崔国凯 教授 博士 浙江省 研究领域: 环保,新材料,煤化工,石油炼制,石油化工,精细化工 研究方向: 离子液体、热力学、人工智能(机器学习)、功能溶剂和功能材料、吸附及催化小分子气体、大气污染治理、碳捕集与转化 所在单位: 浙江工业大学

基本信息

所在单位:
浙江工业大学
机构细分:
化学工程学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
出生年份:
1984-01-01
教育经历:
2008.08 – 2013.06   浙江大学,化学系,理学博士(导师:李浩然教授、王从敏教授)
2004.09 – 2008.07   河南师范大学,化学与环境科学学院,理学学士
工作经历:
2025.01 – 今           浙江工业大学,化学工程学院,教授、博士生导师
2021.11 – 2024.12    浙江工业大学,化学工程学院,浙江工业大学运河青年学者特聘研究员、博士生导师
2019.12 – 2024.12    浙江工业大学,化学工程学院,浙江工业大学运河青年学者特聘研究员、硕士生导师
2017.10 – 2023.05   中国化工学会离子液体专业委员会委员
2016.11 – 2017.12   美国橡树岭国家实验室,访问学者(导师:戴胜教授)
2016.11 – 2019.12   河南师范大学,化学化工学院,副教授、硕士生导师
2013.07 – 2016.10   河南师范大学,化学化工学院,讲师、硕士生导师
专家介绍:
崔国凯,博士(Dr. Guokai Cui),教授、博士生导师,1984年9月生,中国化工学会离子液体专业委员会委员、副秘书长,中国化学会热力学与热分析专业委员会青年委员;中国化工学会专业会员、中国化学会高级会员、中国颗粒学会会员、中国微米纳米技术学会高级会员、国际碳捕集协会IACC高级会员;第三批全国高校黄大年式教师团队“工业催化教师团队”成员(负责人:李小年)、“绿色化学合成与转化技术全国重点实验室”成员(主任:郑裕国)、浙江省“全省催化剂表界面科学与工程重点实验室”成员(主任:李小年)、浙江工业大学绍兴研究院特聘研究员、中国科学院过程工程研究所访问学者、美国橡树岭国家实验室访问学者。主要研究内容:离子液体、热力学、人工智能(机器学习)、功能溶剂和功能材料、吸附及催化小分子气体、大气污染治理、碳捕集与转化;在Chem. Soc. Rev., J. Am. Chem. Soc., Angew. Chem. Int. Ed., Chem. Eng. J.等国内外有影响力的期刊上发表论文70余篇(他引>3100次),H因子30。主持纵向、横向项目7项,其中国家自然科学基金3项、浙江省“尖兵领雁”重点研发1项、河南省自然科学基金1项。多次受邀在“离子液体与绿色过程”、“热力学与热分析”、“CO2资源利用”领域国际国内权威会议上做了30多场主题报告或邀请报告。获得中国化学会热力学与热分析专业委员会“优秀青年学者奖”(2014年),中国化工学会离子液体专业委员会“青年创新奖”(2017年)、第六届全国离子液体与绿色过程学术会议“优秀组织个人奖”(2023年),入选浙江工业大学“运河青年学者”(2021年)、“十四五”高层次人才培育计划(2022年),入选美国斯坦福大学和爱思唯尔数据库第七版《全球前2%顶尖科学家榜单》(World´s Top 2% Scientists)“年度科学影响力排行榜”(2024年)。担任《过程工程学报》青年编委、《石油化工高等学校学报》青年编委、《低碳化学与化工》青年编委、《精细化工》青年编委、《燃料化学学报(中英文)》青年编委、Ind. Chem. Mater.青年编委、Molecules编委,中国化工学会“第六届全国离子液体与绿色过程学术会议”秘书长,教育部学位与研究生教育发展中心“全国本科毕业论文(设计)抽检评审专家库专家”、国家自然科学基金委员会通讯评审专家、河南省自然科学基金通讯评审专家、中国教育发展战略学会人才发展专业委员会中国教育在线“学术桥”专家库专家、浙江建设职业技术学院环境工程技术专业智库专家。
专家荣誉:
10、崔国凯,美国斯坦福大学和爱思唯尔数据库第七版《全球前2%顶尖科学家榜单》(World´s Top 2% Scientists)“年度科学影响力排行榜”,2024年 WWW WWW
9、崔国凯,中国化工学会“2023年度会刊优秀审稿人”,2023年 WWW
8、崔国凯,中国化工学会第六届全国离子液体与绿色过程学术会议“优秀组织个人奖”,2023年
7、崔国凯,河南师范大学优秀硕士学位论文指导教师,2021.
