主要代表作(2017年~2024年):
[30]. Yuqi Ren, Yiwei Fu, Naixu Li*, Changjun You, Jie Huang, Kai Huang, Zhenkun Sun, Jiancheng Zhou, Yitao Si, Yuanhao Zhu, Wenshuai Chen, Lunbo Duan* & Maochang Liu*. Concentrated solar CO2 reduction in H2O vapour with >1% energy conversion efficiency. Nature Communications, 15, 4675 (2024). https://doi.org/10.1038/s41467-024-49003-8 (第一单位唯一通讯作者)
[29]. Cheng, M., Si, Y., Naixu Li*,, & Guan, J. (2024). Synergy of Charged Domain Walls in 2D In-Plane Polarized Ferroelectric GeS for Photocatalytic Water Splitting. Journal of the American Chemical Society.doi.org/10.1021/jacs.4c10760(第一单位唯一通讯作者)
[28]. Yuqi Ren, Yitao Si, Mingyue Du, Changjun You, Chunyang Zhang, Yuan-Hao Zhu, Zhenkun Sun, Kai Huang, Maochang Liu, Lunbo Duan, Li Naixu*,"Photothermal Synergistic Effect Induces Bimetallic Cooperation to Modulate Product Selectivity of CO2 Reduction on Different CeO2 Crystal Facets." Angewandte Chemie International Edition: (2024)e202410474.
[27]. Li Naixu, Wang Bingbing, Si Yitao, Xue Fei, Zhou Jiancheng*, Lu Youjun, Liu Maochang*. Toward High-Value Hydrocarbon Generation by Photocatalytic Reduction of CO2 in Water Vapor. ACS Catalysis( IF 13.7) , 2019, 9, 5590-5602.
[26]. Jinghang Chen, Yuqi Ren, Yiwei Fu, Yitao Si, Jie Huang, Jiancheng Zhou*, Maochang Liu*, Lunbo Duan, and Naixu Li*,Integration of Co Single Atoms and Ni Clusters on Defect-Rich ZrO2 for Strong Photothermal Coupling Boosts Photocatalytic CO2 Reduction, ACS Nano 2024, 18, 20, 13035–13048
[25]. Fu Y, Lu K, Wang Y, Si Y, Shi J, Li Naixu*, Zhou Z, Liu M. Hemilabile single-atom catalysts facilitating photothermal synergetic catalysis. Science bulletin, S2095-9273 (24) 00290-1. doi: 10.1016/j.scib.2024.04.041.
[24]. Zhu, F., Chen, X. M*., Ge, Y., Li, M., Li Naixu*, Zhou, J.*, & Chen, W*. Orthogonal Three‐Wavelength‐Controlled Two‐Stage Supramolecular Self‐Assemblies. Advanced Functional Materials( IF 19) , 2023, 2312155.
[23]. Wang, K., Ren, Y., Wang, N., Cheng, M., Zhou, J., Ge, Y., & Li Naixu*,. Band-division utilization of core-shell photocatalyst under condenser solar-light and enhancement of synergistic catalytic CO2 reduction. Chemical Engineering Journal( IF 16.744 ) , 2023, 147529.
[22]. Danchen Lu, Yuqi Ren, Ya Yang, Miao Cheng, Ke Wang, Nan Wang, Maochang Liu, Jiancheng Zhou, Wenshuai Chen, Li Naixu*, Boosted photocatalytic CO2 reduction by induced electromotive force in rotating magnetic field, Nano Energy ( IF 19.069) , 2023, 108578
[21]. Liu, B., Cheng, M., Zhang, C., Si, Y., Zhou, J., Ren, Y., L, Li Naixu*. Au-Cu Dual-single-atom Sites on Bi2WO6 with Oxygen Vacancy for CO2 Photoreduction towards Multicarbon Products. Applied Catalysis B: Environment and Energy, 2024, 124263.
[20]. Biao Kong, Yuqi Ren, Maochang Liu, Jiancheng Zhou, Ke Wang, Nan Wang, Li Naixu*, Solar-wind energy complementary coupling realizes magnetic-field assisted efficient photocatalytic CO2 reduction, Applied Catalysis B: Environmental, ( IF 24.319 ) Volume 334, 2023, 122858,
[19]. Lei Xu, Yuqi Ren, Yiwei Fu, Maochang Liu, Fengfan Zhu, Miao Cheng, Jiancheng Zhou, Wenshuai Chen, Ke Wang, Nan Wang, Li Naixu*, Strong photo-thermal coupling effect boosts CO2 reduction into CH4 in a concentrated solar reactor, Chemical Engineering Journal( IF 16.744 ) , Volume 468, 2023, 143831
[18]. Mengyao Li, Fengfan Zhu, Yang Ge, Jiancheng Zhou, Xu-Man Chen*, Wenshuai Chen*, and Li Naixu*, Vulcanized Layered Double Hydroxide Nanosheet Composite Hydrogels as Efficient Near-Infrared Light-Fueled Soft Actuators , ACS Materials Lett. ( IF 11.17 ) 2023, 5, 1841–1850
[17]. Zhu Tang, F. Zhu, J. Zhou, W. Chen, K. Wang, M. Liu, N. Wang, Naixu Li*, Monolithic NF@ZnO/Au@ZIF-8 photocatalyst with strong photo-thermal-magnetic coupling and selective-breathing effects for boosted conversion of CO2 to CH4, Applied Catalysis B: Environmental ( IF 24.319 ) , 2022, 121267, https://doi.org/10.1016/j.apcatb.2022.121267.
[16]. Shujian Wang, Kejian Lu, Anlan Hu, Naixu Li*, Yeti Feng, Dengwei Jing, and Maochang Liu* Decoupling gaseous hydrogen production from liquid water using a magnetic‐photo‐thermal coupling reactor, AIChE Journal ( IF 4.167 ,化工顶级期刊) 2022, DOI: 10.1002/aic.17855,(聚焦磁光热三场耦合强化反应过程)
[15]. Yu Huang, Kang Li, Jiancheng Zhou, Jie Guan*, Fengfan Zhu, Ke Wang, Maochang Liu*, Wenshuai Chen, Naixu Li*, Nitrogen-stabilized oxygen vacancies in TiO2 for site-selective loading of Pt and CoOx cocatalysts toward enhanced photoreduction of CO2 to CH4, Chemical Engineering Journal ( IF 16.744 ) 2022, 135744, https://doi.org/10.1016/j.cej.2022.135744.
