论文著作:
[1] Y. Shi, J. Wang*, Y.L. Li, Z.Y. Sui, X.F. Xu*. Unveiling the ambient CO2-mediated K2CO3 activation pathway in KOH post-treated carbon adsorbent for exceptional SF6 adsorption. Chemical Engineering Journal, 2025, 520, 166100.
[2] Y. Shi, J. Wang*, W.X. Fu, Y.L. Li, Z.Y. Sui, X.F. Xu*. In-situ activated carbon adsorbents with tailored pore structures for efficient SF6 capture and high-purity recovery. Separation and Purification Technology, 2025, 360, 130978.
[3] J. Wang, Y. Shi, C.X. Rong, Y.L. Li , Z.Y. Sui, X.F. Xu*. Self-activated microporous carbon with tailored pore structures and surface polarity for efficient SF6/N2 and NF3/N2 separation. Carbon, 2025, 244, 120647.
[4] W.X. Fu, J. Wang*, Y. Shi, Y.L. Li, Z.Y. Sui, L. Wang*, Y. Wang*, X.F. Xu*. One-step self-activated carbon adsorbent with synergistic micropore-mesopore structure for exceptional SF6/N2 separation performance. Carbon, 2025, 232, 119839.
[5] K.Z. Tang, Y.L. Li*, X.H. Sun, J. Wang, Z.Y. Sui, X.F. Xu*. Oxygen vacancy induced superior catalytic performance in Nd–Ce@CNTs for N2O–assisted dehydrogenation of ethylbenzene. Journal of Colloid and Interface Science, 2025, 678, 658−668.
[6] W.X. Fu, J. Wang*, Y.L. Li, Z.Y. Sui, X.F. Xu*. Investigation on the pore structure-performance relationship of porous carbon adsorbents for SF6/N2 separation via fine pore modulation, Separation and Purification Technology, 2024, 348, 127788.
[7] W.X. Fu, J. Wang*, Y.L. Li, Z.Y. Sui, B. Xiao, X.F. Xu*. Highly-efficient separation of SF6/N2 and NF3/N2 with record selectivity on one-step synthesized carbon nanosheet. Separation and Purification Technology, 2024, 330, 125496.
[8] Y.P. Li*, X.J. Zhang, J.J. Ni, W.J. Ji, S. Li, Y.L. Li, W. Wen, J. Wang, Z.Y. Sui*, X.F. Xu*. Design of a highly-stable cobalt (II) porous framework based on aromatic stacking strategy for efficient SF6 capture and SF6/N2 mixture separation. Separation and Purification Technology, 2024, 343, 126995.
[9] Y.P. Li*, J.J. Ni, S. Li, J. Wang, Z.Y. Sui*, X.F. Xu*. Rational pore-window size control in three Cu-MOFs with different pore environments for efficient capture of the greenhouse gas SF6. Journal of Solid State Chemistry, 2024, 329, 124443.
[10] Y.L. Li*, W.J. Du, J. Wang, Z.Y. Sui, X.F. Xu*. Co, Zn-coordinated ZIF-derived bimetal encapsulated N-doped CNTs for highly effective oxidation of benzyl alcohol at room temperature. New Journal of Chemistry, 2024, 48, 11844-11853.
[11] X.H. Sun, Y.L. Li*, K.Z. Tang, J. Wang, Z.Y. Sui, X.F. Xu*. Promotional effect and mechanism of SiO2 on Cr-Al2O3 catalysts for N2O-assisted oxidative dehydrogenation of ethylbenzene. Journal of Environmental Chemical Engineering, 2024, 12, 112454.
[12] J. Wang, W.X. Fu, L.M. Wang, Y.L. Li, Y.P. Li, Z.Y. Sui, X.F. Xu*. Modulation of pore structure in a microporous carbon for enhanced adsorption of perfluorinated electron specialty gases with efficient separation. Chemical Engineering Journal, 2023, 477, 147128.
[13] W.J. Du, X.H. Sun, K.Z. Tang, L.M. Wang, Z.Y. Sui, Y.L. Li*, X.F. Xu*. Cu, Zn-coordinated ZIF-derived bimetal N-doped carbon frameworks for aerobic alcohol oxidation. New Journal of Chemistry, 2023, 47, 17384-17392.
[14] X.H. Sun, Z.Y. Liu, Y.L. Li*, K.Z. Tang, J. Wang, Z.Y. Sui, X.F. Xu*. Highly active catalysts of mesoporous Ce-Cr-mAl2O3 and reaction mechanism for N2O-assisted oxidative dehydrogenation of ethylbenzene to styrene. Journal of Environmental Chemical Engineering, 2023, 11, 109907.
[15] Z.Y. Liu, X.H. Sun, Y.L. Li*, Z.Y. Sui, X.F. Xu*. A study on the catalytic role of Ce-Co species and coke deposited on ordered mesoporous Al2O3 in N2O-assisted oxidative dehydrogenation of ethylbenzene. Journal of Environmental Chemical Engineering, 2022, 10, 108609.
[16] Z.Y. Liu, Y.L. Li*, X.H. Sun, Z.Y. Sui, X.F. Xu*. Superior performance of K/Co2AlO4 catalysts for the oxidative dehydrogenation of ethylbenzene to styrene with N2O as an oxidant. Journal of Industrial and Engineering Chemistry, 2022,112, 67-75.
[17] Z.Y. Liu, Y.L. Li*, Q. Gao, Z.Y. Sui, X.F. Xu*. Promotional role of Ceria in N2O assisted selective oxidative dehydrogenation of ethylbenzene over Ce-Co2AlO4 spinel catalysts, Journal of Environmental Chemical Engineering, 2021, 9, 105512.
[18] T.Q. Zhao, Y.L. Li, Q. Gao, Z.Y. Liu, X.F. Xu*. Potassium promoted Y2O3-Co3O4 catalysts for N2O decomposition. Catalysis Communications, 2020, 137, 105948.
[19] Q. Gao, Z.Y. Liu, Y.L. Li, Z.Y. Sui, W.P. Liao, X.F. Xu*. NF3 decomposition without water over Cr2O3 coated-Al2O3 reagents. Journal of Environmental Chemical Engineering, 2020, 8, 104166.
[20] Q. Gao, Y.N. Wang, Y.F. Pan, Y.L. Li, Z.Y. Sui, X.F. Xu*. NF3 decomposition over V2O5, Fe2O3 and Co3O4 coated-Al2O3 reagents: the effect of promoter loadings on reactivity. Journal of Environmental Chemical Engineering, 2020, 8,103890.