论文著作:
[1] G.H. Li, H. Wang, Q. Li, X.X. Zhang, Y.C. Qin, Y.F. Bi, L.J. Song, Regulation of the nature and sites of copper species in CuNaY zeolites for ethylene and ethane separation, New Journal of Chemistry, 2023, 47: 5650-5658.
[2] Li Zhang, Qingxun Hu, Yucai Qin, Honghai Liu, Huangfei Liu, Gengzhen Cao, Xionghou Gao, Lijuan Song, Zhaolin Sun, Optimizing the accessibility of zeolite Y on FCC catalyst to improve heavy oil conversion capacity, Microporous and Mesoporous Materials, 2023, 359: 112627.
[3] Yifeng Liu, Zhiqiang Liu, Yu Hui, Liang Wang, Jian Zhang, Xianfeng Yi, Wei Chen, Chengtao Wang, Hai Wang, Yucai Qin, Lijuan Song, Anmin Zheng, Feng-Shou Xiao, Rhodium nanoparticles supported on silanol-rich zeolites beyond the homogeneous Wilkinson’s catalyst for hydroformylation of olefins, Nature Communications, 2023 14: 2531.
[4] Wei Chen, Mengdi Huang, Xianfeng Yi, Yu Hui, Pan Gao, Guangjin Hou, Alexander G. Stepanov, Yucai Qin, Lijuan Song, Shang-Bin Liu, Zhongfang Chen, Anmin Zheng, Protonated methylcyclopropane is an intermediate providing complete 13C-label scrambling at C4 olefin isomerization in zeolite, 2023, 3: 100503.
[5] J. Zheng, L. Huang, P.P. Wei, Q. Li, X.L. Fan, Y.C. Qin, L.J. Song, Molecular Insights into Adsorption and Diffusion Mechanism of N-Hexane in MFI Zeolites with Different Si-to-Al Ratios and Counterions, Catalysts, 12 (2022).
[6] L. Zhang, Q.X. Hu, Y.C. Qin, H.H. Liu, X.Z. Zhao, X.H. Gao, L.J. Song, Z.L. Sun, Optimized Zeolite Distribution of FCC Catalysts for Promoting Heavy-Oil Catalytic Cracking, Industrial & Engineering Chemistry Research, 2022, 61: 11628-11635.
[7] B.F. Zhang, G.Z. Li, S.B. Liu, Y.C. Qin, L.J. Song, L. Wang, X.W. Zhang, G.Z. Liu, Boosting Propane Dehydrogenation over PtZn Encapsulated in an Epitaxial High-Crystallized Zeolite with a Low Surface Barrier, Acs Catalysis, 2022, 12: 1310-1314.
[8] P.P. Wei, J. Zheng, Q. Li, Y.C. Qin, L.J. Song, The role of silver in 13-atom palladium-silver bimetallic clusters: nucleation and growth, structural evolution, electron interaction, Journal of Materials Science, 2022, 57: 8180-8194.
[9] P.P. Wei, J. Zheng, Q. Li, Y.C. Qin, H.M. Guan, D.P. Tan, L.J. Song, The modulation mechanism of geometric and electronic structures of bimetallic catalysts: Pd13-mAgm (m=0-13) clusters for acetylene semi-hydrogenation, Inorganic Chemistry Frontiers, 2022, 9: 5169-5180.
[10] H. Wang, W. Mao, K. Wang, Y.C. Qin, Q. Li, C. Peng, J.F. Wang, Z.L. Sun, L.J. Song, Insight into the Effects of Mass Transfer Performance of Y Zeolite on the Product Selectivity of VGO Hydrocracking, Industrial & Engineering Chemistry Research, 2022, 61: 18270-18281.
[11] J. Shi, Y.J. Du, W.R. He, G.L. Zhao, Y.C. Qin, L.J. Song, J. Hu, Y. Guan, J.F. Zhu, C.M. Wang, J.W. Teng, Z.K. Xie, Insights into the Effect of the Adsorption Preference of Additives on the Anisotropic Growth of ZSM-5 Zeolite, Chemistry-a European Journal, 28 (2022).
[12] W.L. Peng, F.Q. Liu, X.F. Yi, S.G. Sun, H. Shi, Y. Hui, W. Chen, X. Yu, Z.Q. Liu, Y.C. Qin, L.J. Song, A.M. Zheng, Structural and Acidic Characteristics of Multiple Zr Defect Sites in UiO-66 Metal-Organic Frameworks, Journal of Physical Chemistry Letters, 2022, 13: 9295-9302.
[13] P.Y. Liu, S.C. Zhao, M.Y. Zhang, L.J. Song, C.P. Wang, F. Yu, Q.T. Meng, Z.Q. Zhang, Y.P. He, Pd-Catalyzed ?-Acetoxylation of Alkylamides: Structural Influence ofDirecting Groups, Journal of Organic Chemistry, 2022, 87: 6378-6386.
[14] R.Z. Jin, K. Ma, S.T. Xu, Y.X. Wei, L.J. Song, Z.J. Li, P.H. Zhang, Y.F. Wang, J.F. Wang, Z.Z. Zhang, X.X. Ma, H.B. Hu, C.Y. Dai, X.W. Guo, Effect of acid distribution and pore structure of ZSM-5 on catalytic performance, Reaction Chemistry & Engineering, 2022, 7: 2152-2162.
[15] Y. Hui, J. Zheng, Y.C. Qin, X.H. Du, Y. Zu, J.B. Yang, S.H. Sun, X.H. Gao, Z.L. Sun, L.J. Song, Insight into the nature and the transformation of the hydroxyl species in the CeY zeolite, Inorganic Chemistry Frontiers, 2022, 9: 1354-1365.
[16] K. He, S.J. Liu, G.Y. Zhao, Y.C. Qin, Y.F. Bi, L.J. Song, Ni-W Catalysts Supported on Mesoporous SBA-15: Trace W Steering CO2 Methanation, Chemical Research in Chinese Universities, 2022, 38: 1504-1511.