6、崔国凯,河南省教育厅优秀科技论文一等奖,2018.
5、崔国凯、王键吉、张锁江,河南省第四届自然科学学术奖-自然科学优秀学术论文一等奖,2018.1
4、崔国凯,中国化工学会第四届离子液体与绿色过程学术会议,青年创新奖,2017.
3、周凌云、樊静、崔国凯、商晓敏、汤青虎、王键吉、Fan, M.,河南省第三届自然科学学术奖-自然科学优秀学术论文一等奖,2015.
2、崔国凯,中国化学会第十七届全国化学热力学和热分析学术会议,优秀青年学者奖,2014.
1、崔国凯,浙江大学优秀毕业生,2013.

科研能力

研究领域:
环保,新材料,煤化工,石油炼制,石油化工,精细化工
研究方向:
离子液体、热力学、人工智能(机器学习)、功能溶剂和功能材料、吸附及催化小分子气体、大气污染治理、碳捕集与转化
中文标签:
Null;Ionic Liquids;Organic Reactions;Dual Tuning;Electric Conductivity;Catalytic Activity;So2 Capture;Sulfur;Chemical Process Intensification;Halogens
英文标签:
Ionic Liquids;Ionic Liquid;CCUS;Carbon Neutral;Greenhouse Gas Control;SO2;Deep Eutectic Solvent;Carbon Dioxide;Absorption;Co2 Utilization
论文著作:
2025
77. Cui, G.*; Ren, C.; Zhang, R.; Li, X.; Yang, Z.; Zhang, L.; Ke, Q.; Zhou, Y.; Lu, H.*; Dai, S.* Cuprous  ionic liquid engineering combined with preorganized hydrogen-bond donors for enhanced carbon monoxide capture, AIChE Journal, 2025, DOI: 10.1002/aic.70030.
76. Cui, G.*; Chen, Y.; Xu, Li.; Zhang, R.; Wang, X.; Zhou, Y.; Ke, Q.; Niu, X.; Zhang, X.; Teng, M.; Li, M.; Lu, H.*; Carbanion Engineering for Highly Efficient Selective SO2 Capture by Ionic Liquids based Commercializable Polymers, AIChE Journal, 2025, DOI: 10.1002/aic.70023.
75. Niu, X.; Qian, H.; Cai, D.; Zhao, W.; Wang, Q.; Ke, Q.; Cui, G.; Ge, C.; Tang, L.; Lu, H.; Directional synthesis of high-density aviation fuel through CO2 hydrogenation coupling with naphthalene alkylation over ZnZrOx/Hβ catalyst, Chemical Enginerring Journal, 2025, 520, 166241.
74. Zhang, R.; Tang, L.*; Ge, C.*; Nie, X.; Xu, L.; Ke, Q.; Zhang, Z.; Zhou, Y.; Niu, X.; Liu, H.; Lu, H.; Cui, G.* Functional Ionic Liquids for SO2 Capture and Conversion, New Journal of Chemistry, 2025, 49, 9552-9571. PDF, WWW
73. Nie, X.; Qiu, X.; Zhang, R.; Ke, Q.; Liu, H.; Zhang, X.; Lu, H.; Cui, G.*; Zhang, S. Tunable and functional ionic liquids embedded hyper-crosslinked polymers as robust H2O-tolerant adsorbents for highly efficient gaseous toluene capture, Chem. Eng. J., 2025, 505, 159467.
72. Cui, G.*; Cheng, Y.; Zhang, W.; Shen, X.; Li, L.; Zhang, R.; Chen, Y.; Ke, Q.; Ge, C.; Liu, H.; Fan, W.; Lu, H.*; Highly efficient CO2 capture from open air and dilute gas streams by tunable azolate ionic liquids based deep eutectic solvents. Chem. Eng. J., 2025, 505, 159193.
71. 张瑞娜; 田媛; 葛春亮; 张威; 葛春亮; 卢晗锋; 崔国凯* 人工智能机器学习助力离子液体CO2捕集性能分析, 科学通报, 2025, DOI: 10.1360/TB-2024-0163, PDF, WWW
70. Ke, Q.; Xiong, Y.; Lu, M.; Huang, K.; Guo, Y.; Min, J.; Jin, C.; Gu, Z.; Cui, G.; Weng, X.; Yi, B.; Lu, H.*; Modelling and prediction of toluene adsorption saturation basing on characteristic values of activated carbons, Journal of Environmental Sciences, 2025, 152, 302-312.. WWW
2024
69. 柯权力; 熊烨栋; 卢梅; 吴天浩; 黄康康; 闵炯; 金传敏; 崔国凯; 赵博*; 卢晗锋*; 有序介孔硅材料的微量碳层修饰及VOCs吸附性能, 中国环境科学,  2024, 44(10): 5388-5396..