[15]. Li Naixu*, Zheng Yu, Wei Lingfei, Teng Hongcheng, Zhou Jiancheng*. Metal nanoparticles Supported on WO3 Nanosheets for Highly Selective Hydrogenolysis of Cellulose to Ethylene Glycol. Green Chemistry( IF 11.034 ) , 2017, 19, 682-691.
[13]. Li Naixu*, Jiang Rumeng, Li Yao, Zhou Jiancheng, Ma Quanhong, Shen Shaohua, Liu Maochang*. Plasma-Assisted Photocatalysis of CH4 and CO2 into Ethylene. ACS Sustainable Chemistry & Engineering ( IF 9.224 ) , 2019, 7, 11455-11463.
[12]. Wang Ke, Cheng Miao, Wang Nan, Zhang Qianyi, Liu Yi, Liang Junwei, Guan Jie, Liu Maochang, Zhou Jiancheng, Li Naixu*. Inter-plane 2D/2D ultrathin La2Ti2O7/Ti3C2 MXene Schottky heterojunctions toward high-efficiency photocatalytic CO2 reduction[J]. Chinese Journal of Catalysis( IF 12.92) , DOI: 10.1016/S1872-2067(22)64155-X.
[11]. Li Naixu*, Ji Zhongxiang, Wei Lingfei, Zheng Yu, Shen Quanhao, Ma Quanhong, Tan Menglu, Zhan Mengmeng, Zhou Jiancheng*. Effect of the Surface Acid Sites of Tungsten Trioxide for Highly Selective Hydrogenation of Cellulose to Ethylene Glycol. Bioresource Technology( IF 11.889 ), 2018, 264, 58-65.
[10]. Li Naixu, Fu Wenlong, Chen Chen, Liu Maochang*, Xue Fei, Shen Quanhao, Zhou Jiancheng. Controlling the Core-Shell Structure of CuS@CdS Heterojunction via Seeded Growth with Tunable Photocatalytic Activity. ACS Sustainable Chemistry & Engineering ( IF 9.224 ) , 2018, 6, 15867-15875.
[9]. Li Naixu*; Liu, X.; Zhou, J.; Chen, W.*; Liu, M.* Encapsulating CuO quantum dots in MIL-125(Ti) coupled with g-C3N4 for efficient photocatalytic CO2 reduction. Chemical Engineering Journal( IF 16.744 ) 2020, 399, 125782, DOI: https://doi.org/10.1016/j.cej.2020.125782.
[8]. Q Shen, L Wei, R Bibi, K Wang, D Hao, J Zhou*, Naixu Li*. Boosting photocatalytic degradation of tetracycline under visible light over hierarchical carbon nitride microrods with carbon vacancies." Journal of Hazardous Materials ( IF 14.244 ) 413 (2021): 125376.
[7]. Bibi Rehana, Huang Hailu, Kalulu Mulenga, Shen Quanhao, Wei Lingfei, Oderinde Olayinka, Li Naixu*, Zhou Jiancheng*. Synthesis of Amino-Functionalized Ti-MOF Derived Yolk-Shell and Hollow Heterostructures for Enhanced Photocatalytic Hydrogen Production under Visible Light. ACS Sustainable Chemistry & Engineering ( IF 9.224 ) , 2019, 7, 4868-4877.
[6]. Li Naixu; Liu, X.; Zhou, J.*; Ma, Q.; Liu, M*.; Chen, W*. Enhanced Ni/W/Ti Catalyst Stability from Ti–O–W Linkage for Effective Conversion of Cellulose into Ethylene Glycol. ACS Sustainable Chemistry & Engineering ( IF 9.224 ) 2020, DOI: 10.1021/acssuschemeng.0c00836.
[5]. Naixu Li*, Y Tu, K Wang, D Huang, Q Shen, W Chen*, J Zhou, Q Ma, M Liu*. Construction of a Photo-thermal-magnetic coupling reaction system for enhanced CO2 reduction to CH4. Chemical Engineering Journal( IF 16.744 ) .421 (2021): 129940.
[4]. K Wang, X Li, N Wang, Q Shen, M Liu, J Zhou, Naixu Li*. Z-Scheme Core–Shell meso-TiO2@ ZnIn2S4/Ti3C2 MXene Enhances Visible Light-Driven CO2-to-CH4 Selectivity[J]. Industrial & Engineering Chemistry Research ( 三大化工期刊,IF 4.326 ), 2021.60, 24, 8720–8732
[3]. Liu Maochang*, Xue Fei, Wang Xixi, Fu Wenlong, Wang Yi*, Lu Youjun, Li Naixu*, Conformal Deposition of Atomic TiO2 Layer on Chalcogenide Nanorod with Excellent Activity and Durability Towards Solar H2 Generation. Chemical Engineering Journal( IF 16.744 ) , 2018, 341, 335-343.
[2]. Naixu Li, M Huang, J Zhou*, M Liu, D Jing*. MgO and Au nanoparticle Co-modified g-C3N4 photocatalysts for enhanced photoreduction of CO2 with H2O." Chinese Journal of Catalysis( IF 12.92 ) 42.5 (2021): 781-794.
[1]. Li Naixu, Yang Bin, Liu Ming, Chen Yong, Zhou Jiancheng*. Synergetic Photo-epoxidation of Propylene with Molecular Oxygen over Bimetallic Au-Ag/TS-1 Photocatalysts. Chinese Journal of Catalysis( IF 12.92) , 2017, 38, 831-843.
专著:
[1]. Liu, M., Liu, F., Xue, F., Shi, J., Huang, H., & Naixu Li*, (2024). Photocatalytic Hydrogen Production Over CdS‐based Photocatalysts. Water Photo‐and Electro‐Catalysis: Mechanisms, Materials, Devices, and Systems, 35-106. https://doi.org/10.1002/9783527831005.ch2
2024年度代表性文章(第一作者或通讯作者发表):
[74]. Cheng, M., Si, Y., Naixu Li*,, & Guan, J. (2024). Synergy of Charged Domain Walls in 2D In-Plane Polarized Ferroelectric GeS for Photocatalytic Water Splitting. Journal of the American Chemical Society.doi.org/10.1021/jacs.4c10760(第一单位唯一通讯作者)
[73]. Yuqi Ren, Yitao Si, Mingyue Du, Changjun You, Chunyang Zhang, Yuan-Hao Zhu, Zhenkun Sun, Kai Huang, Maochang Liu, Lunbo Duan, Li Naixu*, "Photothermal Synergistic Effect Induces Bimetallic Cooperation to Modulate Product Selectivity of CO2 Reduction on Different CeO2 Crystal Facets." Angewandte Chemie International Edition: (2024)e202410474.
