论文著作:
1. C. Wang*, L. Liu, Y. Liu, X. Yu, Z. Chen, Y. Han, Y. Wang, Y. Zhao, CO2 reforming of ethane using Ni-La intermetallic sites within a nanocapsule framework, Chemical Engineering Journal, 491 (2024) 152091.
2. C. Wang*, X. Hai, J. Bai, Y. Shi, L. Jing, H. Shi, Z. Chen, Y. Zhao, Elucidating the atomic stacking structure of nickel phyllosilicate catalysts and their consequences on efficient hydrogenation of 1, 4-butynediol to 1, 4-butanediol, Chemical Engineering Journal, 488 (2024) 150723.
3. L. Zhao, X. Yu, R. Wu, H. Li C. Wang*, Y. Zhao*, Effect of the Nature of Ni Species on Hydrogenation of 1,4-Butynediol over Ni/SiO2 Catalysts, ChemCatChem, (2024)
4. C. Wang*, J Li, F Zhang, et al. Heterogeneous synergistic catalysts enable efficient catalytic transfer hydrogenation of nitro compounds via in-situ provided hydrogen[J]. International Journal of Hydrogen Energy, 51 (2024) 1286–1305
5. Y. Liu, L. Liu, X. Yu, Y. Wang, G. Li, L. Li, C. Wang*, CO2 assistant oxidative dehydrogenation of isobutane to isobutene catalyzed by ZnCaZr solid solution, Journal of Fuel Chemistry and Technology, 52 (2024) 1.
6. L. Zhao, C. Wang*, J. Bai, R. Wu, H. Li, Y. Zhao, Hydrogenation of 2-hydroxytetrahydrofuran to 1,4-butanediol over Ni-Fe/SiO2 bimetallic catalysts, Catalysis Letters, 154 (2024) 448-460.
7. C. Wang*, X. Hai, J. Li, Y. Liu, X. Yu, Y. Zhao, Investigation of Ni-Cu-acid multifunctional synergism in NiCu-phyllosilicate catalysts toward the 1,4-butynediol hydrogenation to 1,4-butanediol, Dalton Transactions, 52 (2023) 17981-17992.
8. C. Wang*, C. Jiang, J. Bai, G. Yang, R. Wu, Y. Zhao, T. Xiao, Effect of pore structures on 1,4-butynediol hydrogenation over mesoporous Ni/Al2O3-SiO2 Catalysts, Industrial & Engineering Chemistry Research, 60 (2021) 17840-17849.
9. C. Wang*, H. Wu, X. Jie, X. Zhang, Y. Zhao, B. Yao, T. Xiao, Yolk–shell nanocapsule catalysts as nanoreactors with various shell structures and their diffusion effect on the CO2 reforming of methane, ACS Applied Materials & Interfaces, 13 (2021), 31699−31709.
10. Y. Gao, X. Jie, C. Wang, R.M.J. Jacobs, W. Li, B. Yao, J.R. Dilworth, T. Xiao, P.P. Edwards, One-pot synthesis of Ca oxide-promoted Cr catalysts for the dehydrogenation of propane using CO2, Industrial & Engineering Chemistry Research, 59 (2020) 12645-12656.
11. W. Li, X. Jie, C. Wang, MnOx-promoted, coking-resistant nickel-based catalysts for microwave-initiated CO2 utilization, Industrial & Engineering Chemistry Research, 59 (2020) 6914-6923.
12. 吴昊, 仇媛, 田亚妮, 王长真*, 赵永祥, Ni-SiO2催化剂空间限域维度对CH4-CO2重整反应金属抗积碳能力的影响, 高等学校化学学报, 41 (2020) 2488-2495.
13. C. Wang*, X. Jie, Y. Qiu, Y. Zhao, H.A. Al-Megren, S. Alshihri, P.P. Edwards, T. Xiao, The importance of inner cavity space within Ni@SiO2 nanocapsule catalysts for excellent coking resistance in the high-space-velocity dry reforming of methane, Applied Catalysis B: Environmental, 259 (2019) 118019.
