论文著作:
(1)Ke Zheng, Yufeng Li, Bing Liu, Feng Jiang, Yuebing Xu,Xiaohao Liu*, Ti-doped CeO2 Stabilized Single-Atom Rhodium Catalyst for Selective and Stable CO2 Hydrogenation to Ethanol,Angewandte Chemie International Edition, 2022, 61, e2022 Doi: https://doi.org/10.1002/anie.202210991.
(2)Bing Liu, Mengyuan Huang, Zhihao Fang, Lian Kong, Yuebing Xu, Zaijun Li,Xiaohao Liu*, Breaking the scaling relationship in selective oxidation of methane via dynamic Metal-Intermediate Coordination-Induced modulation of reactivity descriptors on an atomically dispersed Rh/ZrO2 catalyst,Journal of Catalysis, 2022, 416, 48-84.
(3)杨大伟,刘小浩,曲景平,技术人才两手抓化工行业节能降碳在路上,前沿科学,2022,16(2),17-22.
(4)Wanqiu Li, Yufeng Li, Zhiqiang Liu, Heng Zhang, Feng Jiang, Bing Liu, Yuebing Xu, Anmin Zheng,Xiaohao Liu*, Pore-Confined and Diffusion-Dependent Olefin Catalytic Cracking for the Production of Propylene over SAPO Zeolites,Industrial & Engineering Chemistry Research, 2022, 61, 23, 7760–7776.
(5)Feng Jiang, Feng Jiang, Shanshan Wang, Yuebing Xu, Bing Liu,Xiaohao Liu*, Catalytic Activity for CO2 Hydrogenation is Linearly Dependent on Generated Oxygen Vacancies over CeO2-Supported Pd Catalysts,ChemCatChem, 2022, 14(16), e202200422.
(6)Zhihao Fang, Mengyuan Huang, Bing Liu, Jie Chen, Feng Jiang, Yuebing Xu,Xiaohao Liu*, Insights into Fe Species Structure-Performance Relationship for Direct Methane Conversion toward Oxygenates over Fe-MOR Catalysts,ChemCatChem, 2022, 14(13), e202200218.
(7)Feng Jiang, Yu Yang, Li Wang, Yufeng Li, Zhihao Fang, Yuebing Xu, Bing Liu,Xiaohao Liu*, Dependence of copper particle size and interface on methanol and CO formation in CO2 hydrogenation over Cu@ZnO catalysts,Catalysis Science & Technology, 2022, 12, 551-564.
(8)Helong Sun, Lufa Hu, Zhangyang Li, Junyu Lang, Chunling Wang,Xiaohao Liu*, Yun Hang Hu, Fangming Jin, Ultra-stable Molecular Interface SiW12Ox/TiO2 Catalyst Derived from Keggin-type Polyoxometalates for Photocatalytic Conversion of Methane to Oxygenates,ChemCatChem, 2022, 14(10), e202200001.
(9)李晚秋,李玉峰,刘冰,胥月兵,刘小浩,ZSM-5分子筛形貌与尺寸对己烯催化裂解制丙烯的影响,天然气化工-C1化学与化工,2022,47(4), 113-119.
(10)Wenjin Hu, Yuebing Xu, Jian Xin, Bing Liu, Feng Jiang,Xiaohao Liu*, Stable co-production of olefins and aromatics from ethane over Co2+-exchanged HZSM-5 zeolite,Catalysis Science & Technology, 2022, 12, 3716-3726.
(11)Zhihao Fang, Mengyuan Huang, Bing Liu, Feng Jiang,Yuebing Xu,Xiaohao Liu*, Identifying the crucial role of water and chloride for efficient mild oxidationof methane to methanol over a [Cu2(μ-O)]2+-ZSM-5 catalyst,Journal of Catalysis, 2022, 405, 1-14.
(12)Lei Tang, Bai-Chuan Zhou, Xi Liu, Shuang Xu, Jia Wang, Wei Xu,Xiaohao Liu*, Liwei Chen, An-Hui Lu*,Selective synthesis of the core–shell structured catalyst χ-Fe5C2 surrounded by nanosized Fe3O4 for the conversion of syngas to liquid fuels,Catalysis Science & Technology, 2022, 12, 1978-1985.