[72]. Yuqi Ren, Yiwei Fu, Naixu Li*, Changjun You, Jie Huang, Kai Huang, Zhenkun Sun, Jiancheng Zhou, Yitao Si, Yuanhao Zhu, Wenshuai Chen, Lunbo Duan* & Maochang Liu*. Concentrated solar CO2 reduction in H2O vapour with >1% energy conversion efficiency. Nature Communications, 15, 4675 (2024). https://doi.org/10.1038/s41467-024-49003-8 (第一单位唯一通讯作者)
[71]. Jinghang Chen, Yuqi Ren, Yiwei Fu, Yitao Si, Jie Huang, Jiancheng Zhou*, Maochang Liu*, Lunbo Duan, and Naixu Li*,Integration of Co Single Atoms and Ni Clusters on Defect-Rich ZrO2 for Strong Photothermal Coupling Boosts Photocatalytic CO2 Reduction, ACS Nano 2024, 18, 20, 13035–13048
[70]. Fu Y, Lu K, Wang Y, Si Y, Shi J, Li Naixu*, Zhou Z, Liu M. Hemilabile single-atom catalysts facilitating photothermal synergetic catalysis. Science bulletin, S2095-9273 (24) 00290-1. doi: 10.1016/j.scib.2024.04.041.
[69]. Liu, B., Cheng, M., Zhang, C., Si, Y., Zhou, J., Ren, Y., L, Li Naixu*. Au-Cu Dual-single-atom Sites on Bi2WO6 with Oxygen Vacancy for CO2 Photoreduction towards Multicarbon Products. Applied Catalysis B: Environment and Energy, 2024, 124263.
[68]. Wang, N., Zhu, F., Liu, M., Zhou, J., Zhang, Y., Ge, Y., & Li Naixu* (2024). Synthesis, adsorption and theoretical calculation study of the two polar-modified hyper-cross-linked resins for efficient removal of o-toluidine from aqueous solution. Journal of the Taiwan Institute of Chemical Engineers, 161, 105523.
2023年度代表性文章(第一作者或通讯作者发表):
[67]. Zhu, F., Chen, X. M*., Ge, Y., Li, M., Li Naixu*, Zhou, J.*, & Chen, W*. Orthogonal Three‐Wavelength‐Controlled Two‐Stage Supramolecular Self‐Assemblies. Advanced Functional Materials( IF 19) , 2023, 2312155.
[66]. Wang, K., Ren, Y., Wang, N., Cheng, M., Zhou, J., Ge, Y., & Li Naixu*,. Band-division utilization of core-shell photocatalyst under condenser solar-light and enhancement of synergistic catalytic CO2 reduction. Chemical Engineering Journal( IF 16.744 ) , 2023, 147529.
[65]. Ge, Y., Shen, Q., Zhang, Q., Li Naixu*, Lu, D., Zhang, Z., ... & Zhou, J. Sulfur and carbon co-doped g-C3N4 microtubes with enhanced photocatalytic H2 production activity. Frontiers in Energy, 2023,1-12.(约稿)
[64]. Danchen Lu, Yuqi Ren, Ya Yang, Miao Cheng, Ke Wang, Nan Wang, Maochang Liu, Jiancheng Zhou, Wenshuai Chen, Li Naixu*, Boosted photocatalytic CO2 reduction by induced electromotive force in rotating magnetic field, Nano Energy ( IF 19.069) , 2023, 108578
[63]. Biao Kong, Yuqi Ren, Maochang Liu, Jiancheng Zhou, Ke Wang, Nan Wang, Li Naixu*, Solar-wind energy complementary coupling realizes magnetic-field assisted efficient photocatalytic CO2 reduction, Applied Catalysis B: Environmental, ( IF 24.319 ) Volume 334, 2023, 122858,
[62]. Lei Xu, Yuqi Ren, Yiwei Fu, Maochang Liu, Fengfan Zhu, Miao Cheng, Jiancheng Zhou, Wenshuai Chen, Ke Wang, Nan Wang, Li Naixu*, Strong photo-thermal coupling effect boosts CO2 reduction into CH4 in a concentrated solar reactor, Chemical Engineering Journal( IF 16.744 ) , Volume 468, 2023, 143831
[61]. Mengyao Li, Fengfan Zhu, Yang Ge, Jiancheng Zhou, Xu-Man Chen*, Wenshuai Chen*, and Li Naixu*, Vulcanized Layered Double Hydroxide Nanosheet Composite Hydrogels as Efficient Near-Infrared Light-Fueled Soft Actuators , ACS Materials Lett. ( IF 11.17 ) 2023, 5, 1841–1850
[60]. Xiaoting Yu, Fengfan Zhu, Boyi Yang, Jiancheng Zhou, Ke Wang, Nan Wang, Li Naixu*, Novel BiVO4/SiC/Cu2O ternary composite photocatalyst coupled with Carbonized wood for simultaneous water evaporation and purification driven by solar energy, Separation and Purification Technology ( IF 9.136 ), 2023, 124307
[59]. Maoqi Liu, Nan Wang, Miao Cheng, Fengfan Zhu, Yanhua Qin, Jiancheng Zhou*, Jie Guan, Yang Ge, Huaiyuan Zhu, Wenshuai Chen*, and Li Naixu*. Promotion of Photocatalytic Lignin Models Cβ–O Bond Cleavage by Cr-Doped Zinc Indium Sulfide in Alkaline Solvent[J]. The Journal of Physical Chemistry C ( IF 4.17 ) , 2023.https://doi.org/10.1021/acs.jpcc.3c01905
[58]. Meiqi Wu, Yuqi Ren, Fengfan Zhu, Jiancheng Zhou, Quanhong Ma*, Kai Huang*, Ke Wang, and Li Naixu*. Photothermal Coupling Effect Boosts the Conversion of CO2 to Solar Fuel Over Pt/ZnO Photocatalyst in a Concentrated Solar Reactor, Industrial & Engineering Chemistry Research ( IF 4.326 ) . 2023, https://doi.org/10.1021/acs.iecr.3c01279
[57]. Fengfan Zhu, Qinghe Fu, Min Yu, Jiancheng Zhou, Li Naixu*, Fang Wang, Synthesis and curing properties of multifunctional castor oil-based epoxy resin, Polymer Testing, ( IF 4.931) Volume 122, 2023, 108017,
[56]. Qingwen Tian, Q Yang, W Guo, Xiang Li, Guigan Fang, Yang Ge, Xingjian Liu, Hang Yin, Aixiang Pan, Li Naixu*, Synergy of adsorption-photocatalysis and enriched surface oxygen vacancies over lignin-biochar/Bi2MoO6 nanocomposites for organic pollutant removal and bamboo ECF bleaching effluent treatment, Industrial Crops and Products, ( IF 6.449) Volume 191, Part A, 2023, 115966,
2022年度以第一作者或通讯作者发表代表性文章:
[55]. Wang Ke, Cheng Miao, Wang Nan, Zhang Qianyi, Liu Yi, Liang Junwei, Guan Jie, Liu Maochang, Zhou Jiancheng, Li Naixu*. Inter-plane 2D/2D ultrathin La2Ti2O7/Ti3C2 MXene Schottky heterojunctions toward high-efficiency photocatalytic CO2 reduction[J]. Chinese Journal of Catalysis( IF 12.92) , DOI: 10.1016/S1872-2067(22)64155-X.