14. C. Wang*, Y. Tian, R. Wu, H. Li, B. Yao, Y. Zhao, T. Xiao, Bimetallic synergy effects of phyllosilicate-derived NiCu@SiO2 catalysts for 1,4-butynediol direct hydrogenation to 1,4-butanediol, ChemCatChem, 11 (2019) 4777-4787.
15. 赵芳; 王长真*; 田亚妮; 王菊霞; 李海涛; 赵永祥, Ni-M/SiO2催化1,4-丁炔二醇加氢的金属助剂效应, 分子催化, 1 (2019) 83-89.
16. 田亚妮; 赵芳; 王长真*; 李海涛; 武瑞芳; 赵永祥,Cu对Ni-Cu/SiO2催化1,4-丁炔二醇加氢性能的影响, 分子催化, 2 (2019) 132-139.
17. C. Wang*, Y. Qiu, X. Zhang, Y. Zhang, N. Sun, Y. Zhao, Geometric design of a Ni@silica nano-capsule catalyst with superb methane dry reforming stability: enhanced confinement effect over the nickel site anchoring inside a capsule shell with an appropriate inner cavity. Catalysis Science & Technology, 8 (2018) 4877-4890.
18. H. Li, Y. Qiu, C. Wang*, et al, Nickel catalysts supported on ordered mesoporous SiC materials for CO2 reforming of methane. Catalysis Today, 317 (2018) 76–85.
19. 仇媛; 王长真*; 李海涛; 胡晓波; 王永钊; 赵永祥, 单分散Co3O4@SiO2核壳催化剂的制备及N2O催化分解性能, 化工学报, 4 (2018) 1493-1499.
20. C. Wang*, Y. Zhang, Y. Wang, Y. Zhao, Comparative studies of non-noble metal modified mesoporous M-Ni-CaO-ZrO2 (M=Fe, Co, Cu) catalysts for simulated biogas dry reforming, Chinese Journal of Chemistry, 35 (2017) 113-120.
21. C. Wang*, N. Sun, N. Zhao, W. Wei, Y. Zhao, Template-free preparation of bimetallic mesoporous Ni-Co-CaO-ZrO2 catalysts and their synergetic effect in dry reforming of methane, Catalysis Today, 281 (2017) 268-275.
22. X. Huang, C. Jia, C. Wang, F. Xiao, N. Zhao, N. Sun, W. Wei, Y. Sun, Ordered mesoporous CoO-NiO-Al2O3 bimetallic catalysts with dual confinement effects for CO2 reforming of CH4, Catalysis Today, 281 (2017) 241-249.
23. C. Wang, N. Sun, W. Wei, Y. Zhao, Carbon intermediates during CO2 reforming of methane over Ni-CaO-ZrO2 catalysts: A temperature-programmed surface reaction study, International Journal of Hydrogen Energy, 41 (2016) 19014-19024.
24. X. Huang, G. Xue, C. Wang, N. Zhao, N. Sun, W. Wei, Y. Sun, Highly stable mesoporous NiO-Y2O3-Al2O3 catalysts for CO2 reforming of methane: effect of Ni embedding and Y2O3 promotion, Catalysis Science & Technology, 6 (2016) 449-459.
25. C. Wang, N. Sun, N. Zhao, W. Wei, Y. Sun, C. Sun, H. Liu, C.E. Snape, Coking and deactivation of a mesoporous Ni-CaO-ZrO2 catalyst in dry reforming of methane: A study under different feeding compositions, Fuel, 143 (2015) 527-535.
26. X. Huang, N. Sun, G. Xue, C. Wang, H. Zhan, N. Zhao, F. Xiao, W. Wei, Y. Sun, Effect of pore geometries on the catalytic properties of NiO-Al2O3 catalysts in CO2 reforming of methane, RSC Advances, 5 (2015) 21090-21098.
