[1] Jianbei Zhang, Luyue Zhang, Yan Cheng,Yongjun Liu*,Construction of oxygen vacancies in δ-MnO2 for promoting low-temperature toluene oxidation,Fuel,332 (2023) 126104 [2] Luyue Zhang,Yongjun Liu*, Xue Fang, Yan Cheng*,Regulating Oxygen Species for Promoted Deep Oxidation of Toluene: A Comparative Study of Adsorbed Oxygen and Lattice Oxygen,Fuel, 321 (2022)124116 [3] Xue Fang,Yongjun Liu*, Yan Cheng, Wanglai Cen, Mechanism of Ce-Modified Birnessite-MnO2 in Promoting SO2 Poisoning Resistance for Low-Temperature NH3-SCR,ACS Catalysis. 11(2021)412 [4] Lingzhu Chen,Yongjun Liu*, Xue Fang, Yan Cheng, Simple strategy for the construction of oxygen vacancies on α-MnO2 catalyst to improve toluene catalytic oxidation, Journal of Hazardous Materials, 409(2021)125020 [5] Xue Fang,Yongjun Liu*, Lingzhu Chen, Yan Cheng, Influence of surface active groups on SO2 resistance of birnessite for low-temperature NH3-SCR,Chemical Engineering Journal,399 (2020) 125798 [6] Xue Fang,Yongjun Liu*, Wanglai Cen, Yan Cheng, Birnessite as a Highly Efficient Catalyst for Low-Temperature NH3-SCR: The Vital Role of Surface Oxygen Vacancies,Industrial & Engineering Chemistry Research, 59(2020)14606 [7] Ping Yan, Jun Long, Kanglu Li, Shandong Yuan,Yongjun Liu*, Yaoqiang Chen, The regulation of reaction processes and rate-limiting steps for efficient photocatalytic CO2 reduction into methane over the tailored facets of TiO2,Catalysis Science & Technology, 9(2019)1451 [8] Liang Chen, Mengdan Gong, Yan Cheng,Yongjun Liu*, Shi Yin, Deming Luo, Amine-impregnated carbon aerogels with ultra-high pore volume synthesized by pH adjusting for efficient CO2 Capture,Journal of Porous Materials, 26 (2019), 1313 [9] Liang Chen, Mengdan Gong, Yan Cheng,Yongjun Liu*, Shi Yin, Deming Luo, Structure of Supports on CO2 Adsorption of Tetraethylenepent amine/Carbon Aerogels Prepared by Incipient Wetness Impregnation Method,Polish Journal of Environmental Studies, 28, (2019), 4127 [10] Jing Pan, Wentao Du,Yongjun Liu*, Yan Cheng, Shandong Yuan, Lanthanum-doped Cu-Mn composite oxide catalysts for catalytic oxidation of toluene, Journal of Rare Earths, 37(2019)602 [11] Ping Yan, Jun Long, Kanglu Li, Shandong Yuan*,Yongjun Liu*, Yaoqiang Chen, The promotion effects of graphitic and pyridinic N combinational doping on graphene for ORR,Applied Surface Science, 445(2018) 398 [12] Weizhu Wang, Yan Cheng*, Mengdan Gong, Wubo Fan, Jiaxiu Guo, Huaqiang Yin,Yongjun Liu*, Enhancement of continuous removal of SO2 on surface-modified activated carbon fiber by nitrogen-containing functional groups,Fresenius Environmental Bulletin, 25(2016) 2646 [13] Yong-Jun Liu, Yi-Fan Qu, Jia-Xiu Guo, Xue-Jiao Wang, Ying-Hao Chu, Hua-Qiang Yin, Jian-Jun Li, Thermal Regeneration of Manganese Supported on Activated Carbons Treated by HNO3 for Desulfurization,Energy & Fuels, 29(2015)1931 [14] Yongjun Liu, Mengdan Gong, Wubo Fan, Xiaoli Liu, Huaqiang Yin, Yan Cheng, Effective Removal of High-Concentration Sulfur Dioxide by Nitrogen Modified Activated Carbon Fibers,Recent Innovations in Chemical Engineering, 2015,7:34 [15] Yong-Jun Liu, Aizawa, M., Wen-Qing Peng, Zheng-Ming Wang, Hirotsu, T. Carbon nanosheet-titania nanocrystal composites from reassembling of exfoliated graphene oxide layers with colloidal titania nanoparticles, Journal of Solid State Chemistry, 2013,197:29-336 [16] Yong-Jun Liu, Yan Cheng, Tomonori Ohba, Katsumi Kaneko, Hirofumi Kanoh, Hydrogen Absorption Enhancement of Nanocrystalline Li3N/Li2C2 Composite,International Journal of Hydrogen Energy, 36(2011) 12902 [17] Hirofumi Kanoh,Yong-Jun Liu, Preparation and properties of hydrogen-storing nanoparticles,Surface, 49(2011) 149 [18] Yong-Jun Liu, Zheng-Ming Wang, Mami Aizawa, Wen-Qin Peng, Takahiro Hirotsu, Nanoporous Composite of Carbon Nanosheets and Functional Titania Nanoparticles Formed by Reassembling of Exfoliated Graphite Oxides with Colloidal Titania,Materials Letters, 2009, 63(2): 260-262. [19] Yong-Jun Liu, Mami Aizawa, Zheng-Ming Wang, Hiroaki Hatori, Naofumi Uekawa, Hirofumi Kanoh, Comparative Examination of Titania Nanocrystals Synthesized by Peroxo Titanic Acid Approach from Different Precursors,Journal of Colloid and Interface Science, 2008, 322: 497-504. [20] Yong-Jun Liu, Mami Aizawa,Wen-Qin Peng, Zheng-Ming Wang, Hiroaki Hatori, Naofumi Uekawa, Hirofumi Kanoh, Room-temperature Formation of Alkoxide-derived Anatase Nanoparticles by Peroxotitanic Acid Approach,Chemistry Letters, 2007, 36: 1094-1095. |