68. Xiong, F.; Ke, Q.*; Lu, M.; Wang, S.; Yi, B.; Niu, X.; Pan, P.; Fang, G.; Zhang, R.; Cui, G.; Zhao, B.*; Lu, H. *; Surface Affinity Modification of High-Silica MFI Zeolites for Preferential Ethane Capture over Ethylene, Energy Fuels, 2024, 38(24), 23654-23663.
67. Ke, Q.; Xiong, F.; Fang, G.; Chen, J.; Niu, X.; Pan, P.; Cui, G.; Xing, H.; Lu, H.; The reinforced separation of intractable gas mixtures by using porous adsorbents. Advanced Materials, 2024, 36, 2408416.
66. Ke, Q.; Pan, P.; Lu, M.; Fang, G.; Zhang, W.; Zhang, R.; Cui, G.; Niu, X.; Xiong, F.; Zhou, Y.; Zhao, B.; Lu, H.*; The intensification of moisture resistance over MFI zeolite via heteroatom incorporation for diluted CO2 capture, Fuel, 2024, 375, 132646.
65. 张威,张瑞娜,葛春亮,李来,范雯阳,卢晗锋,陈瑶姬,崔国凯*,功能化离子液体活性位点强化CO2捕集,低碳化学与化工, 2024, 49(7), 23-33.
64. Zhang, R.; Cui, G.*; Wang, X.; Chen, Y.; Qiu, X.; Ke, Q.; Deng, D.; Ge, C.;  Lu, H.*; Dai, S.*, Ionic liquid-based advanced porous organic hyper-crosslinked polymers (ILHCPs) for CO2 capture and conversion, Chem. Eng. J. 2024, 489 151102. ,
63. Ke, Q.; Xiong, Y.; Lu, M.; Fang, G.; Cui, G.; Pan, P.; Xiong, F.; Wu, T.; Huang, K.; Min, J.; Jin, C.; Lu, H.;* Enhanced toluene adsorption over carbon–silica composite with promoted microporosity and moisture resistance. Separation and Purification Technology, 2024, 344,127268. PDF, WWW
62. Zhang, Z.*; Yan, W.; Wang, Y.; Cui, G.; Lu, H.* Preparation, activity and mechanism of a metallic Cu/TiO2 nanotube array catalyst by a fast solar drying method for photothermal CO2 reduction under concentrating light, Catalysis Science & Technology, 2024,14, 4187-4197.
61. 陈瑶姬; 任成瑜; 胡达清; 卢晗锋; 葛春亮; 崔国凯* 离子液体强化一氧化碳转化, 化工进展, 2024, 43(1), 124-134, PDF, WWW
2023
60. Li, K.; Zong, K.; Wang, X.;  Cui, G.; Deng, D.*  Ionic liquid and deep eutectic solvents for NH3 absorption and separation: A review, New J. Chem. 2023, 47, 21426-21445. PDF, WWW
59. 程业品; 胡达清; 徐奕莎; 刘华彦; 卢晗锋; 崔国凯* 离子液体基低共熔溶剂在转化CO2中的应用, 化工学报, 2023, 74(9), 3640-3653.
58. 潘鹏云; 赵博; 熊峰; 李浙飞; 崔国凯; 柯权力; 卢晗锋*; 多孔固相吸附材料捕集低浓度CO2研究进展, 能源环境保护, 2023, 37(3), 50-63.
57. Zhou, W.; Chen, K.; Ke, Q.; Wang, H.; Chen, X.; Liu, Y.; Cui, G.; Weng, X.; Zhou, Y.; Lu, H.*  A mechanic insight into low-temperature catalytic combustion toward ethylene oxide over Pt-Ru/CuCeOx bimetallic catalyst, Journal of Rare Earth 2023, 41(6), 881-888.
56. Zhou, B.; Ke, Q.; Chen, K.; Wen, M.; Cui, G.; Zhou, Y.*; Gu, Z.; Weng, X.; Lu, H.* Adsorption and catalytic ozonation of toluene on Mn/ZSM-5 at low temperature. Applied Catalysis A General 2023, 657, 119146.