27. C. Wang, N. Sun, N. Zhao, W. Wei, J. Zhang, T. Zhao, Y. Sun, C. Sun, H. Liu, C.E. Snape, The properties of individual carbon residuals and their influence on the deactivation of Ni-CaO-ZrO2 catalysts in CH4 dry reforming, ChemCatChem, 6 (2014) 640-648.
28. C. Wang, N. Sun, M. Kang, X. Wen, N. Zhao, F. Xiao, W. Wei, T. Zhao, Y. Sun, The bi-functional mechanism of CH4 dry reforming over a Ni-CaO-ZrO2 catalyst: further evidence via the identification of the active sites and kinetic studies, Catalysis Science & Technology, 3 (2013) 2435-2443.
29. C. Wang, L. Si, H. Li, X. Wen, N. Sun, N. Zhao, W. Wei, Y. Sun, Template-free one-pot synthesis of mesoporous Ni-CaO-ZrO2 catalyst and its application in CH4-CO2 reforming, Journal of Fuel Chemistry and Technology, 41 (2013) 1204-1209.
发明专利:
(1) 王长真; 刘玲技; 李磊; 一种C2+烷烃和二氧化碳向合成气转化反应的催化剂及制备, 2024-4-16, 中国, ZL202211149117.7.
(2) 王长真;李磊;刘玉鹏; 一种异丁烷-CO2脱氢反应的催化剂及其制备方法, 2024-3-15, 中国, ZL202211145320.7.
(3) 王长真;刘玉鹏;李磊;韩耀华; 一种CO2辅助烷烃脱氢的双功能催化剂及其制备和应用, 2023-12-26, 中国, ZL202211287507.0.
(4) 李磊;王长真;刘玉鹏; 一种微胶囊状改性Zn@ZSM-5催化剂及其制备方法和应用, 2023-10-27, 中国, ZL202211248942.2.
(5) 李磊;王长真;刘玉鹏; 一种异丁烷CO2氧化脱氢制异丁烯反应的钒基催化剂及制备, 2023-9-8, 中国, ZL 202211146097.8.
(6) 王长真; 赵永祥; 李海涛; 用于煤基1,4-丁炔二醇低温低压直接加氢催化剂及其制备方法, 2022-5-27, 中国, ZL202011369315.5.
(7) 王长真; 赵永祥; 张因; 武瑞芳; 一种镍-页硅酸盐结构催化剂及其制备方法, 2021-12-31, 中国, ZL202011369314.0.
(8) 王长真; 赵永祥; 李海涛; 田亚妮; 一种镍基核壳结构催化剂及其制备方法和应用, 2021-7-2, 中国, ZL201811563295.8.
(9) 王长真;赵永祥;李海涛;仇媛;周玮; 一种Ni基双金属纳米胶囊催化剂及其制备和应用, 2021-2-2, 中国, ZL201810712246.X.
(10) 王长真; 赵永祥; 王永钊; 李海涛; 一种中低温催化分解N2O的催化剂及制备方法和应用, 2020-7-10, 中国, ZL201710287978.4.
(11) 赵永祥; 王长真; 张因; 李海涛; 一种顺酐加氢制备丁二酸酐的催化剂及其制备方法, 2020-6-12, 中国, ZL201710815713.7.
(12) 王长真; 赵永祥; 王永钊; 仇媛; 李建立; 和进伟; 张方; 林伟; 用于甲烷和二氧化碳重整反应的镍负载碳化硅催化剂及制法和应用, 2020-6-12, 中国, ZL201710815722.6.
(13) 王长真; 赵永祥; 王永钊; 李海涛; 一种双金属钴基催化剂及制备方法和应用, 2020-1-3, 中国, ZL201710287979.9.
(14) 王长真; 王永钊; 赵永祥; 一种包覆纳米材料及其制备方法, 2018-10-19, 中国,ZL201610200597.3.