[54]. Shujian Wang, Kejian Lu, Anlan Hu, Naixu Li*, Yeti Feng, Dengwei Jing, and Maochang Liu* Decoupling gaseous hydrogen production from liquid water using a magnetic‐photo‐thermal coupling reactor, AIChE Journal ( IF 4.167 ,化工顶级期刊) 2022, DOI: 10.1002/aic.17855,(聚焦磁光热三场耦合强化反应过程)
[53]. Wang, N., Jin, Y., Huang, T., Zhou, J., Zhang, Y., & Naixu Li* (2022). Continuous production of 3, 5, 5-trimethylhexanoyl chloride and CFD simulations of single-phase flow in an advanced-flow reactor. Journal of the Taiwan Institute of Chemical Engineers( IF 5.477 ) 2022, 138, 104465.(课题组关注化工过程本质安全,面向电子、制药等高精细化学品制备,采用微通道反应装备合成制备化学品)
[52]. Yu Huang, Kang Li, Jiancheng Zhou, Jie Guan*, Fengfan Zhu, Ke Wang, Maochang Liu*, Wenshuai Chen, Naixu Li*, Nitrogen-stabilized oxygen vacancies in TiO2 for site-selective loading of Pt and CoOx cocatalysts toward enhanced photoreduction of CO2 to CH4, Chemical Engineering Journal ( IF 16.744 ) 2022, 135744, https://doi.org/10.1016/j.cej.2022.135744.
[51]. Zhu Tang, F. Zhu, J. Zhou, W. Chen, K. Wang, M. Liu, N. Wang, Naixu Li*, Monolithic NF@ZnO/Au@ZIF-8 photocatalyst with strong photo-thermal-magnetic coupling and selective-breathing effects for boosted conversion of CO2 to CH4, Applied Catalysis B: Environmental( IF 24.319 ) , 2022, 121267, https://doi.org/10.1016/j.apcatb.2022.121267.
2021年度以第一作者或通讯作者发表代表性文章:
[50]. Xin Chen, Ming Zhang, Haowei Qin, JC Zhou*, Quanhao Shen, Ke Wang, Wenshuai Chen*, Maochang Liu, Naixu Li*, Synergy effect between adsorption and heterogeneous photo-Fenton-like catalysis on LaFeO3/lignin-biochar composites for high efficiency degradation of ofloxacin under visible light, Separation and Purification Technology ( IF 9.136 ), 2021,119751
[49]. K Wang, X Li, N Wang, Q Shen, M Liu, J Zhou, Naixu Li*. Z-Scheme Core–Shell meso-TiO2@ ZnIn2S4/Ti3C2 MXene Enhances Visible Light-Driven CO2-to-CH4 Selectivity[J]. Industrial & Engineering Chemistry Research ( 三大化工期刊,IF 4.326 ), 2021.60, 24, 8720–8732
(面向光驱动CO2还原转化高选择性制备CH4太阳燃料,设计并可控制备催化剂。)
[48]. Naixu Li*, Y Tu, K Wang, D Huang, Q Shen, W Chen*, J Zhou, Q Ma, M Liu*. Construction of a Photo-thermal-magnetic coupling reaction system for enhanced CO2 reduction to CH4. Chemical Engineering Journal( IF 16.744 ) .421 (2021): 129940.
(面向光驱动催化CO2转化低效率,以及能量输入不稳定问题,提出了光热磁三场耦合强化反应过程的解决方案,并设计了光热磁反应体系,通过外加磁场改变催化剂表面悬键的构型以及对电子和核的自旋极化引起的磁相互作用,调控反应路径和产物选择性,抑制载流子的复合速率;通过磁感应加热实现催化剂定点定位、高效加热,提高反应性能)
[47]. Q Shen, L Wei, R Bibi, K Wang, D Hao, J Zhou*, Naixu Li*. Boosting photocatalytic degradation of tetracycline under visible light over hierarchical carbon nitride microrods with carbon vacancies." Journal of Hazardous Materials ( IF 14.244 ) 413 (2021): 125376.
[46]. Naixu Li, M Huang, J Zhou*, M Liu, D Jing*. MgO and Au nanoparticle Co-modified g-C3N4 photocatalysts for enhanced photoreduction of CO2 with H2O." Chinese Journal of Catalysis( IF 12.92 ) 42.5 (2021): 781-794.
[45]. Li, Naixu, Duanyang Geng, and Jiancheng Zhou. "Ag and Cu Nanoparticles Synergistically Enhance Photocatalytic CO 2 Reduction Activity of B Phase TiO 2." Catalysis Letters ( IF 2.936 ) (2021): 1-15.
[44]. Naixu Li, X Li, R Pan, M Cheng, J Guan*, J Zhou, M Liu, J Tang*, D Jing*. Efficient Photocatalytic CO2 Reformation of Methane on Ru/La‐g‐C3N4 by Promoting Charge Transfer and CO2 Activation." ChemPhotoChem ( IF 3.679 ) (2021). https://doi.org/10.1002/cptc.202100020
(约稿,与英国伦敦大学学院化工系唐军旺教授和西安交通大学敬登伟教授合作完成)
2020年度以第一作者或通讯作者发表代表性文章:
[43]. Li Naixu; Liu, X.; Zhou, J.*; Ma, Q.; Liu, M*.; Chen, W*. Enhanced Ni/W/Ti Catalyst Stability from Ti–O–W Linkage for Effective Conversion of Cellulose into Ethylene Glycol. ACS Sustainable Chemistry & Engineering ( IF 9.244 ) 2020, DOI: 10.1021/acssuschemeng.0c00836.
