论文著作:
[1]Yanlin Xu, Wenhong Wang, Bin Liu, Yuan Pan, Bin Dong, Yichuan Li, Yanpeng Li, Hailing Guo, Yongming Chai*, Chenguang Liu*. The role of Nb2O5 in controlling metal-acid sites of CoMoS/γ-Al2O3 catalyst for the enhanced hydrodeoxygenation of guaiacol into hydrocarbons. Journal of Catalysis, 2022, 407: 19-28.
[2]Jun-Feng, Qin; Min, Yang; Tian-Shu, Chen; Bin, Dong*; Sa, Hou; Xue, Ma; Ya-Nan, Zhou; Xin-Lei, Yang; Jun, Nan; Yong-Ming, Chai*,Ternary metal sulfides MoCoNiS derived from metal organic frameworks for efficient oxygen evolution, International Journal of Hydrogen Energy, 2020, 45(4): 2745-2753
[3]Ya-Nan Zhou; Yu Ma; Lei Feng; Jie Zhao; Zhi Tong; Bin Dong*; Yu-Ran Zhu; Lei Wang; Chen-Guang Liu; Yong-Ming Chai*,Optimized Mo–doped cobalt selenides coupled carbon nanospheres for efficient hydrogen evolution, Applied Surface Science, 2020, 531: 0-147404
[4]Zhang, Jiaqi; Shang, Xiao; Ren, Hao; Chi, Jingqi; Fu, Hui; Dong, Bin*; Liu, Chenguang; Chai, Yongming*,Modulation of Inverse Spinel Fe3O4 by Phosphorus Doping as an Industrially Promising Electrocatalyst for Hydrogen Evolution, Advanced Materials, 2019, 31(52): 0-1905107
[5]Liu, Bin; Zhao, Kedi; Chai, Yongming; Li, Yanpeng; Liu, Di; Liu, Yunqi; Liu, Chenguang,Slurry phase hydrocracking of vacuum residue in the presence of presulfided oil-soluble MoS2 catalyst, Fuel, 2019, 246: 133-140
[6]Liu, Bin; Zhao, Kedi; Chai, Yongming; Li, Yanpeng; Liu, Di; Liu, Yunqi; Liu, Chenguang,Slurry phase hydrocracking of vacuum residue in the presence of presulfided oil-soluble MoS2 catalyst, Fuel, 2019, 246: 133-140
[7]Chi, Jing-Qi; Gao, Wen-Kun; Lin, Jia-Hui; Dong, Bin*; Yan, Kai-Li; Qin, Jun-Feng; Liu, Bin; Chai, Yong-Ming*; Liu, Chen-Guang,N, P dual-doped hollow carbon spheres supported MoS2 hybrid electrocatalyst for enhanced hydrogen evolution reaction, Catalysis Today, 2019, 330: 259-267
[8]Qin, Jun-Feng; Lin, Jia-Hui; Chen, Tian-Shu; Liu, Da-Peng; Xie, Jing-Yi; Guo, Bao-Yu; Wang, Lei; Chai, Yong-Ming*; Dong, Bin*,Facile synthesis of V-doped CoP nanoparticles as bifunctional electrocatalyst for efficient water splitting, Journal of Energy Chemistry, 2019, 39: 182-187