(13)Ruiyi Li, Keyang He, Pengwu Xu, Wendong Wang, Nana Li, Haiyan Zhu, Zaijun Li *,Xiaohao Liu*,Synthesis of a ruthenium–graphene quantum dot-graphene hybrid as a promising single-atom catalyst for electrochemical nitrogen reduction with ultrahigh yield rate and selectivity,Journal of Material Chemistry A, 2021, 9, 24582-24589.
(14)Yuebing Xu, Wenda Yu, Hao Zhang, Jian Xin, Xiaohui He, Bing Liu, Feng Jiang,Xiaohao Liu*, Suppressing C–C Bond Dissociation for Efficient Ethane Dehydrogenation over the Isolated Co(II) Sites in SAPO-34,ACS Catalysis, 2021, 11, 13001-13019.
(15)余文达,胥月兵,陈梦瑶,姜枫,刘冰,刘小浩, Fe前驱体离子价态对制备Fe/HZSM-5催化剂的甲烷芳构化催化性能的影响,石油学报(石油加工), 2021, 6(37), 1277-1286.
(16)Bing Liu, Jie Liu, Lei Xin, Yuebing Xu, Feng Jiang,Xiaohao Liu*, Unraveling Reactivity Descriptors and Structure Sensitivity in Low-Temperature NH3-SCR Reaction over CeTiOx Catalysts: A Combined Computational and Experimental Study,ACS Catalysis, 2021, 11, 7613-7636.
(17)Yuebing Xu, Xiao Yuan, Mengyao Chen, Anliang Dong, Bing Liu, Feng Jiang, Shijian Yang,Xiaohao Liu*, Identification of atomically dispersed Fe-oxo species as new active sites in HZSM-5 for efficient non-oxidative methane dehydroaromatization,Journal of Catalysis, 2021, 396, 224-241.
(18)Yang Lou#, Feng Jiang#, Wen Zhu, Li Wang, Tingyi Yao, Shanshan Wang, Bo Yang, Bing Yang, Yongfa Zhu*,Xiaohao Liu*, CeO2 supported Pd dimers boosting CO2 hydrogenation to ethanol,Applied Catalysis B: Environmental, 2021, 291, 120122. (#These authors contributed equally)
(19)Yufeng Li#, Bing Liu#, Jie Liu, Ting Wang, Yu Shen, Ke Zheng, Feng Jiang, Yuebing Xu,Xiaohao Liu*, Tuning Lewis acidity of ZrO2 for efficient activation of CH4 and CO2 into acetic acid,New Journal of Chemistry, 2021, 45, 8978-8985. (#These authors contributed equally)
(20)Yufeng Li, Pengju Yang, Feng Jiang, Bing Liu, Yuebing Xu,Xiaohao Liu*, Effect of potassium on GO-modified large microspheres for the production of α-olefins,Journal of Fuel Chemistry and Technology, 2021, 49(7), 933-944.
(21)Ting Wang#, Yuebing Xu#, Yufeng Li#, Lei Xin, Bing Liu, Feng Jiang,Xiaohao Liu*, Sodium-Mediated Bimetallic Fe–Ni Catalyst Boosts Stable and Selective Production of Light Aromatics over HZSM-5 Zeolite,ACS Catalysis, 2021, 11, 3553-3574. (#These authors contributed equally)
(22)Feng Jiang, Shanshan Wang, Jiao Zheng, Bing Liu, Yuebing Xu,Xiaohao Liu*, Fischer-Tropsch synthesis to lower α-olefins over cobalt-based catalysts: Dependence of the promotional effect of promoter on supports,Catalysis Today, 2021, 369, 158-166.
(23)Feng Jiang, Shanshan Wang, Bing Liu, Jie Liu, Li Wang, Yang Xiao, Yuebing Xu,Xiaohao Liu*, Insights into the Influence of CeO2 Crystal Facet on CO2 Hydrogenation to Methanol over Pd/CeO2 Catalysts,ACS Catalysis, 2020, 10, 11493-11509.
(24)Yuebing Xu, Mengyao Chen, Ting Wang, Bing Liu, Feng Jiang,Xiaohao Liu*, Probing cobalt localization on HZSM-5 for efficient methane dehydroaromatization catalysts,Journal of Catalysis, 2020, 387, 102-118.
