论文著作:
1.Xu, X. L.; Liu, L.; Tong, Y. Y.; Fang, X. Z.; Xu, J. W.; Jiang, D. E.; Wang, X.*, Facile Cr3+-Doping Strategy Dramatically Promoting Ru/CeO2 for Low-Temperature CO2 Methanation: Unraveling the Roles of Surface Oxygen Vacancies and Hydroxyl Groups. ACS Catalysis, 2021, 11 (9), 5762-5775. (催化学科顶尖期刊论文)
2.Feng, X. H.; Xu, J. W.; Xu, X. L.; Zhang, S. J.; Ma, J.; Fang, X. Z.; Wang, X.*, Unraveling the Principles of Lattice Disorder Degree of Bi2B2O7 (B = Sn, Ti, Zr) Compounds on Activating Gas Phase O2 for Soot Combustion. ACS Catalysis, 2021, 11 (19), 12112- 12122. (催化学科顶尖期刊论文)
3.Xu, J.; Zhang, Y.; Xu, X.; Fang, X.; Xi, R.; Liu, Y.; Zheng, R.; Wang, X*., Constructing La2B2O7 ( B = Ti, Zr, Ce) Compounds with Three Typical Crystalline Phases for the Oxidative Coupling of Methane: The Effect of Phase Structures, Superoxide Anions, and Alkalinity on the Reactivity. ACS Catalysis.2019, 9, 4030-4045. (催化学科顶尖期刊论文)
4.Xu, X.; Li, L.; Huang, J.; Jin, H.; Fang, X.; Liu, W.; Zhang, N.; Wang, H.; Wang, X.*, Engineering Ni3+ Cations in NiO Lattice at the Atomic Level by Li+ Doping: The Roles of Ni3+ and Oxygen Species for CO Oxidation. ACS Catalysis .2018, 8 (9), 8033-8045. (催化学科顶尖期刊论文)
5.Xu, J. W; Xi, R; Xiao, Q.Y; Xu, X. L; Li, S. B; Gong, Y; Zhang, Z. X; Fang, X.Z; Wang, X*, Design of strontium stannate perovskites with different fine structures for the oxidative coupling of methane (OCM): Interpreting the functions of surface oxygen anions, basic sites and the structure–reactivity relationship, Journal of Catalysis, 2022,408,465-477. (催化学科顶尖期刊论文)
6.Xu, X. L.; Wang, X.*; Jiang, D. E., Band Gap as a Novel Descriptor for the Reactivity of 2D Titanium Dioxide and its Supported Pt Single Atom for Methane Activation. Journal of Physical Chemistry Letters, 2021, 12 (10), 2484-2488. (物理化学学科顶尖期刊论文,Nature-index)
7.Zhang, H. M.; Zhang, Z. Z.; Liu, Y. M.; Fang, X. Z.; Xu, J. W.; Xu, X. L.; Wang, X.*, Band-Gap Engineering: A New Tool for Tailoring the Activity of Semiconducting Oxide Catalysts for CO Oxidation. Journal of Physical Chemistry Letters, 2021, 9188-9196. (物理化学学科顶尖期刊论文,Nature-index)
8.J. Xu, R. Xi, Y. Gong, X. Xu, Y. Liu, X. Zhong, X. Fang, Wang, X.*, Constructing Y2B2O7 (B = Ti, Sn, Zr, Ce) Compounds to Disclose the Effect of Surface Acidity-Basicity on Product Selectivity for Oxidative Coupling of Methane (OCM), Inorganic Chemistry, 61 (29) (2022) 11419- 11431. (Nature-index)
9.Feng, X. H.; Liu, R.; Xu, X. L.; Tong, Y. Y.; Zhang, S. J.; He, J. C.; Xu, J. W.; Fang, X. Z.; Wang, X.*, Stable CuO/La2Sn2O7 catalysts for soot combustion: Study on the monolayer dispersion behavior of CuO over a La2Sn2O7 pyrochlore support. Chinese Journal of Catalysis, 2021, 42 (3), 396-408. (Top 1区)
10.Xu, X. L.; Tong, Y. Y.; Zhang, J. Y.; Fang, X. Z.; Xu, J. W.; Liu, F. Y.; Liu, J. J.; Zhong, W.; Lebedeva, O. E.; Wang, X.*, Investigation of lattice capacity effect on Cu2+-doped SnO2 solid solution catalysts to promote reaction performance toward NOx-SCR with NH3. Chinese Journal of Catalysis, 2020, 41 (5), 877-888. (Top 1区)
11.Rao, C.; Liu, R.; Feng, X.; Shen, J.; Peng, H.; Xu, X.; Fang, X.; Liu, J.; Wang, X., Three-dimensionally ordered microporous SnO2-based solid solution catalysts for effective soot oxidation. Chinese Journal of Catalysis .2018, 39 (10), 1683- 1694. (Top 1区)
12.Sun, Q.; Xu, X. L.; Peng, H. G.; Fang, X. Z.; Liu, W. M.; Ying, J. W.; Yu, F.; Wang, X., SnO2-based solid solutions for CH4 deep oxidation: Quantifying the lattice capacity of SnO2 using an X-ray diffraction extrapolation method. Chinese Journal of Catalysis .2016, 37 (8), 1293- 1302. (Top 1区)
13.Peng, H. G.; Peng, Y.; Xu, X. L.; Fang, X. Z.; Liu, Y.; Cai, J. X.; Wang, X., SnO2 nano-sheet as an efficient catalyst for CO oxidation. Chinese Journal of Catalysis 2015, 36 ( 11), 2004-2010. (Top 1区)
14.Fang, X. Z.; Xia, L. H.; Li, S. B.; Hong, Z.; Yang, M. H.; Xu, X. L.; Xu, J. W.; Wang, X.*, Superior 3DOM Y2Zr2O7 supports for Ni to fabricate highly active and selective catalysts for CO2 methanation. Fuel, 2021, 293,120460. (Top 1区)
15.Zhang, Z.X; Gong, Y; Xu, J.W; Xiao, Q.Y; Xi, R; Xu, X.L; Fang, X.Z; Wang, X*, Dissecting La2Ce2O7 catalyst to unravel the origin of the surface active sites devoting to its performance for oxidative coupling of methane (OCM), Catalysis Today, 2022, 73, 81, 400-401.