[9]Chai, Yong-Ming; Zhang, Xin-Yu; Lin, Jia-Hui; Qin, Jun-Feng; Liu, Zi-Zhang; Xie, Jing-Yi; Guo, Bao-Yu; Yang, Zhi; Dong, Bin,Three-dimensional VOx/NiS/NF nanosheets as efficient electrocatalyst for oxygen evolution reaction, International Journal of Hydrogen Energy, 2019, 44(21): 10156-10162
[10]Jiao, Feng; Guo, Hailing; Chai, Yongming*; Awala, Hussein; Mintova, Svetlana; Liu, Chenguang,Synergy between a sulfur-tolerant Pt/Al2O3@sodalite core-shell catalyst and a CoMo/Al2O3 catalyst, Journal of Catalysis, 2018, 368: 89-97
[11]Liu, Bin; Liu, Lei; Chai, Yongming; Zhao, Jinchong; Li, Yanpeng; Liu, Di; Liu, Yunqi; Liu, Chenguang,Effect of sulfiding conditions on the hydrodesulfurization performance of the ex-situ presulfided CoMoS/gamma-Al2O3 catalysts, Fuel, 2018, 234: 1144-1153
[12]Liu Bin; Liu Lei; Chai Yong Ming; Zhao Jin Chong; Liu Chen Guang,Essential role of promoter Co on the MoS2catalyst in selective hydrodesulfurization of FCC gasoline, Ranliao Huaxue Xuebao/Journal of Fuel Chemistry and Technology, 2018, 46(4): 441-450
[13]Shang, Xiao; Chi, Jing-Qi; Wang, Zhong-Bing; Dong, Bin*; Zhao, Jin-Chong; Li, Xing-Hua; Yan, Kai-Li; Wang, Lei; Chai, Yong-Ming*; Liu, Chen-Guang,Microwave annealing promoted in-situ electrochemical activation of Ni3S2 nanowires for water electrolysis, Journal of Catalysis, 2018, 368: 112-119
[14]Chi, Jing-Qi#; Chai, Yong-Ming#; Shang, Xiao; Dong, Bin*; Liu, Chen-Guang; Zhang, Wenjun; Jin, Zhong,Heterointerface engineering of trilayer-shelled ultrathin MoS2/MoP/N-doped carbon hollow nanobubbles for efficient hydrogen evolution, Journal of Materials Chemistry A, 2018, 6(48): 24783-24792
[15]Gao, Wen-Kun; Wang, Kai; Liv, Zi-Zhang; Lin, Jia-Hui; Dong, Bin*; Gao, Wen-Kun; Qin, Jun-Feng; Yan, Kai-Li; Liv, Zi-Zhang; Lin, Jia-Hui; Chai, Yong-Ming*; Liu, Chen-Guang; Dong, Bin; *Dong, B,Facile synthesis of Fe-doped Co9S8 nano-microspheres grown on nickel foam for efficient oxygen evolution reaction, Applied Surface Science, 2018, 454: 46-53
[16]Wenhui Hu, Xiao Shang, Guanqun Han, Bin Dong,Yanru Liu, Xiao Li, Yongming Chai*, Yunqi Liu, Chenguang Liu*. MoSx supported Graphene oxides with different degree of oxidation as efficient electrocatalysts for hydrogen evolution[J], Carbon, 100, 2016: 236-242
