论文著作:
[1]Jia Lingfeng, Zhang Li, Liu Bing*,ChengHuifang,LiHuiquan,ZhaoZhen,ZhuWenshuai,SongWeiyu,LiuJian*,LiuJixing*. Interface Induced by Hydrothermal Aging Boosts the Low-Temperature Activity of Cu-SSZ-13 for Selective Catalytic Reduction of NOx.Environmental Science & Technology,2024, 58, 15038-15051.
[2]Gong Hanzhang,ZhuangYuan,LiuJian*,ZhangXiao*. Three-dimensionally ordered macroporous ZSM-5 zeolite supported high-dispersed Ni2P: Highly active catalyst for quinoline hydrodenitrogenation.Chemical Engineering Journal. 2024, 480: 148236.
[3]YangKun,ZhangRuolin,XuHua,SongShaojia,JiXiangyang,FoYumeng,LuoLei,HanDawei,WeiYuechang,ZhangPeng,XuChunming,LiuJian*,SongWeiyu*. The electron-rich [ZnH]+species stabilized by titanium silicalite-1 zeolite for propane dehydrogenation.Chemical Engineering Science, 2024, 286: 119651
[4]Gong Hanzhang,ZhuangYuan,ZhangXiao*,LiuJian*,LiShuyuan. Ni2P/Beta@SBA-16 core-shell catalyst with tunable shell thickness for the hydrodenitrogenation of quinoline.Applied Catalysis B: Environmental,2023, 330: 122574.
[5]Liang Shuqin, Hu Huashuai, Liu Jue, Shen Hangjia, Li Qiao, Qiu Nianxiang, Guo HaiChuan, Guo Xuyun, Du Shiyu, Zhu Ye,Liu Jian*, Attfield J. Paul, Yang Minghui*.Nickel-nitride composite: An eco-friendly and efficient alternative to platinum for electrocatalytic hydrogen production.Applied Catalysis B: Environmental, 2023, 337, 123008.
[6]Gong Hanzhang, Zhuang Yuan, Zhang Xiao*,Liu Jian*, Li Shuyuan.Ni2P/Beta@SBA-16 core-shell catalyst with tunable shell thickness for the hydrodenitrogenation of quinoline.Applied Catalysis B: Environmental, 2023, 330, 122574.
[7]Song Shaojia, Sun Yuanqing, Yang Kun, Fo Yumeng, Ji Xiangyang, Su Hui, Li Zhenxing, Xu Chunming, Huang Guoyong,Liu Jian*,SongWeiyu*.Recent Progress in Metal-Molecular Sieve Catalysts for Propane Dehydrogenation.ACS Catalysis, 2023, 13, 6044-6067.
[8]Wu Xueqiu,Song Shaojia; Yang Min,Zhang Peng,Xu Chunming,Wei Yuechang,Huang Guoyong,Liu Jian*,Song Weiyu*.The Microenvironment Change of Isolated Co Sites in Silicalite-1 Zeolite Induced by Balancing Cations for Boosting Propane Dehydrogenation.Chemistry of Materials,2023 35: 7789-7799.
[9]Li Yuanfeng,Qin Tian,WeiYuechang*,XiongJing,Zhang, PengLai, Kezhen,ChiHongjie,LiuXi*,ChenLiwei,YuXiaolin,ZhaoZhenLiLina,Liu Jian. A single site ruthenium catalyst for robust soot oxidation without platinum or palladium.NatureCommunications2023, 14, 7149.
[10]Jia Lingfeng,LiuJixing*,HuangDeqi,ZhaoJingchen,Zhang, Jianning,LiKaixiang,LiZhenguo*,ZhuWenshuai,ZhaoZhen,LiuJian*. Interface Engineering of a Bifunctional Cu-SSZ-13@CZO Core-Shell Catalyst for Boosting Potassium Ion and SO2Tolerance.ACS Catalysis, 2022: 11281-11293.