[42]. Q Shen, Li Naixu*, R Bibi, N Richard, M Liu, J Zhou, D Jing*. Incorporating nitrogen defects into novel few-layer carbon nitride nanosheets for enhanced photocatalytic H2 production. Applied Surface Science ( IF 7.392 ) 2020,529, 147104
[41]. Li Naixu*; Liu, X.; Zhou, J.; Chen, W.*; Liu, M.* Encapsulating CuO quantum dots in MIL-125(Ti) coupled with g-C3N4 for efficient photocatalytic CO2 reduction. Chemical Engineering Journal ( IF 16.744 ) 2020, 399, 125782, DOI: https://doi.org/10.1016/j.cej.2020.125782.
[40]. Ngulube, R.#, Oderinde, O., Kalulu, M., Pan, R., Ejeromedoghene, O., Li Naixu*, Zhou Jiancheng*. Designing a robust recyclable tricopolymer poly (ionic liquid) macroligand for copper-mediated atom transfer radical polymerization in non-aqueous biphasic systems. New Journal of Chemistry( IF 3.591 ) , 2020, 44, 861-869
2019年度以第一作者或通讯作者发表代表性文章:
[39]. Li Naixu, Wang Bingbing, Si Yitao, Xue Fei, Zhou Jiancheng*, Lu Youjun, Liu Maochang*. Toward High-Value Hydrocarbon Generation by Photocatalytic Reduction of CO2 in Water Vapor. ACS Catalysis( IF 13.7 ) , 2019, 9, 5590-5602.
[38]. Li Naixu*, Li Yao, Jiang Rumeng, Zhou Jiancheng, Liu Maochang*. Photocatalytic Coupling of Methane and CO2 into C2-hydrocarbons over Zn doped g-C3N4 Catalysts. Applied Surface Science( IF 7.392 ) , 2019, 498, 143861.
[37]. Li Naixu*, Jiang Rumeng, Li Yao, Zhou Jiancheng, Ma Quanhong, Shen Shaohua, Liu Maochang*. Plasma-Assisted Photocatalysis of CH4 and CO2 into Ethylene. ACS Sustainable Chemistry & Engineering( IF 9.224 ) , 2019, 7, 11455-11463.
[36]. Li Naixu, Huang Hailu, Bibi Rehana, Shen Quanhao, Ngulube Richard, Zhou Jiancheng*, Liu Maochang*. Noble-Metal-Free MOF Derived Hollow CdS/TiO2 Decorated with NiS Cocatalyst for Efficient Photocatalytic Hydrogen Evolution. Applied Surface Science( IF 7.392 ) , 2019, 476, 378-386.
[35]. Li Naixu*, Cai Yingying, Shen Quanhao, Zhou Jiancheng*. Metal-Organic Framework-Templated Synthesis of Ag/Ni-TiO2 for Enhanced Photocatalytic CO2 Reduction.Journal of Photonics for Energy( IF 1.836 ) , 2019, 10 (2), 023502
[34]. Li Naixu*, Zhang Qi, Bibi Rehana, Shen Quanhao, Ngulube Richard, Liu Yunyi, Zhou Jiancheng*. Catalytic Hydrogenation of Acetic Acid to Acetaldehyde: Synergistic Effect of Bifunctional Co/Ce-Fe Oxide Solid Solution Catalysts. Chinese Journal of Chemistry ( IF 5.56) , 2019, 37, 709-719。
[33]. Shen Quanhao, Bibi Rehana, Wei Lingfei, Hao Dandan, Li Naixu*, Zhou Jiancheng*. Well-Dispersed CoSx Nanoparticles Modified Tubular Sulfur doped Carbon Nitride for Enhanced Photocatalytic H2 Production Activity. International Journal of Hydrogen Energy( IF 7.139 ) , 2019, 44, 14550-14560.
[32]. Hao Dandan, Shen Quanhao, Liu Ju, Wei Lingfei, Bibi Rehana, Fu Bo*, Li Naixu*, Zhou Jiancheng*. Integration of CdS Particles into Sodium Alginate Aerogel with Enhanced Photocatalytic Performance. International Journal of Biological Macromolecules( IF 8.025 ) , 2019, 141, 1111-1117.
[31]. Bibi Rehana, Huang Hailu, Kalulu Mulenga, Shen Quanhao, Wei Lingfei, Oderinde Olayinka, Li Naixu*, Zhou Jiancheng*. Synthesis of Amino-Functionalized Ti-MOF Derived Yolk-Shell and Hollow Heterostructures for Enhanced Photocatalytic Hydrogen Production under Visible Light. ACS Sustainable Chemistry & Engineering( IF 9.224 ) , 2019, 7, 4868-4877.
2018年度以第一作者或通讯作者发表代表性文章:
[30]. Li Naixu*, Ji Zhongxiang, Wei Lingfei, Zheng Yu, Shen Quanhao, Ma Quanhong, Tan Menglu, Zhan Mengmeng, Zhou Jiancheng*. Effect of the Surface Acid Sites of Tungsten Trioxide for Highly Selective Hydrogenation of Cellulose to Ethylene Glycol. Bioresource Technology( IF 11.889), 2018, 264, 58-65.
[29]. Li Naixu, Huo Mengmeng, Li Min, Li Tuoqi, Zhou Jiancheng*, Zhang Jiuyang*. Photochromic Thermoplastics Doped with Nanostructured Tungsten Trioxide. New Journal of Chemistry( IF 3.925 ), 2018, 42, 10885-10890.
[28]. Li Naixu, Fu Wenlong, Chen Chen, Liu Maochang*, Xue Fei, Shen Quanhao, Zhou Jiancheng. Controlling the Core-Shell Structure of CuS@CdS Heterojunction via Seeded Growth with Tunable Photocatalytic Activity. ACS Sustainable Chemistry & Engineering( IF 9.224 ) , 2018, 6, 15867-15875.
[27]. Li Naixu*, Chen Yong, Shen Quanhao, Yang Bin, Liu Ming, Wei Lingfei, Tian Wei, Zhou Jiancheng*. TS-1 Supported Highly Dispersed sub-5 nm Gold Nanoparticles toward Direct Propylene Epoxidation Using H2 and O2. Journal of Solid State Chemistry( IF 3.656 ) , 2018, 261, 92-102.
[26]. Zhang Li, Teng Hongcheng, Zhou Jiancheng. Sun Yueming, Li Naixu*, Liu Maochang*, Jing Dengwei, Synthesis of AgI/Bi2MoO6 Nano-Heterostructure with Enhanced Visible-Light Photocatalytic Property. Progress in Natural Science: Materials International( IF 4.269 ) , 2018, 28, 235-241.
[25]. Wei Lingfei, Bibi Rehana, Zheng Yu, Tian Wei, Chen Lingyu, Li Naixu*, Zhou Jiancheng*. Promoting Effect of Boron on the Stability and Activity of Ni/Mo2C Catalyst for Hydrogenation of Alkali Lignin. Catalysis Letters( IF 3.186 ), 2018, 148, 1856-1869.