[17]Yilan Wu, Jiangchuan Li, Yongming Chai*, Hailing Guo, Chenguang Liu , Synergetic effect of H-ZSM-5/Silicalite-1@Pt/Al2O3 core–shell catalyst to enhance the selective hydrogenation of p-xylene[J], Journal of Membrane Science, 2015, 496: 70-77
[18]Yilan Wu, Yongming Chai*, Jiangchuan Li, Hailing Guo, Ling Wen, Chenguang Liu, Preparation of silicalite-1@Pt/alumina core–shell catalyst for shape-selective hydrogenation of xylene isomers[J], Catalysis Communications, 2015, 64: 110-113
[19]黄婷婷,柴永明*,商红岩,燕群,刘晨光,络合剂对加氢精制催化剂影响的研究进展[J],化工进展,2014,(04):914-920。
[20]Liu Bin, Chai Yongming*, Li Yanpeng, Wang Anjie, Liu Yunqi, Liu Chenguang*. Effect of sulfidation atmosphere on the performance of the CoMo/γ-Al2O3 catalysts in hydrodesulfurization of FCC gasoline[J]. Applied Catalysis A: General, 2014, 471: 70-79
[21]Li Jingfeng, Chai Yongming*, Liu Bin, Wu Yilan, Li Xuehui, Tang Zhe, Liu Yunqi, Liu Chenguang*. The catalytic performance of Ni2P/Al2O3 catalyst in comparison with Ni/Al2O3 catalyst in dehydrogenation of cyclohexane[J]. Applied Catalysis A: General, 2014, 469 : 434-441
[22]张成涛, 柴永明*, 王晓, 李国良, 张孔远, 赵瑞玉, 刘晨光. 孔径双峰分布γ-Al2O3负载NiMoP催化剂的制备及对蜡油加氢催化性能[J]. 石油学报(石油加工), 2013, (02): 205-213
[23]Bin Liu, Yongming Chai*, Yajing Wang, Yunqi Liu, Chenguang Liu*. Weakening internal diffusion effect in selective hydrodesulfurization of FCC gasoline by novel designed eggshell CoMoS/Al2O3 catalysts[J]. Journal of Natural Gas Chemistry, 2012, 21 (02): 194-199
[24]Bin Liu, Yongming Chai*, Yukang Liu, Yajing Wang, Yunqi Liu, Chenguang Liu*. A simple method for preparation of presulfided eggshell CoMoS/γ-Al2O3 catalysts for hydrodesulfurization of dibenzothiophene[J]. Fuel, 2012, 95: 457-463
[25]Ning Li, Yongming Chai*, Yanpeng Li, Zhe Tang, Bin Dong, Yunqi Liu, Chenguang Liu*. Ionic liquid assisted hydrothermal synthesis of hollow vesicle-like MoS2 microspheres[J]. Materials Letters, 2012, 66 (01): 236-238
[26]Ning Li, Yongming Chai*, Bin Dong, Bin Liu, Hailing Guo, Chenguang Liu*. Preparation of porous MoS2 via a sol–gel route using (NH4)2Mo3S13 as precursor[J]. Materials Letters, 2012, 88: 112-115
[27]刘晨光, 柴永明, 韩建立, 刘华林, 崔德强. FDS-1柴油深度加氢脱硫催化剂及工艺技术开发[J]. 石油科技论坛, 2011, (06): 66-68+72
[28]相春娥, 柴永明, 樊晶, 刘晨光. 磷对预硫化型NiMo/Al2O3催化剂加氢脱硫脱氮性能的影响(英文)[J]. 燃料化学学报, 2011, (05): 355-360