55. Cui, G.; Xu, Y.; Hu, D.; Zhou, Y.; Ge, C.; Liu, H.; Fan, W.; Zhang, Z.; Chen, B.; Ke, Q.; Chen, Y.; Zhou, B.; Zhang, W.; Zhang, R.;  Lu, H.*, Tuning functional ionic deep eutectic solvents as green sorbents and catalysts for highly efficient capture and transformation of CO2 to quinazoline-2,4(1H,3H)-dione and its derivatives, Chem. Eng. J. 2023, 469, 143991. ,【学院报道】,【学校报道】
54. Xu, Y.; Zhang, R.; Zhou, Y.; Hu, D.; Ge, C.; Fan, W.; Chen, B.; Chen, Y.; Zhang, W.; Liu, H.;  Cui, G.*; Lu, H.*, Tuning ionic liquid-based functional deep eutectic solvents and other functional mixtures for CO2 capture, Chem. Eng. J. 2023, 463, 142298. 【学院报道】
53. Zhang, R.; Hu, D.; Zhou, Y.; Ge, C.; Liu, H.; Fan, W.; Li, L.; Chen, B.; Cheng, Y.; Chen, Y.; Zhang, W.;  Cui, G.*; Lu, H.*, Tuning ionic liquid-based catalysts for CO2 conversion into quinazoline-2,4(1H,3H)-diones, Molecules 2023, 28(3), 1024.,WWW
52. Zhou, B.; Ke, Q.; Wen, M.; Ying, T.; Cui, G.; Zhou, Y.; Gu, Z.; Lu, H.*  Catalytic combustion of toluene on Pt/Al2O3 and Pd/Al2O3 catalysts with CeO2, CeO2–Y2O3 and La2O3 as coatings, Journal of Rare Earth 2023, 41(8), 1171-1178. PDF, WWW
2022
51. 应天彪、张瑞娜、刘华彦、崔国凯、卢晗锋*《离子液体体系吸收分离芳香族挥发性有机化合物的研究进展》石油化工,2022, 51(12), 1465-1476 WWW
50. Zhang, Z.*;  Zhang, D.;  Lyu, L.;  Cui, G.;  Lu, H.*, In Situ Formation of Z-Scheme Bi2WO6/WO3 Hterojuctions for Gas-Phase CO2 Photoreduction with H2O by Photohydrothermal Treatment. Catalysts 2022, 12(10), 1237. PDF, WWW
49. Zhang, R.;  Zhang, Z.;  Ke, Q.;  Zhou, B.;  Cui, G.*;  Lu, H.*, Covalent Organic Frameworks with Ionic Liquid-Moieties (ILCOFs): Structures, Synthesis, and CO2 conversion. Nanomaterials 2022, 12(20), 3615. PDF, WWW
48. Zhang, R.;  Ke, Q.;  Zhang, Z.; Zhou, B.;  Cui, G.*; Lu, H.*, Tuning Functionalized Ionic Liquids for CO2 Capture. Int. J. Mol. Sci. 2022, 23(19), 11401. PDF, WWW
47. Liu, Y.;  Zhou, Y.;  Ke, Q.;  Lu, M.;  Zhou, W.;  Cui, G.;  Weng, X.; Lu, H., Enhanced catalytic oxidation of diluted ethylene oxide on Pt/CeO2 catalyst under low temperature. Applied Catalysis A: General 2022, 639, 118642.