(25)Yuebing Xu, Ting Wang, Chengming Shi, Bing Liu, Feng Jiang,Xiaohao Liu*, Experimental Investigation on the Two-Sided Effect of Acidic HZSM-5 on the Catalytic Performance of Composite Fe-Based Fischer–Tropsch Catalysts and HZSM-5 Zeolite in the Production of Aromatics from CO2/H2 ,Industrial & Engineering Chemistry Research, 2020, 59, 8581-8591.
(26)Yuebing Xu#, Mengyao Chen#, Bing Liu, Feng Jiang,Xiaohao Liu*, CH4 conversion over Ni/HZSM-5 catalyst in the absence of oxygen: decomposition or dehydroaromatization?Chemical Communications, 2020, 56, 4396-4399. (#These authors contributed equally)
(27)Xuejin Fang#, Bing Liu#, Kun Cao, Pengju Yang, Qi Zhao, Feng Jiang, Yuebing Xu, Rong Chen*,Xiaohao Liu*, Particle-Size-Dependent Methane Selectivity Evolution in Cobalt-Based Fischer–Tropsch Synthesis,ACS Catalysis, 2020, 10, 4, 2799-2816. (#These authors contributed equally)
(28)Pengju Yang#, Feng Jiang#, Bing Liu, Yuebing Xu,Xiaohao Liu*, Structural evolution of large Fe3O4 microspheres on graphene oxide for efficient conversion of syngas into α-olefins,New Journal of Chemistry, 2020, 44, 4987-4991. (#These authors contributed equally)
(29)Qi Zhao, Bing Liu*, Yuebing Xu, Feng Jiang,Xiaohao Liu*, Insight into the active site and reaction mechanism for selective oxidation of methane to methanol using H2O2 on a Rh1/ZrO2 catalyst,New Journal of Chemistry, 2020, 44, 1632-1639.
(30)Mengyao Chen, Yang Song, Bing Liu,Xiaohao Liu, Yuebing Xu*, Zhan-Guo Zhang*, Experimental investigation of the promotion effect of CO on catalytic behavior of Mo/HZSM-5 catalyst in CH4 dehydroaromatization at 1073 K,Fuel, 2020, 262, 116674.
(31)Ting Wang, Mengyao Chen,Xiaohao Liu*, Zhan-guo Zhang*, Yuebing Xu*, Distinguishing external and internal coke depositions on micron-sized HZSM-5 via catalyst-assisted temperature-programmed oxidation,New Journal of Chemistry, 2020, 43, 13938-13946.
(32)Jinglin Yang, Xuejin Fang, Yuebing Xu,Xiaohao Liu*, Investigation of the deactivation behavior of Co catalysts in Fischer–Tropsch synthesis using encapsulated Co nanoparticles with controlled SiO2 shell layer thickness,Catalysis Science & Technology, 2020, 10, 1182-1192.
(33)Changji Wang, Feng Jiang, Guangzheng Zuo, Bing Liu, Hanxu Li*,Xiaohao Liu*, Remarkably enhanced performance of the metathesis reaction of ethylene and 1-butene to propene using one-step prepared W-MCM-41 catalysts,RSC Advances, 2019, 9, 40618-40627.
(34)Zhihao Fang#, Haruno Murayama#, Qi Zhao#, Bing Liu, Feng Jiang, Yuebing Xu, Makoto Tokunaga,Xiaohao Liu*, Selective mild oxidation of methane to methanol or formic acid on Fe-MOR catalysts,Catalysis Science & Technology, 2019, 9, 6946-6956. (#These authors contributed equally)
(35)Ting Wang, Yuebing Xu, Chengming Shi, Feng Jiang, Bing Liu,Xiaohao Liu*, Direct production of aromatics from syngas over a hybrid FeMn Fischer–Tropsch catalyst and HZSM-5 zeolite: local environment effect and mechanism-directed tuning of the aromatic selectivity,Catalysis Science & Technology, 2019, 9, 3933-3946.
(36)Bing Liu, Wenping Li, Yuebing Xu, Qiang Lin, Feng Jiang,Xiaohao Liu*, Insight into the intrinsic active site for selective production of light olefins in cobalt-catalyzed Fischer-Tropsch Synthesis,ACS Catalysis, 2019, 9, 8, 7073-7089.