[29]韩姝娜, 周同娜, 柴永明, 周红军, 刘晨光. 喹啉、吲哚和咔唑对Ni-Mo催化剂上4,6-DMDBT HDS反应抑制作用[J]. 石油学报(石油加工), 2010, (02): 177-183
[30]韩姝娜, 周同娜, 柴永明, 刘晨光, 单永为. 存在4,6-DMDBT时喹啉、吲哚和咔唑在Ni-Mo加氢催化剂上加氢脱氮自抑制作用[J]. 石油学报(石油加工), 2010, (03): 351-356
[31]Bin Liu, Yongming Chai*, Yajing Wang, Tingting Zhang, Yunqi Liu, Chenguang Liu*. A simple technique for preparation of presulfided eggshell MoS2/Al2O3 catalysts and kinetics approach for highly selective hydrodesulfurization of FCC gasoline[J]. Applied Catalysis A: General, 2010, 388 (1–2): 248-255
[32]柴永明, 相春娥, 孔会清, 柳云骐, 刘晨光*. 馏分油浆态床加氢处理研究Ⅱ FCC柴油加氢工艺条件及动力学研究[J]. 燃料化学学报, 2009, (01): 58-64
[33]柴永明, 相春娥, 孔会清, 柳云骐, 刘晨光*. 馏分油浆态床加氢处理研究Ⅰ催化剂制备方法[J]. 燃料化学学报, 2008, (06): 720-725
[34]王芳珠, 杨坤, 柴永明, 高鹏程. 以镁铝水滑石为前驱体制备复合氧化物催化丙酮气相缩合反应[J]. 无机化学学报, 2008, (09): 1417-1423
[35]相春娥, 柴永明, 邢金仙, 柳云骐, 刘晨光*. 喹啉、吲哚对二苯并噻吩在NiMoS/γ-Al2O3上加氢脱硫反应的影响[J]. 石油学报(石油加工), 2008, (02): 151-157
[36]相春娥, 柴永明, 柳云骐, 刘晨光*. NiMoS/γ-Al2O3上二苯并噻吩加氢脱硫和喹啉加氢脱氮反应的相互影响[J]. 催化学报, 2008, (07): 595-601
[37]相春娥, 柴永明, 柳云骐, 刘晨光*. 二苯并噻吩和吲哚在NiMoS/γ-Al2O3上加氢脱硫和加氢脱氮反应的相互影响[J]. 燃料化学学报, 2008, (06): 684-690
[38]柴永明, 赵会吉, 柳云骐, 刘晨光*. 四硫代钼酸铵制备方法改进[J]. 无机盐工业, 2007, (05): 12-15
[39]柴永明, 南军, 相春娥, 柳云骐, 刘晨光*. 以硫化态前驱物制备的NiMoS/γ-Al2O3催化剂表面活性相HRTEM研究[J]. 石油学报(石油加工), 2007, (03): 20-26
[40]柴永明, 安高军, 柳云骐, 刘晨光*. 过渡金属硫化物催化剂催化加氢作用机理[J]. 化学进展, 2007, (Z1): 234-242
[41]柴永明, 南军, 柳云骐, 刘晨光*. SK-1预硫化型柴油加氢精制催化剂的研制[J]. 石油炼制与化工, 2006, (12): 44-47
[42]南军, 柴永明, 李彦鹏, 王继锋, 刘晨光*. Pd/Al2O3催化剂用于连续重整汽油全馏分加氢的失活分析[J]. 工业催化, 2007, (01): 8-13
[43]南军, 柴永明, 李彦鹏, 刘晨光*. UDO-01重整生成油选择性加氢催化剂的研制[J]. 石油炼制与化工, 2007, (01): 28-33
[44]安高军, 柴永明, 陈照军, 刘晨光*. 低温固相法制备非负载型介孔Ni-Mo-W硫化物催化剂[J]. 中国石油大学学报(自然科学版), 2007, (06): 156-160
[45]南军, 柴永明, 李彦鹏, 刘晨光*, 王继锋. 重整生成油选择性加氢脱烯烃Pd基催化剂的研究[J]. 石油学报(石油加工), 2006, (05): 20-25
发明专利:
[1] 一种加氢催化剂的现场外预硫化方法. 刘晨光, 柴永明, 赵会吉, 赵瑞玉, 殷长龙, 邢金仙, 方朝亮, 于建宁. ZL200410039450.8
[2] 四硫代钨酸铵的制备方法. 刘晨光, 柴永明, 赵会吉, 赵瑞玉, 殷长龙, 邢金仙, 方朝亮, 于建宁. ZL200410039451.2
[3] 四硫代钼酸铵的制备方法. 刘晨光, 柴永明, 赵会吉, 赵瑞玉, 殷长龙, 邢金仙, 方朝亮, 于建宁. ZL200410039454.6
[4] 一种硫化型加氢催化剂及其制备方法. 刘晨光, 柴永明, 赵会吉, 赵瑞玉, 殷长龙, 邢金仙, 方朝亮, 于建宁. ZL 200410039449.5
[5] 用于液体有机酸酯类物质脱酸精制过程的固体碱吸附剂. 王芳珠, 王勤, 柴永明, 刘洪亮, 郭希田. ZL200610073120.X
[6] 一种纳米至微米尺度沸石咪唑骨架结构材料的制备方法. 柴永明, 刘杜鹏, 刘晨光, 徐彪, 郭海玲, 戴昉娜. ZL201210185688.6