46. Wu, T.;  Ke, Q.;  Lu, M.;  Pan, P.;  Zhou, Y.;  Gu, Z.;  Cui, G.; Lu, H., Recent Advances in Carbon-Silica Composites: Preparation, Properties, and Applications. Catalysts 2022,12 (5), 573 
2021
45. Zhang, Z.;  Wang, Y.;  Cui, G.;  Liu, H.;  Abanades, S.; Lu, H., Improvement of CO2 Photoreduction Efficiency by Process Intensification. Catalysts 2021,11 (8), 912 
44. Zhang, Z.;  Wang, Y.;  Cui, G.;  Lu, H.; Abanades, S., Remarkable CO2 photoreduction activity using TiO2 nanotube arrays under favorable photothermal conditions driven by concentrated solar light. Appl. Phys. Lett. 2021,119 (12), 123906 
43. 徐奕莎、崔国凯*、葛春亮、周瑛、柯权力、卢晗锋*《低共熔溶剂在CO2捕集分离中的应用》能源环境保护,2021, 35(6), 10-17 WWW
42.Cui, G.*, Quasi-chemisorption by Ionic Liquids Through Quasi-chemical Interaction. In Encyclopedia of Ionic Liquids, Zhang, S., Ed. Springer Singapore: Singapore, 2021; pp 1-8  
41.Cui, G.*;  Lyu, S.;  Wang, H.;  Li, Z.;  Zhang, R.; Wang, J.*, Tuning the structure of pyridinolate-based functional ionic liquids for highly efficient SO2 absorption. Fuel2021,303, 121311 
40. Cui, G.;  Jiang, K.;  Liu, H.;  Zhou, Y.;  Zhang, Z.;  Zhang, R.; Lu, H.*, Highly efficient CO removal by active cuprous-based ternary deep eutectic solvents [HDEEA][Cl] + CuCl + EG. Sep. Purif. Technol.2021,274, 118985 
39. Cui, G.*;  Liu, J.;  Lyu, S.;  Wang, H.;  Li, Z.;  Zhang, R.*; Wang, J.*, SO2 absorption in highly efficient chemical solvent AChBr + Gly compared with physical solvent ChBr + Gly. J. Mol. Liq.2021,330, 115650 
2020
38. Cui, G.*;  Lyu, S.;  Zhang, F.;  Wang, H.;  Li, Z.;  Li, Y.; Wang, J.*, Tuning Ionic Liquids with Functional Anions for SO2 Capture through Simultaneous Cooperation of N and O Chemical Active Sites with SO2. Ind. Eng. Chem. Res.2020,59 (49), 21522-21529 
37. Gao, S.;  Zhang, P.*;  Wang, Z.;  Cui, G.;  Qiu, J.; Wang, J.*, Ionic Liquid Functionalized 3D Mesoporous FDU-12 for Effective SO2 Capture. ACS Sustainable Chem. Eng. 2020,8 (1), 586-593
36. 崔国凯, 吕书贞, 王键吉*, 《功能化离子液体在二氧化碳吸收分离中的应用》, 化工学报, 2020, 71, 16-25WWW
【2022年入选:中国科协2022年度“科技期刊双语传播工程”WWW】
【2023年入选:中国科学技术信息研究所“精品期刊顶尖论文平台——领跑者5000(F5000)”】
2019
35. Cui, G.*; Liu, J.; Lyu, S.; Wang, H.; Li, Z.; Wang, J.*; Efficient and Reversible SO2 Absorption by Environmentally Friendly Task-Specific Deep Eutectic Solvents of PPZBr + Gly, ACS Sustainable Chem. Eng., 2019, 7, 14236-14246 
34. Huang, Y.; Cui, G.; Wang, H.; Li, Z.; Wang, J.* Absorption and thermodynamic properties of CO2 by amido-containing anion-functionalized ionic liquids, RSC Adv., 2019, 28, 299-305. 
33. Li, P.; Chen, H.; Schott, J.; Li, B.; Zheng, Y.; Mahurin, S.; Jiang, D.; Cui, G.; Hu, X.; Wang, Y.; Li, L.; Dai, S.* Porous Liquid Zeolites: Hydrogen Bonding-Stabilized H-ZSM-5 in Branched Ionic Liquids, Nanoscale, 2019, 28, 299-305. 
32. Huang, Y.; Cui, G.*; Zhao, Y. Wang, H.; Li, Z.; Dai, S.; Wang, J.* Reply to the Correspondence on “Preorganization and Cooperation for Highly Efficient and Reversible Capture of Low‐Concentration CO2 by Ionic Liquids”, Angew. Chem. Int. Ed., 2019, 58 (2), 386-389. 
2018
31. Huang, Y.; Cui, G.*; Wang, H.; Li, Z.; Wang, J.* Tuning ionic liquids with imide-based anions for highly efficient CO⁠2 capture through enhanced cooperations, J. CO2 Util., 2018, 28, 299-305. 
30. Cui, G.*; Li, Y.; Liu, J.; Wang, H.; Li, Z.; Wang, J.* Tuning environmentally friendly chelate-based ionic liquids for highly efficient and reversible SO2 chemisorption, ACS Sustainable Chem. & Eng., 2018, 6 (11), 15292-15300. 
