZSM-5 zeolite is independent of Brϕnsted acid site density, Fuel 2023, 332, 126062. (IF=8.035)
5. Liang, T.; Chen J.; Qin Z.; Wang S.; Wang P.; Qin Z.; Jin F.; Dong M.; Wang J.; Fan W., Conversion of methanol to hydrocarbons over H-MCM-22 zeolite: deactivation behaviours related to acid density and distribution, Catal. Sci. Technol. 2022, 12, 6268–6284. (IF=6.177)
6. Liang, T.; Liu, X.; He, Y.; Barbosa, R.; Chen, G.; Fan, W.; Xiang, Y., Highly selective Sn/HZSM-5 catalyst for ethane ammoxidation to acetonitrile and ethylene. Appl. Catal. A 2021. 610, 117942-117950. (IF=5.706)
7. Chen, J.; Huang, W.; Bao, S.; Zhang, W.; Liang, T.*; Zheng, S.; Yi, L.; Guo, L.; Wu, X., A review on the characterization of metal active sites over Cu-based and Fe-based zeolites for NH3-SCR, RSC Adv. 2022, 27746-27765. (IF=4.036, corresponding author)
8. Liang, T.; Fadaeerayeni, S.; Shan, J.; Li T.; Wang, H.; Cheng, J.; Toghiani, H.; Xiang, Y., Ethane Aromatization over Zn-HZSM-5: Early Stage Acidity/Performance Relationships and Deactivation Kinetics. Ind. Eng. Chem. Res. 2019. 58, 17699-17708. (IF=3.720, cited by 21)
9. Liang, T.; Toghiani, H.; Xiang, Y., Transient Kinetic Study of Ethane and Ethylene Aromatization over Zn-ZSM-5 catalyst. Ind. Eng. Chem. Res. 2018, 57, 15301-15309. (IF=3.720, cited by 29)
10. Chen, J.; Liang, T.; Li, J.; Wang, S.; Qin, Z.; Wang, P.; Huang, L.; Fan, W.; Wang, J., Regulation of Framework Aluminum Siting and Acid Distribution in H-MCM-22 by Boron Incorporation and Its Effect on the Catalytic Performance in Methanol to Hydrocarbons. ACS Catal. 2016, 6, 2299-2313. (IF=13.084, cited by 93, ESI Highly cited)
11. Chen, J.; Peng, G.; Liang, T.; Zhang, W.; Zheng, W.; Zhao, H.; Guo, L.; Wu, X., Catalytic Performances of Cu/MCM-22 Zeolites with Different Cu Loadings in NH3-SCR. Nanomaterials 2020, 10, 2170. (IF=5.076, cited by 11)
12. Meng, X.; Wu, G.; Cheng, X.; Wang, J.; Peng, A.; Liang, T.; Jin, F.*, Influence of the Au-Ti Active Site of the Titanosilicate MWW Zeolite on the Catalytic Activity of Ethane Dehydrogenation in the Presence of O2, Langmuir 2023, 39, 4427-4438. (IF=4.331)
13. Wang, S.; Chen, Y.; Wei, Z.; Qin, Z.; Liang, T.; Dong, M.; Li, J.; Fan, W.; Wang, J., Evolution of aromatic species in the supercages and its effect on the conversion of methanol to olefins over H-MCM-22 zeolite: a density functional theory study. J. Phys. Chem. C 2016, 120, 27964–27979. (IF=4.126, cited by 18)
14. Jin, F.; Cheng, X.; Wan, T.; Gong, J.; Liang, T.; Wu, G., The role of modified manganese perovskite oxide for selective oxidative dehydrogenation of ethane: Not only selective H2 combustion but also ethane activation. Catal. Commun. 2022, 172, 106531. (IF=3.510)
15. Liu, X.; Liang, T.; Barbosa, R.; Chen, G.; Toghiani, H.; Xiang, Y., Ammoxidation of Ethane to Acetonitrile and Ethylene: Reaction Transient Analysis for the Co/HZSM-5 Catalyst. ACS Omega 2020, 5, 1669-1678. (IF=3.512, cited by 10)