(37)Yan Xu, Qiang Lin, Bing Liu, Feng Jiang, Yuebing Xu,Xiaohao Liu*, A Facile Fabrication of Supported Ni/SiO2 Catalysts for Dry Reforming of Methane with Remarkably Enhanced Catalytic Performance,Catalysts, 2019, 9(2), 183.
(38)Qiang Lin, Bing Liu, Feng Jiang, Xuejin Fang, Yuebing Xu,Xiaohao Liu*, Assessing the formation of cobalt carbide and its catalytic performance under realistic reaction conditions and tuning product selectivity in cobalt-based FTS reaction,Catalysis Science & Technology, 2019, 9, 3238-3258.
(39)Xin Zhang, Qiang Lin, Bing Liu, Jiao Zheng, Feng Jiang, Yuebing Xu,Xiaohao Liu*, Unravelling the structure-performance relationship over iron-based Fischer-Tropsch synthesis by depositing the iron carbonyl in syngas on SiO2 in a fixed-bed reactor,Applied Catalysis A: General, 2019, 572, 197-209.
(40)Yuebing Xu, Chengming Shi, Bing Liu, Ting Wang, Jiao Zheng, Wenping Li, Dapeng Liu,Xiaohao Liu*, Selective production of aromatics from CO2 ,Catalysis Science & Technology, 2019, 9, 593-610.
(41)Bing Liu#, Wenping Li#, Jiao Zheng, Qiang Lin, Xin Zhang, Junwei Zhang, Feng Jiang, Yuebing Xu,Xiaohao Liu*, CO2 formation mechanism in Fischer-Tropsch synthesis over iron-based catalysts: A combined experimental and theoretical study,Catalysis Science & Technology, 2018, 8, 5288-5301. (#These authors contributed equally)
(42)Bing Liu, Shunshun Geng, Jiao Zheng, Xinli Jia, Feng Jiang,Xiaohao Liu*, Unravelling the new roles of Na and Mn promoter in CO2 hydrogenation over Fe3O4-based catalysts for enhanced selectivity to light α-olefins,ChemCatChem, 2018, 10, 4718-4732.
(43)Feng Jiang, Bing Liu, Shunshun Geng, Yuebing Xu,Xiaohao Liu*, Hydrogenation of CO2 into hydrocarbons: enhanced catalytic activity over Fe-based Fischer-Tropsch catalysts,Catalysis Science & Technology, 2018, 8, 4097-4107.
(44)Yuebing Xu, Xinli Jia,Xiaohao Liu*, Supported Fe/MnOx catalyst with Ag doping for remarkably enhanced catalytic activity in Fischer-Tropsch synthesis,Catalysis Science & Technology, 2018, 8, 1953-1970.
(45)Yuebing Xu, Dapeng Liu,Xiaohao Liu*, Conversion of syngas toward aromatics over hybrid Fe-based Fischer-Tropsch catalysts and HZSM-5 zeolites,Applied Catalysis A: General, 2018, 552, 168-183.
(46)Feng Jiang, Bing Liu, Wenping Li, Min Zhang, Zaijun Li,Xiaohao Liu*, Two-dimensional graphene-directed formation of the cylindrical iron carbide nanocapsules for Fischer-Tropsch synthesis,Catalysis Science & Technology, 2017, 7, 4609-4621.
(47)Jiao Zheng, Jian Cai, Feng Jiang, Yuebing Xu,Xiaohao Liu*, Investigation of the highly tunable selectivity to linear α-olefins in Fischer–Tropsch synthesis over silica-supported Co and CoMn catalysts by carburization–reduction pretreatment,Catalysis Science & Technology, 2017, 7, 4736-4755.
(48)Jian Cai, Feng Jiang,Xiaohao Liu*, Exploring pretreatment effects in Co/SiO2 Fischer-Tropsch catalysts: different oxidizing gases applied to oxidation-reduction process,Applied Catalysis B: Environmental, 2017, 210, 1-13.