2017
29. Huang, Y.; Cui, G.*; Zhao, Y. Wang, H.; Li, Z.; Dai, S.; Wang, J.* Preorganization and Cooperation for Highly Efficient and Reversible Capture of Low-Concentration CO2 by Ionic Liquids, Angew. Chem. Int. Ed., 2017, 56 (43), 13293-13297. 【学校报道】
28. Li, P.; Schott, J. A.; Zhang, J.*; Mahurin, S. M.*; Sheng, Y.; Qiao, Z.-A.; Hu, X.; Cui, G.; Yao, D.; Brown, S.; Zheng, Y.; Dai, S.* Electrostatic-Assisted Liquefaction of Porous Carbons, Angew. Chem. Int. Ed.,2017, 56 (47), 14958-14962. 
27. Cui, G.*; Zhao, N.; Li, Y.; Wang, H.; Zhao, Y.; Li, Z.; Wang, J.* Limited Number of Active Sites Strategy for Improving SO2 Capture by Ionic Liquids with Fluorinated Acetylacetonate Anion, ACS Sustainable Chem. & Eng., 2017, 5 (9), 7985-7992. 
26. Cui, G.; Zhao, N.; Wang, J.; Wang, C.* Computer-Assisted Design of Imidazolate-Based Ionic Liquids for Improving Sulfur Dioxide Capture, Carbon Dioxide Capture, and Sulfur Dioxide/Carbon Dioxide Selectivity, Chem. -Asian J., 2017 12 (21), 249-2872. 
25. Zhao, Y.; Tian, L.; Qiu, J.; Li, Z.; Wang, H.; Cui, G.; Zhang, S.; Wang, J.* Remarkable synergistic effect between copper(I) and ionic liquids for promoting chemical fixation of CO2, J. CO2 Util., 2017, 22, 374-381. 
2016
24. Yao, W.; Wang, H.; Cui, G.; Li, Z.; Wang, J. Tuning Phase Behaviour of PEG-Functionalized Ionic Liquids from UCST to LCST in Alcohol-Water Mixtures, Phys. Chem. Chem. Phys., 2016, 18, 29192-29198. 
23. Zhang, F.; Cui, G.; Zhao, N.; Huang, Y.; Zhao, Y.; Wang, J.* Improving SO2 capture by basic ionic liquids in acid gas mixture (10% vol SO2) through tethering formyl group to the anions, RSC Adv., 2016, 6, 86082-86088. 
22. Cui, G.; Zhao, N.; Zhang, F.; Wang, J.* Progress in SO2 capture by ionic liquids, Chinese Science Bulletin (in Chinese), 2016, 61 (28-29), 3115-3126.  封面文章
【2017年入选:《科学通报》2016年度最佳封面WWW】
21. Cui, G.; Wang, J.*; Zhang, S. Active chemisorption sites in functionalized ionic liquids for carbon capture, Chem. Soc. Rev., 2016, 45 (15), 4307-4339.  ESI 高被引【学校报道】
20. Yao, W.; Wang, H.; Cui, G.; Li, Z.; Zhu, A.; Zhang, S.; Wang, J.* Tuning Hydrophilicity/Hydrophobicity of Cation and Anion for Reversible Phase Transfer of Ionic Liquids, Angew. Chem. Int. Ed.,2016, 55 (28), 7934-7938. 
19. Qiu, J.; Zhao, Y.; Wang, H.; Cui, G.; Wang, J.* AgX@Carbon (X=Br and I) as robust and efficient catalysts for the reaction of propargylic alcohols and CO2 to carbonates under ambient conditions, RSC Adv., 2016, 6, 54020-54026. 
18. Wang, H.; Li, H.; Cui, G.; Li, Z.; Wang, J.'Recent Progress in Self-Assembly of Ionic Liquid Surfactants and Its Regulation and Control in Aqueous Solutions', Acta Phys. -Chim. Sin.(in Chinese), 2016, 32 (1), 249-260. 
2015
17. Chen, L.; Chen, J.; Song, Z.; Cui, G.; Xu, Y.*; Wang, X.; Liu, J.  Densities, viscosities, and excess properties of binary mixtures of two imidazolide anion functionalized ionic liquids with water at T = (293.15 to 313.15) K, J. Chem. Thermodyn. 2015, 91, 292-300. 
16. Cui, G.; Zhang, F.; Zhou, X.; Huang, Y.; Xuan, X.; Wang, J.* Acylamido-based anion-functionalized ionic liquids for efficient SO2 capture through multiple-site interactions, ACS Sustainable Chem. &Eng., 2015, 3 (9), 2264-2270. 
15. Cui, G.*; Huang, Y.; Zhang, R.; Zhang, F.; Wang, J.* Highly efficient and reversible SO2 capture by halogenated carboxylate ionic liquids, RSC Adv., 2015, 5, 60975-60982. 