[24]. Wei Lingfei, Bibi Rehana, Tian Wei, Chen Lingyu, Zheng Yu, Li Naixu*, Zhou Jiancheng*. Comparative Study of WCx-based Catalysts for Aqueous Phase Hydrogenolysis of Glycerol into Bioadditives. New Journal of Chemistry( IF 3.925 ), 2018, 42, 3633-3641.
[23]. Liu Maochang*, Xue Fei, Wang Xixi, Fu Wenlong, Wang Yi*, Lu Youjun, Li Naixu*, Conformal Deposition of Atomic TiO2 Layer on Chalcogenide Nanorod with Excellent Activity and Durability Towards Solar H2 Generation. Chemical Engineering Journal( IF 16.744 ) , 2018, 341, 335-343.
[22]. Bibi Rehana, Shen Quanhao, Wei Lingfei, Hao Dandan, Li Naixu*, Zhou Jiancheng*. Hybrid BiOBr/UiO-66-NH2 Composite with Enhanced Visible-Light Driven Photocatalytic Activity Toward RhB Dye Degradation. RSC Advances( IF 4.036 ) , 2018, 8, 2048-2058.
2017年度以第一作者或通讯作者发表代表性文章:
[21]. Li Naixu*, Zou Xiaoyue, Liu Ming, Wei Lingfei, Shen Quanhao, Bibi Rehana, Xu Chongjiu, Ma Quanhong, Zhou Jiancheng*. Enhanced Visible Light Photocatalytic Hydrogenation of CO2 into Methane over a Pd/Ce-TiO2 Nanocomposition. The Journal of Physical Chemistry C ( IF 4.177 ) , 2017, 121, 25795-25804.
[20]. Li Naixu*, Zheng Yu, Wei Lingfei, Teng Hongcheng, Zhou Jiancheng*. Metal nanoparticles Supported on WO3 Nanosheets for Highly Selective Hydrogenolysis of Cellulose to Ethylene Glycol. Green Chemistry( IF 11.034 ) , 2017, 19, 682-691.
[19]. Li Naixu*, Yin Jun, Wei Lingfei, Shen Quanhao, Tian Wei, Li Jing, Chen Yong, Jin Jing, Teng Hongcheng, Zhou Jiancheng*. Facile Synthesis of Cellulose Acetate Ultrafiltration Membrane with Stimuli-Responsiveness to pH and Temperature Using the Additive of F127-b-PDMAEMA. Chinese Journal of Chemistry( IF 5.56) , 2017, 35, 1109-1116.
[18]. Li Naixu, Yang Bin, Liu Ming, Chen Yong, Zhou Jiancheng*. Synergetic Photo-epoxidation of Propylene with Molecular Oxygen over Bimetallic Au-Ag/TS-1 Photocatalysts. Chinese Journal of Catalysis( IF 12.92 ) , 2017, 38, 831-843.
[17]. Li Naixu*, Liu Ming, Yang Bin, Shu Weixin, Shen Quanhao, Liu Maochang, Zhou Jiancheng*. Enhanced Photocatalytic Performance Toward CO2 Hydrogenation over Nanosized TiO2-Loaded Pd Under UV Irradiation. The Journal of Physical Chemistry C( IF 4.177 ) , 2017, 121, 2923-2932.
[16]. Tian Wei, Yin Jun, Wei Lingfei, Shen Quanhao, Bibi Rehana, Liu Ming, Yang Bin, Li Naixu*, Zhou Jiancheng*. Hydrothermally Prepared Nanosized and Mesoporous Ce0.4Zr0.6O2 Solid Solutions with Shape Dependence in Photocatalysis for the Degradation of Methylene Blue. RSC Advances( IF 4.036 ), 2017, 7, 17020-17029.
[15]. Bibi Rehana, Wei Lingfei, Shen Quanhao, Tian Wei, Oderinde Olayinka, Li Naixu*, Zhou Jiancheng*. Effect of Amino Functionality on the Uptake of Cationic Dye by Titanium-Based Metal Organic Frameworks. Journal of Chemical & Engineering Data( IF 3.119 ), 2017, 62, 1615-1622.
2016年度以第一作者或通讯作者发表代表性文章:
[14]. Li Naixu*, Wei Lingfei, Bibi Rehana, Chen Lingyu, Liu Jiahui, Zhang Li, Zheng Yiqun, Zhou Jiancheng*. Catalytic Hydrogenation of Alkali Lignin into Bio-Oil Using Flower-Like Hierarchical MoS2-Based Composite Catalysts. Fuel( IF 8.035), 2016, 185, 532-540.
[13]. Tian Wei, Shen Quanhao, Li Naixu*, Zhou Jiancheng*. Efficient Degradation of Methylene Blue over Boron-Doped g-C3N4/Zn0.8Cd0.2S Photocatalysts under Simulated Solar Irradiation. RSC Advances( IF 4.036 ), 2016, 6, 25568-25576.
[12]. Tian Wei, Li Naixu*, Zhou Jiancheng*. A Novel P-doped g-C3N4/Zn0.8Cd0.2S Composite Photocatalyst for Degradation of Methylene Blue Under Simulated Sunlight. Applied Surface Science( IF 7.392) , 2016, 361, 251-258.
2015年度以第一作者或通讯作者发表代表性文章:
[11]. Li Naixu, Teng Hongcheng, Zhang Li, Zhou Jiancheng*, Liu Maochang*. Synthesis of Mo-Doped WO3 Nanosheets with Enhanced Visible-Light-Driven Photocatalytic Properties. RSC Advances, 2015, 5, 95394-95400.
[10]. Tian Qingwen, Li Naixu*, Liu Jiahui, Wang Meng, Deng Jinquan, Zhou Jiancheng*, Ma Quanhong. Catalytic Hydrogenation of Alkali Lignin to Bio-Oil Using Fullerene-Like Vanadium Sulfide. Energy & Fuels, 2015, 29, 255-261.
2014年度以第一作者或通讯作者发表代表性文章:
[9]. Li Naixu*, Zhou Jiancheng*, Sun Yueming. Synthesis of La2(1-x)(MoO4)3:RE2x(RE=Eu, Tb) Phosphor Powders via a Sol-Gel Combustion Process and Their Photoluminescent Properties. Journal of Applied Spectroscopy, 2014, 81, 885-892.