(49)Feng Jiang#, Min Zhang#, Bing Liu, Yuebing Xu,Xiaohao Liu*, Insights into the influence of support and potassium or sulfur promoter on iron-based Fischer-Tropsch synthesis: understanding the control of catalytic activity, selectivity to lower olefins, and catalyst deactivation,Catalysis Science & Technology, 2017, 7, 1245-1265. (# These authors contributed equally)
(50)Shunshun Geng, Feng Jiang, Yuebing Xu,Xiaohao Liu*, Iron-based Fischer-Tropsch synthesis for the efficient conversion of carbon dioxide into isoparaffins,ChemCatChem, 2016, 8, 1303-1307.
(51)Feng Jiang, Jian Cai, Bing Liu, Yuebing Xu,Xiaohao Liu*, Particle size effects in the selective hydrogenation of cinnamaldehyde over supported palladium catalysts,RSC Advances, 2016, 6, 75541-75551.
(52)Liangsong Yu,Xiaohao Liu*, Yueying Fang, Chunling Wang, Yuhan Sun, Highly active Co/SiC catalysts with controllable dispersion and reducibility for Fischer-Tropsch synthesis,Fuel, 2013, 112, 483-488.
(53)Xiaohao Liu, Akiyuki Hamasaki, Yoshihiro Yamane, Shohei Aikawa, Tamao Ishida, Masatake Haruta, Makoto Tokunaga*, Gold Nanoparticles Assisted Formation of Cobalt Species for Intermolecular Hydroaminomethylation and Intramolecular Cyclocarbonylation of Olefin,Catalysis Science & Technology, 2013, 3, 3000-3006.
(54)Tamao Ishida, Tatsuya Yanagihara,Xiaohao Liu, Hironori Ohashi, Akiyuki Hamasaki, Tetsuo Honma, Hiroshi Oji, Takushi Yokoyama, Makoto Tokunaga*, Synthesis of higher alcohols by Fischer–Tropsch synthesis over alkali metal-modified cobalt catalysts,Applied Catalysis A: General, 2013, 458, 145-154.
(55)Xiaohao Liu, Akiyuki Hamasaki, Tetsuo Honma, Makoto Tokunaga, Anti-ASF Distribution in Fischer-Tropsch Synthesis over Unsupported Cobalt Catalysts in a Batch Slurry Phase Reactor,Catalysis Today, 2011, 175, 494-503.
(56)Xiaohao Liu, Makoto Tokunaga*, Controllable Fischer-Tropsch Synthesis by In Situ-Produced 1-Olefins,ChemCatChem, 2010, 2, 1569-1572.
(57)Yoshihiro Yamane,Xiaohao Liu, Akiyuki Hamasaki, Tamao Ishida, Masatake Haruta, Takushi Yokoyama, Makoto Tokunaga*, One-Pot Synthesis of Indoles and Aniline Derivatives from Nitroarenes under Hydrogenation Condition with Supported Gold Nanoparticles,Organic Letters, 2009, 11, 5162-5165.
(58)Xiaohao Liu, Baoshan Hu, Kaoru Fujimoto, Masatake Haruta, Makoto Tokunaga*, Hydroformylation of Olefins by Au/Co3O4 Catalysts,Applied Catalysis B: Environmental, 2009, 92, 411-421.
(59)Xiaohao Liu, Xiaohong Li, Yoshifumi Suehiro, Kaoru Fujimoto*, Elucidation of Reaction Network and Effective Control of Carbon Number Distribution in the Three Phase Fischer-Tropsch Synthesis,Applied Catalysis A: General, 2007, 333, 211-218.
(60)Xiaohao Liu, Xiaohong Li, Kaoru Fujimoto*, Effective control of carbon number distribution during Fischer–Tropsch synthesis over supported cobalt catalyst,Catalysis Communications, 2007, 8, 1329-1335.
(61)Xiaohao Liu, Wensheng Linghu, Xiaohong Li, Kenji Asami, Kaoru Fujimoto*, Effects of Solvent on Fischer-Tropsch Synthesis,Applied Catalysis A: General, 2006, 303, 251-257.
(62)Xiaohong Li*,Xiaohao Liu, Zhongwen Liu, Kenji Asami, Kaoru Fujimoto, Supercritical Phase Process for Direct Synthesis of Middle Iso-paraffins from Modified Fischer-Tropsch Reaction,Catalysis Today, 2005, 106, 154-160.