[7]一种液化气深度脱硫工艺方法. 柴永明, 刘宾, 刘晨光, 吕洪伟, 白锐, 赵晋翀, 杜健, 邢金仙. ZL201410336427.9
[8] 一种液化气和FCC汽油组合脱硫工艺. 柴永明, 刘晨光, 刘宾, 柳云骐, 白锐, 赵晋翀, 杜健, 吕洪伟, 邢金仙. ZL201410336961.X
[9] 一种用于丙酮自缩合反应的固体催化剂及其制备方法和应用. 王芳珠, 柴永明, 刘晨光, 李丹盈, 叶涛, 牟庆平, 刘振学, 姚刚, 栾波. 201510232323.8
[10] 一种用于丙酮缩合的改性镁铝复合氧化物催化剂及其制备方法和应用. 王芳珠, 柴永明, 牟庆平, 刘晨光, 姚刚, 栾波, 吕灵灵, 李丹盈. 201510232256.X
[11] 一种用于生产异佛尔酮的催化剂及其制备方法. 柴永明, 王芳珠, 刘晨光, 牟庆平, 刘振学, 姚刚, 栾波, 李丹盈, 叶涛. 201510232295.X
[12] 一种高活性位密度加氢处理催化剂的制备方法. 柴永明, 薛超, 刘晨光, 刘宾, 柳云骐, 赵瑞玉, 赵会吉, 殷长龙. ZL201410355753.4
[13] 一种提高馏分油加氢催化剂活性的方法. 柴永明, 薛超, 刘晨光, 刘宾, 白锐, 赵晋翀, 殷长龙, 柳云骐. 201410356345.0
[14] 核壳型分子筛包覆催化剂及其制备方法. 柴永明, 吴仪岚, 刘杜鹏, 郭海玲, 刘宾, 刘晨光. ZL201410355792.4
[15] 纳微尺度反应分离耦合多功能催化剂及其制备方法. 柴永明, 郭海玲, 吴仪岚, 段斐, 刘杜鹏, 刘宾, 刘晨光. ZL201410354086.8
[16] 用于分离生产对二甲苯的方法. 柴永明, 吴仪岚, 刘晨光, 郭海玲, 段斐, 刘杜鹏, 刘宾. ZL201410355773.1
[17] 一种用于FCC汽油预加氢的催化剂及其制备方法. 柴永明, 刘宾, 刘晨光, 徐永强, 柳云骐, 殷长龙, 邢金仙. ZL201410356335.7
[18] 以过渡金属磷化物为助剂的加氢催化剂. 柴永明, 刘晨光, 刘宾, 刘理华, 柳云骐, 殷长龙, 邢金仙. ZL201410354075.X
[19] 非贵重金属重整催化剂及其应用. 柴永明, 刘晨光, 刘宾, 赵会吉, 柳云骐, 殷长龙, 邢金仙. ZL201410355545.4
[20] 一种全气相柴油加氢处理工艺.柴永明, 闫晓洋, 左萌, 刘晨光, 刘宾, 李奕川, 赵晋翀, 杜健, 程杰. ZL2015103257695
[21] 一种负载型磷化镍催化剂及其预磷化制备方法. 柴永明, 刘佳怡, 刘晨光, 刘宾, 李奕川, 谢坤, 张迟. 201510232332.7
[22] 一种负载型硫化态加氢催化剂及其制备方法. 柴永明, 刘晨光, 刘宾, 张孔远, 柳云骐, 杜健, 闫晓洋, 程杰, 焦玉萍, 刘杜鹏, 赵瑞玉, 邢金仙. 201510224393.9
[23] 一种加氢催化剂的现场外硫化处理方法. 柴永明, 刘宾, 刘晨光, 柳云骐, 殷长龙, 赵会吉, 张孔远, 赵瑞玉, 邢金仙. 201510250128.8
[24] 高金属含量加氢催化剂的制备方法. 柴永明, 郭阳, 刘晨光, 刘宾, 殷长龙, 郭海玲, 赵会吉, 柳云骐, 左萌, 谢坤. ZL201610842532.9
[25] 超高活性加氢催化剂的制备方法. 柴永明, 郭阳, 刘晨光, 刘宾, 殷长龙, 柳云骐, 赵瑞玉, 李奕川, 赵会吉, 谢坤, 左萌, 赵晋翀, 董斌. ZL201610842531.4
[26] 超高金属负载量加氢催化剂的制备方法. 柴永明, 郭阳, 刘宾, 董斌, 刘晨光, 殷长龙, 柳云骐, 张孔远, 李奕川, 谢坤, 左萌, 赵晋翀. ZL201610843227.1
[27]刘宾; 柴永明; 吕鸿洋; 刘晨光; 张明东; 潘原; 李奕川; 柳云骐,一种自硫化油溶性镍基加氢裂化催化剂的制备和应用方法, 2020-11-12, 中国, CN202011257515.1, 其他
[28]刘宾; 柴永明; 吕鸿洋; 刘晨光; 张明东; 潘原; 李奕川; 柳云骐,一种自硫化油溶性多金属复合催化剂的制备和应用方法, 2020-11-12, 中国, CN202011259207.2, 其他
[29] 刘宾; 柴永明; 吕鸿洋; 刘晨光; 张明东; 潘原; 李奕川; 柳云骐,一种自硫化油溶性钼基多金属协同催化剂的制备和应用方法, 2020-11-12, 中国, CN202011257483.5, 其他
[30] 刘宾; 柴永明; 吕鸿洋; 刘晨光; 张明东; 潘原; 李奕川; 柳云骐,一种自硫化油溶性催化剂的制备和应用方法, 2020-11-12, 中国, CN202011257522.1, 其他
[31] 刘宾; 赵德明; 柴永明; 牟庆平; 刘晨光; 郭振莲; 赵柯迪; 李新; 梁缘,一种自硫化油溶性钼基双金属催化剂及其制备方法和应用, 2018-6-27, 中国, ZL201810677699.3, 其他
[32] 刘宾; 柴永明; 刘晨光; 潘原; 李奕川; 张孔远; 柳云骐,一种废润滑油临氢预处理提纯方法, 2020-11-12, 中国, CN202011259211.9, 其他