[8]. Li Naixu, Zhou Jiancheng*, Sun Yueming. Structural and Luminescence Properties of Y2-xGeMoO8:REx (RE=Eu, Tb) Phosphors. Luminescence, 2014, 29, 401-406.
[7]. Li Naixu, Zhang Longzhou, Zhou Jiancheng*, Jing Dengwei*, Sun Yueming. Localized Nano-Solid-Solution Induced by Cu Doping in ZnS for Efficient Solar Hydrogen Generation. Dalton Transactions, 2014, 43, 11533-11541.
[6]. Li Naixu, Liu Maochang, Zhou Zhaohui, Zhou Jiancheng*, Sun Yueming, Guo Liejin*. Charge Separation in Facet-Engineered Chalcogenide Photocatalyst: A Selective Photocorrosion Approach. Nanoscale, 2014, 6, 9695-9702.
[5]. Li Naixu, Li Shuqiang, Wang Yueming, Zhou Bingyao, Sun Yueming, Zhou Jiancheng*. Luminescent Properties and Energy Transfer of Color-Tunable Sr3Y2(SiO3)6:Ce3+, Tb3+ phosphors. Journal of Rare Earths, 2014, 32, 933-937.
[4]. Li Shuqiang#, Li Naixu#, Yang Shanbo, Liu Fangyuan, Zhou Jiancheng*. The Synthesis of A Novel Magnetic Demulsifier and Its Application for the Demulsification of Oil-Charged Industrial Wastewaters. Journal of Materials Chemistry A, 2014, 2, 94-99.(共同第一作者文章)
2013年度以第一作者或通讯作者发表代表性文章:
[3]. Li Naixu, Zhou Bingyao, Zhou Jiancheng*, Sun Yueming. Synthesis, Characterization and Luminescence Properties of SrLa2(MoO4)4:Eu Phosphors. Journal of Sol-Gel Science and Technology, 2013, 67, 196-202.
[2]. Li Naixu, Zhou Bingyao, Li Shuqiang, Zhou Jiancheng*, Sun Yueming. Characterization and Photoluminescent Properties of Sol-Gel-Derived Ca2(1-x)La7.6+x(SiO4)6O2:Eu0.4:Lix Phosphors. Ceramics International, 2013, 39, 9343-9349.
[1]. Li Naixu, Zhou Bingyao, Guo Penghui, Zhou Jiancheng*, Jing Dengwei*. Fabrication of Noble-Metal-Free Cd0.5Zn0.5S/NiS Hybrid Photocatalyst for Efficient Solar Hydrogen Evolution. International Journal of Hydrogen Energy, 2013, 38, 11268-11277.
合作发表文章情况(2011年至今):
[13]. Jiang Xian, Xiong Yuexin, Wang Yufei, Wang Jiaxin, Li Naixu, Zhou Jiancheng*, Fu Gengtao*, Sun Dongmei,Tang Yawen*. Treelike Two-Level PdxAgy Nanocrystals Tailored for Bifunctional Fuel Cell Electrocatalysis. Journal of Materials Chemistry A, 2019, 7, 5248-5257.
[12]. Jiang Xian#, Liu Yang#, Wang Jiaxin, Wang Yufei, Xiong Yuexin, Liu Qun, Li Naixu, Zhou Jiancheng*, Fu Gengtao*, Sun Dongmei, Tang Yawen*. 1-Naphthol Induced Pt3Ag Nanocorals as Bifunctional Cathode and Anode Catalysts of Direct Formic Acid Fuel Cells. Nano Research, 2019, 12, 323-329.
[11]. Zhang Jiuyang*, Huo Mengmeng, Li Min, Li Tuoqi, Li Naixu, Zhou Jiancheng*, Jiang Jing. Shape Memory and Self-Healing Materials from Supramolecular Block Polymers. Polymer, 2018, 134, 35-43.
[10]. Chen Dongdong, Ma Quanhong*, Wei Lingfei, Li Naixu, Shen Quanhao, Tian Wei, Zhou Jiancheng*, Long Jieyu. Catalytic hydroliquefaction of rice straw for Bio-Oil Production Using Ni/CeO2 Catalysts. Journal of Analytical and Applied Pyrolysis, 2018, 130, 169-180.
[9]. Zhang Jiuyang*, Li Jing, Huo Mengmeng, Li Naixu, Zhou Jiancheng*, Li Tuoqi, Jiang Jing. Photochromic Inorganic/Organic Thermoplastic Elastomers. Macromolecular Rapid Communications, 2017, 38, 1700210.
[8]. Tian Qingwen, Fang Guigan*, Shi Yingqiao*, Ding Laibao, Pan Aixiang, Liang Long, Li Naixu, Zhou Jiancheng. Enhancement of SrTiO3/BiPO4 heterostructure for Simulated Organic Wastewater Degradation under UV Light Irradiation. Research on Chemical Intermediates, 2017, 43, 1395-1407.
[7]. Liu Maochang, Yang Yang, Li Naixu, Du Yuanchang, Song Dongxing, Ma Lijing, Wang Yi, Zheng Yiqun, Jing Dengwei*, Controlled Formation of Intense Hot Spots in Pd@Ag Core-Shell Nanooctapods for Efficient Photothermal Conversion. Applied Physics Letters, 2017, 111, 073903.
[6]. Wang Meng, Wang Panpan, Tian Qingwen, Liu Jiahui, Deng Jinquan, Li Naixu, Zhou Jiancheng*. Epoxidation of 1-Butene to 1,2-Butene Oxide by Transition Metal Disubstituted P-W-Mo Ternary Heteropoly Quaternary Ammonium Salts. Research on Chemical Intermediates, 2015, 41, 8891-8906.
[5]. Tian Qingwen, Zhang Li, Liu Jiahui, Li Naixu, Ma Quanhong, Zhou Jiancheng*, Sun Yueming. Synthesis of MoS2/SrZrO3 Heterostructures and Their Photocatalytic H2 Evolution Under UV Irradiation. RSC Advances, 2015, 5, 734-739.
[4]. Liu Jiahui, Zhang Li, Li Naixu, Tian Qingwen, Zhou Jiancheng*, Sun Yueming. Synthesis of MoS2/SrTiO3 Composite Materials for Enhanced Photocatalytic Activity Under UV Irradiation. Journal of Materials Chemistry A, 2015, 3, 706-712.
[3]. Liu Maochang, Zheng Yiqun, Xie Shuifen, Li Naixu, Lu Ning, Wang Jinguo, Kim Moon J., Guo Liejin, Xia Younan*, Facile Synthesis of Pd-Ir Bimetallic Octapods and Nanocages Through Galvanic Replacement and Co-Reduction, and Their Use for Hydrazine Decomposition. Physical Chemistry Chemical Physics, 2013, 15, 11822-11829.