14. Xiong, D.; Cui, G.;Wang, J.*; Wang, H.; Li, Z.; Yao, K.; Zhang, S., Reversible Hydrophobic-Hydrophilic Transition of Ionic Liquids Driven by Carbon Dioxide, Angew. Chem. Int. Ed., 2015, 54 (25), 7265-7269. 
13. Cui, G.; Zhang, F.; Zhou, X.; Li, H.; Wang, J.; Wang, C.* Tuning the Basicity of Cyano-containing Ionic Liquids to Improve SO2 Capture through Cyano–sulfur interaction, Chem. -Eur. J., 2015, 21(14), 5632-5639. 
2014
12. Ding, F.; Zheng, J.; Chen, Y.; Chen, K.; Cui, G.; Li, H.; Wang, C.* Highly efficient and reversible SO2 capture by surfactant-derived dual functionalized ionic liquids with metal chelate cations, Ind. Eng. Chem. Res., 2014, 53 (48), 18568-18574. 
11. Zhou, L.; Fan, J.*; Cui, G.; Shang, X.; Tang, Q.; Wang, J.*; Fan, M. Highly efficient and reversible CO2 adsorption by amine-grafted platelet SBA-15 with expanded pore diameter and short mesochannels, Green Chem., 2014, 16, 4009-4016. 
10. Luo, X.; Guo, Y.; Ding, F.; Zhao, H; Cui, G.; Li, H.; Wang, C.* Significant Improvements in CO2 Capture by Pyridine-Containing Anion-Functionalized Ionic Liquids through Multiple-Site Cooperative Interactions, Angew. Chem. Int. Ed., 2014, 53 (27), 7053-7057.  
9. Cui, G.; Lin, W.; Ding, F.; Luo, X.; He, X.; Li, H.; Wang, C.* Highly efficient SO2 capture by phenyl-containing azole-based ionic liquids through multiple-site interactions, Green Chem., 2014, 16, 1211-1216. 
2010-2013
8. Cui, G.; Zheng, J.; Luo, X.; Lin, W.; Ding, F.; Li, H.; Wang, C.* Tuning Anion-Functionalized Ionic Liquids for Improved SO2 Capture, Angew. Chem. Int. Ed., 2013, 52 (40), 10620-10624. 
7. Cui, G.; Qian, C.; Li, H.; Wang, C.* Research Progress in Organic Reaction by Ionic Liquids Intensification, Chemical Reaction Engineering and Technology (in Chinese), 2013, 29 (3), 281-288. 
6. Wang, C.*; Luo, X.; Zhu, X.; Cui, G.; Jiang, D.; Deng, D.; Li, H.; Dai, S.* The Strategies for Improving Carbon Dioxide Chemisorption by Functionalized Ionic Liquids, RSC Adv., 2013, 3, 15518-15527. 
5. Wang, C.*; Zheng, J.; Cui, G.; Luo, X.; Guo, Y.; Li, H.* Highly Efficient SO2 Capture through Tuning the Interaction Between Anion-functionalized Ionic Liquids and SO2, Chem. Commun., 2013, 49 (12), 1166-1169 (selected as the back cover). 
4. Wang, C.*; Guo, Y.; Zhu, X.; Cui, G.; Li, H.; Dai, S.* Highly Efficient CO2 Capture by Tunable Alkanolamine-Based Ionic Liquids with Multidentate Cation Coordination, Chem. Commun.,2 012, 48, 6526-6528. 
3. Cui, G.; Wang, C.*; Zheng, J.; Guo, Y.; Luo, X.; Li, H.* Highly Efficient SO2Capture by Dual Functionalized Ionic Liquids through a Combination of Chemical and Physical Absorption, Chem. Commun., 2012, 48 (20), 2633-2635. 
2. Wang, C.*; Cui, G.; Luo, X.; Xu, Y.; Li, H.*; Dai, S.* Highly Efficient and Reversible SO2Capture by Tunable Azole-based Ionic Liquids through Multiple-Site Chemical Absorption, J. Am. Chem. Soc., 2011, 133 (31), 11916-11919. 
1. Guo, L.; Wang, C.*; Luo X.; Cui, G.; Li, H.* Probing catalytic activity of halide salts by electrical conductivity in the coupling reaction of CO2 and propylene oxide, Chem. Commun., 2010, 46 (32), 5960-5962.