[11]SongShaojia,YangKun,ZhangPeng,WuZhijie,LiJun,SuHui,DaiSheng,XuChunming,LiZhenxing*,LiuJian*,SongWeiyu*.Silicalite-1 Stabilizes Zn-Hydride Species for Efficient Propane Dehydrogenation.ACS Catalysis, 2022, 12: 5997-6006.
[12]Song Shaojia, Li Jun, Wu Zhijie, Zhang Peng, Sun Yuanqing, Song Weiyu*, Li Zhenxing, Liu Jian*. In-Situ encapsulated subnanometric CoO clusters within silicalite-1 zeolite for efficient propane dehydrogenation.AIChE Journal,2022,68:e17451.
[13]Li Songsong, Wang Lu, Su Hui, Hong Anh N., Wang Yanxiang, Yang Huajun, Ge Lei*, Song Weiyu, Liu Jian, Ma Tianyi*, Bu Xianhui, Feng Pingyun*. Electron Redistributed S-Doped Nickel Iron Phosphides Derived from One-Step Phosphatization of MOFsfor Significantly Boosting Electrochemical Water Splitting.AdvancedFunctional Materials, 2022, 2200733.
[14]Jiang Zeyu,Tian Mingjiao,Jing Meizan,Chai Shouning,Jian Yanfei,Chen Changwei,Douthwait Mark,Zhen Lirong,Ma Mudi,Song Weiyu,Liu Jian,Yu Jiaguo*,He Chi*. Modulating the Electronic Metal-Support Interactions in Single-Atom Pt-1-CuO Catalyst for Boosting Acetone Oxidation.Angew. Chem., Int. Ed.2022: 61, e202200763.
[15]Hui Su, Shaojia Song, Yangqin Gao, Ning Li, Yang Fu, Lei Ge*, Weiyu Song, Jian Liu*, Tianyi Ma*. In Situ Electronic Redistribution Tuning of NiCo2S4 Nanosheets for Enhanced Electrocatalysis.AdvancedFunctional Materials, 2021, 2109731.
[16]Nan Zhang*,Chunru Wang,Feng Zhao,Kuo Han,Yejin Ma,Yue Li, Jian Liu*. Self-healing γ-FeOOH decorated onto MoS2nanosheets for boosting the hydrogen evolution in alkaline media.Applied Catalysis B: Environmental,2021, 297: 120456.
[17]Hui Su, Shaojia Song, Songsong Li, Yangqin Gao, Lei Ge,*, Weiyu Song, TianyiMa*,Jian Liu*. High-valent bimetal Ni3S2/Co3S4induced by Cu doping for bifunctional electrocatalytic water splitting.AppliedCatalysis B: Environmental2021, 293: 120225.
[18]Jiawei Ji, Meizan Jing, Xiuwen Wang, Wei Tan, Kai Guo, Lulu Li, Xin Wang, Wang Song, Lijun Cheng, Jingfang Sun, Weiyu Song, Changjin Tang*,Jian Liu*, Lin Dong. Activating low-temperature NH3-SCR catalyst by breaking the strong interface between acid and redox sites: A case of model Ce2(SO4)3-CeO2study.Journal of Catalysis, 2021, 399: 212-223.
[19]Ningqiang Zhang, Xinxin Zhang, Yikun Kang, Chenliang Ye, Rui Jin, Han Yan, Rui Lin, JiaruiYang, Qian Xu, Yu Wang, Qinghua Zhang, Lin Gu, Licheng Liu*, Weiyu Song,Jian Liu*, Dingsheng Wang*, Yadong Li. Supported Pd2Dual-atom Site Catalyst for Efficient Electrochemical CO2Reduction.Angew. Chem., Int. Ed.2021, 60: 13388-1339.
[20]Kang Yikun, Li Zhi, LvXintong, Song Weiyu*, Wei Yuechang, Zhang Xiao,Liu Jian*, Zhao Zhen*. (Y. K. Kang, Z. Li, X. T. Lv, Y. C. Wei, X. Zhang, W. Y. Song*, J. Liu*, Z. Zhao*,) Active oxygen promoted electrochemical conversion of methane on two dimensional carbide (MXenes): From stability, reactivity and selectivity,Journal of Catalysis, 2021, 393: 20-39.