[2]. Zhang Qiang, Moran Christine H., Xia Xiaohu, Rycenga Matthew, Li Naixu, Xia Younan*, Synthesis of Ag Nanobars in the Presence of Single-Crystal Seeds and a Bromide Compound, and Their Surface-Enhanced Raman Scattering (SERS) Properties. Langmuir, 2012, 28, 9047-9054.
[1]. Zhou Jiancheng*, Zhou Bingyao, Ma Xingjun, Cheng Tingting, Li Naixu, Xu Haijun*. Synthesis, Structure and Properties of the First Organic-Templated Inorganic-Framework Ba(II) Perchlorate. Journal of Molecular Structure, 2011, 1006, 441-446.
专利申请及授权情况:
[25]李乃旭,代云茜,孙岳明,周建成,戎有明. 一种高效复配型原油破乳剂[P]. CN110330999A,2019-10-15.
[24]李乃旭,代云茜,孙岳明,周建成,焦真,戎有明. 一种低温原油破乳剂及其制备方法[P]. CN110331000A,2019-10-15.
[23]周建成,李璟,殷俊,李乃旭,刘明,杨斌. 一种高效亲水化改性抗污染聚醚砜膜的制备方法及应用[P]. CN107081079B,2019-09-10.
[22]周建成,陈崇熙,李乃旭,葛阳,叶康伟,李瑶,袁慧敏,陈甜甜,陈璐. 一种荧光可视化磁性MOFs破乳剂的制备方法[P]. CN110157471A,2019
[21]焦真,阚道琴,李乃旭,马全红,周建成. 一种基于Radziszewski反应法制备的简单咪唑类化合物的分离工艺[P]. CN110128348A,2019
[20]李乃旭,吴敏,孙岳明,周建成,代云茜,郑颖平. 一种荧光可视化油田低温破乳剂的制备方法[P]. CN110093177A,2019-08-06.
[19]李乃旭,李瑶,周建成,葛阳,陈甜甜,叶康伟,袁慧敏,陈璐,陈崇熙. 一种整体式催化剂的制备及其应用方法[P]. CN110075854A,2019
[18]李乃旭,陈璐,周建成,葛阳,叶康伟,袁慧敏,陈崇熙,李瑶,陈甜甜. 一种磁性催化剂的制备及其催化纤维素脱水的应用[P]. CN110064397A,2019-07-30.
[17]李乃旭,叶康伟,周建成,葛阳,袁慧敏,陈璐,陈崇熙,李瑶,陈甜甜. 一种三层磁性催化剂的制备及其催化纤维素加氢的应用[P]. CN110064400A,2019-07-30.
[16]李乃旭,袁慧敏,周建成,葛阳,叶康伟,陈璐,陈崇熙,李瑶,陈甜甜. 一种纤维素加氢磁性催化剂的制备及其应用方法[P]. CN110064404A,2019-07-30.
[15]焦真,石闻卿,李乃旭,周建成. 一种利用微通道连续流反应器制备水杨酸的工艺[P]. CN110041189A,2019-07-23.
[14]周建成,许景程,王苑婷,李乃旭,魏凌飞. 一种基于ATRP法的油水分离聚醚砜超滤膜及其制备方法与应用[P]. CN106731909B,2019-04-30.
[13]周建成,陈勇,李乃旭,葛阳,姬中祥,邹晓悦,许重九,陈冬冬. 一种丙烯环氧化催化剂Au-V2O5-SrTiO3的制备方法及应用[P]. CN108889299A,2018-11-27.
[12]周建成,邹晓悦,李乃旭,葛阳,陈冬冬,陈勇,姬中祥,许重九. 一种异质结光催化剂的制备及方法应用[P]. CN108671933A,2018
[11]周建成,李璟,殷俊,李乃旭,刘明,杨斌. 一种高效亲水化改性抗污染聚醚砜膜的制备方法及应用[P]. CN107081079A,2017-08-22.
[10]周建成,杨斌,李乃旭,刘明,秦一玮,郑雨. 高效光催化丙烯环氧化材料的光催化剂制备及应用方法[P]. CN107051580A,2017-08-18.
[9]周建成,殷俊,王苑婷,许景程,李乃旭,李璟. 一种亲水性抗污染的聚醚砜膜的制备方法及应用[P]. CN105771707A,2016-07-20.
[8]周建成,殷俊,王苑婷,许景程,李乃旭,李璟. 一种抗污染聚醚砜膜的制备方法及其应用[P]. CN105688691A,2016-06-22.
[7]周建成,陈静,滕宏程,靳晶,魏凌飞,李乃旭. 一种高效光催化剂SrTiO3/Bi2WO6的制备方法及其应用[P]. CN105618030A,2016
[6]周建成,陈静,陈耀,葛阳,魏凌飞,李乃旭. 一种异质结纳米光催化材料的制备方法及该材料的应用[P]. CN105536772A,2016-05-04.
[5]周建成,葛阳,滕宏程,靳晶,陈耀,李乃旭. 一种氨基化两亲嵌段聚醚增粘剂及其制备方法和应用[P]. CN105504262A,2016-04-20.
[4]周建成,田庆文,刘佳慧,李乃旭,王猛,邓金全. 一种木质素加氢降解制备生物油方法[P]. CN104326875A,2015-02-04.
[3]周建成,刘佳慧,田庆文,李乃旭,王猛,邓金全. 一种高效复合光催化材料的制备及应用方法[P]. CN104307538A,2015-01-28.
[2]周建成,王猛,马兴军,李乃旭,李树强. 一种1,2-环氧丁烷的清洁制备方法[P]. CN104311512A,2015-01-28.
[1]周建成,田庆文,刘佳慧,王猛,李乃旭,邓金全. 一种高效产氢光催化剂MoS2-SrZrO3的制备及应用[P]. CN104289234A,2015-01-21.
论文专利等科研成果应用实施情况:
针对化学复合驱含聚采出液乳化程度高、破乳难度大、油水分离困难等问题,研制了一类高效防再乳化破乳剂和一类可回收的磁性破乳剂,并应用于孤岛油田现场试验,达到了良好的破乳和净水效果。经胜利油田管理局测算,每年累计从污水中多回收原油4万吨以上,累计节省清水72余万方,减少聚合物用量0.36万吨,产生直接经济效益1.38亿元。该项目通过中国石油和化学工业联合会成果鉴定“该成果技术创新性强,应用前景好,整体达到了国际先进水平。” 并获得中国石油和化学工业联合会科技进步三等奖。