16.Liu, X.F; Xu, J.W; Li, S.B; Chen, Z.J; Xu, X.L; Fang, X.Z; Wang, X*, Using XRD extrapolation method to design Ce-Cu-O solid solution catalysts for methanol steam reforming to produce H2: The effect of CuO lattice capacity on the reaction performance, Catalysis Today, 2022, 402, 15, 228-240.
17.Xi, R.; Xu, J. W.; Zhang, Y.; Zhang, Z. X.; Xu, X. L.; Fang, X. Z.; Wang, X.*, The enhancement effects of BaX2 (X = F, Cl, Br) on SnO2-based catalysts for the oxidative coupling of methane (OCM). Catalysis Today, 2021, 364, 35-45.
18.Zhang, Y.; Xu, J. W.; Xu, X. L.; Xi, R.; Liu, Y. M.; Fang, X. Z.; Wang, X.*, Tailoring La2Ce2O7 catalysts for low temperature oxidative coupling of methane by optimizing the preparation methods. Catalysis Today, 2020, 355, 518-528.
19.Wang, D. X.; Huang, J.; Liu, F.; Xu, X. L.; Fang, X. Z.; Liu, J. J.; Xie, Y. C.; Wang, X.*, Rutile RuO2 dispersion on rutile and anatase TiO2 supports: The effects of support crystalline phase structure on the dispersion behaviors of the supported metal oxides. Catalysis Today, 2020, 339, 220-232.
20.Liu, R.; Feng, X. H.; Xu, X. L.; Duan, J. Y.; Ma, J.; Fang, X. Z.; Xu, J. W.; Wang, X.*, The promotional effects of CsNO3 on Sn-Co-O solid solution for soot combustion: Using XRD extrapolation method to elucidate the structure-reactivity relationship. Applied Surface Science, 2020, 509, 145363. (Top 1区)
21.Rao, C.; Shen, J.; Wang, F.; Peng, H.; Xu, X.; Zhan, H.; Fang, X.; Liu, J.; Liu, W.; Wang, X.*, SnO2 promoted by alkali metal oxides for soot combustion: The effects of surface oxygen mobility and abundance on the activity. Applied Surface Science . 2018, 435, 406-414. (Top 1区)
22.Fang, X.; Lian, J.; Nie, K.; Zhang, X.; Dai, Y.; Xu, X.; Wang, X.*; Liu, W.; Li, C.; Zhou, W., Dry reforming of methane on active and coke resistant Ni/Y2Zr2O7 catalysts treated by dielectric barrier discharge plasma. Journal of Energy Chemistry. 2016, 25 (5), 825-831. (Top 1区)
23.Fang, X.; Xia, L.; Peng, L.; Luo, Y.; Xu, J.; Xu, L.; Xu, X.; Liu, W.; Zheng, R.; Wang, X.*, Ln2Zr2O7 compounds (Ln = La, Pr, Sm, Y) with varied rare earth A sites for low temperature oxidative coupling of methane. Chinese Chemical Letters. 2019, 30 (6), 1141- 1146. (Top 1区)
24.Liu, J; Zeng, L; Xu, X; Xu, J; Fang, X; Bian, Y; Wang, X.*, The critical roles of hydrophobicity, surface Ru0 and active O2-/O22- sites on toluene combustion o Ru/ZSM-5 with varied Si/Al ratios, Physical Chemistry Chemical Physics, 2022, 24 (23), 14209- 14218.
25.Feng, X.H; Zhang, S.J; Liu, R; Ma, J; Xu, X.L; Xu, J.W; Fang, X.Z; Wang, X*, Niobium oxide promoted with alkali metal nitrates for soot particulate combustion: elucidating the vital role of active surface nitrate groups, Physical Chemistry Chemical Physics, 2022, 24, 3250-3258.
26.Xia, L. H.; Fang, X. Z.; Xu, X. L.; Liu, Q. Q.; Yang, M. H.; Xu, J. W.; Gao, Z. X.; Wang, X.*, The promotional effects of plasma treating on Ni/Y2Ti2O7 for steam reforming of methane (SRM): Elucidating the NiO-support interaction and the states of the surface oxygen anions. International Journal of Hydrogen Energy, 2020, 45 (7), 4556-4569.
27.Zhang, X.; Peng, L.; Fang, X.; Cheng, Q.; Liu, W.; Peng, H.; Gao, Z.; Zhou, W.; Wang, X.*, Ni/Y2B2O7 (B=Ti, Sn, Zr and Ce) catalysts for methane steam reforming: On the effects of B site replacement. International Journal of Hydrogen Energy, 2018, 43 ( 17), 8298-8312.
28.Wang, X.; Xiao, L. H.; Peng, H. G.; Liu, W. M.; Xu, X. L., SnO2 nano-rods with superior CO oxidation performance. Journal of Materials Chemistry A, 2014, 2 ( 16), 5616-5619.