发明专利:
16、崔国凯,任成瑜,卢晗锋,周瑛,张瑞娜,刘华彦,一种离子液体与二元酚复合体系吸收一氧化碳的方法,ZL202211629946.5,授权日:2025.04.22
15、张泽凯,严威,章鼎,崔国凯,卢晗锋,一种高温半导体催化剂及其应用,ZL202211741355.7,授权日:2024.12.24
14、卢晗锋,潘鹏云,柯权力,刘华彦,周瑛,张泽凯,崔国凯,吴天浩,一种应用于潮湿环境下CO2捕集的掺杂过渡金属的分子筛及其制备方法和应用,ZL202211568157.5,授权日:2024.08.20
13、柯权力,潘鹏云,刘华彦,干悦,卢晗锋,朱秋莲,张泽凯,崔国凯,一种用预吸附-干燥-原位晶化法合成分子筛整体材料的方法,ZL202210525777.4,授权日:2024.04.26
12、卢晗锋,宋升,崔国凯,刘华彦,黄昊,周瑛,双功能离子液体联合无机碱液的复合吸收剂及其应用,ZL202111161387.5,授权日:2024.08.20
11、刘华彦,干悦,柯权力,卢晗锋,张泽凯,朱秋莲,崔国凯,一种等级孔整体型分子筛催化剂及其制备方法和应用,ZL202110777360.2,授权日:2023.03.28
10、卢晗锋,蒋康,崔国凯,周瑛,刘华彦,张瑞娜,一种离子液体/氯化亚铜/醇体系反应吸收一氧化碳的方法,202011111649.2
9、崔国凯,王键吉,张峰涛,李志勇,裴渊超,王慧勇,赵玉灵,一种含硝基的离子液体用于吸收二氧化硫气体的方法,201410658725.X
8、王键吉,崔国凯,熊大珍,张峰涛,赵玉灵,李志勇,王慧勇,裴渊超,一种含酰胺基的阴离子功能化离子液体及其制备方法和应用,201410446467.9
7、王键吉,崔国凯,黄艳杰,周秀鸳,裴渊超,赵玉灵,王慧勇,李志勇,一种采用离子液体/醚基聚合物复配体系捕集二氧化碳的方法,201410658556.X
6、王键吉,姚文惠,陈永魁,王慧勇,李志勇,崔国凯,赵玉灵,一类PEG功能化的双咪唑阳离子温控离子液体及其制备方法和应用,201410450571.5
5、王键吉,熊大珍,崔国凯,王慧勇,李志勇,一类可利用CO2调控相行为的离子液体及其制备方法和应用,201410446492.7
4、王从敏,崔国凯,李浩然,一种利用卤硫作用提高二氧化硫捕集性能的方法,201310053538.4
3、王从敏,郭燕,崔国凯,李浩然,一种利用多位点协同效应来明显提高碳捕集性能的方法,201210447158.4
2、王从敏,崔国凯,李浩然,一种采用唑基离子液体捕集二氧化硫的方法,201110132899.9
1、王从敏,李浩然,崔国凯,胡兴邦,郭丽萍,一种用离子液体支载催化剂制备聚醚酮的方法,200810120729.7
科研项目:
近年来主持的主要研究项目:
7、浙江省2024年度“尖兵领雁+X”研发攻关计划(浙江省重点研发项目),低能耗烟气碳捕集材料与技术研发-基于离子液体的低能耗烟气碳捕集技术与装备研发,No. 2024C03108,2024.01-2026.12
6、国家自然科学基金(面上),共价有机框架限域接枝离子液体的结构调控及氢键协同捕集CO的研究,No. 22378353,2024.01-2027.12
5、国家自然科学基金(面上),离子液体杂化材料的结构设计及其选择性吸附高湿度低浓度BTX的研究,No. 22078294,2021.01-2024.12
4、中国神华煤制油化工有限公司上海研究院,催化剂及优 化应用样品分析,No. PWSC-B-CT-TECH-2021-04-20,2021.04-2021.06
3、国家自然科学基金(青年),新型阴离子功能化多位点离子液体的设计合成及其调控SO2捕集行为的研究,No.21403059,2015.01-2017.12
2、河南省基础与前沿技术研究计划项目(河南省自然科学基金),离子液体的结构设计及其应用于二氧化硫气体捕集的研究,No.142300413213,2014.01-2016.12
1、河南省教育厅科学技术研究重点项目,碱性非质子型离子液体的结构与二氧化硫捕集的动力学研究,No.14A150031,2014.01-2016.12

项目合作

合作意向:
技术咨询
在线客服 在线留言 小程序 公众号 4001789689 <<显示