李小龙 副教授 博士 陕西省 研究领域: 精细化工 研究方向: 以“碳达峰、碳中和”这一国家重大战略目标为导向,围绕能源化工领域中低碳催化转化过程中的关键科学问题,通过催化原理、催化剂及反应工艺创新,开发新型高效的低碳催化转化技术,包括: (1)CO2转化与利用(CO2加氢制合成气、甲醇和甲烷;CO2与甲烷干重整等); (2)氢气安全储运和制备(甲醇水重整制氢、氨分解制氢); (3)新型防腐技术开发与利用(光催化防腐、电化学防腐、新型涂层防腐); (4)工程放大技术开发。 所在单位: 陕西科技大学

基本信息

籍贯:
山东烟台
所在单位:
陕西科技大学
机构细分:
化学与化工学院
单位类型:
高等院校
职务:
副教授
职称:
副教授
最高学历:
博士
出生年份:
1988-01-01
教育经历:
2007.9-2011.6 哈尔滨理工大学 化学工程与工艺 工学学士
2011.9-2016.6 天津大学 应用化学(精细化工) 工学博士(硕博连读)
工作经历:
2017.4-2020.12 陕西科技大学 化学与化工学院 讲师
2020.12-至今 陕西科技大学 化学与化工学院 副教授

科研能力

研究领域:
精细化工
研究方向:
以“碳达峰、碳中和”这一国家重大战略目标为导向,围绕能源化工领域中低碳催化转化过程中的关键科学问题,通过催化原理、催化剂及反应工艺创新,开发新型高效的低碳催化转化技术,包括:
(1)CO2转化与利用(CO2加氢制合成气、甲醇和甲烷;CO2与甲烷干重整等);
(2)氢气安全储运和制备(甲醇水重整制氢、氨分解制氢);
(3)新型防腐技术开发与利用(光催化防腐、电化学防腐、新型涂层防腐);
(4)工程放大技术开发。
论文著作:
(1)Yuhao Yang, Teng Wang, Xiaolong Li*, Yongning Ma, Junli Zhu*, Liping Ding, Gangqun Sun, Zhuoya Zhao*. Surface-energy-driven facet engineering of MgO(111) for tunable metal–support interaction and site-specific pathways in low-temperature methanol reforming. Chemical Engineering Journal, 2026, 529, 173049.(中科院一区)
(2)Yongning Ma*, Yesong Liang, Mingyuan Guo*, Enzhou Liu, Xiaolong Li. Photocatalytic anti-corrosion performance and mechanism investigation over Ag nanoparticles loaded defective g-C3N4. Vacuum, 2026, 247, 115140.(中科院三区)
(3)Yongning Ma*, Zengyuan An, Kuan Wang*, Enzhou Liu, Xiaolong Li. Establish NiCoP/g-C3N4 Schottky heterojunction to promote spatial charge separation rate for steels protection and mechanism analysis. Vacuum, 2026, 247, 115140.(中科院三区)
(4)Furui Jia, Dongjun Lv*, Ping Wu, Nan Gao*, Xiaolei Zhang, Meijuan Gu, Yirong Zhu, Wenxin Zhang, Mingran Yang, Xiaolong Li. Indoline squaraine dye-based organic photodetectors to boost NIR sensitivity for titanyl phthalocyanine. Materials Science in Semiconductor Processing, 2026, 201, 110107. (中科院三区)
(5)Xiaolong Li, Manni Sun, Zhiyan Yang, Xiru Wang, Yongning Ma, Junli Zhu*, Zhuoya Zhao*, Yuhao Yang*. Unlocking high stability and selectivity in reverse water–gas shift over a synergistic MoCO catalyst. AIChE Journal, 2025, 71, e70111.(化工三大刊)
(6)Xiaolong Li, Jundi Wan, Manni Sun, Yahui Zhang, Zhiyan Yang, Xiru Wang, Junli Zhu, Yongning Ma, Zhuoya Zhao*, Yuhao Yang*. In Situ Construction of High-Performance Molybdenum-Based Multicomponent Catalysts with Metal Carbide/Metal Nitride-Support Interactions. Industrial & Engineering Chemistry Research, 2025, 64, 9939.(化工三大刊)
(7)Xiaolong Li, Yahui Zhang, Jundi Wan, Manni Sun, Yongning Ma, Junli Zhu, Mingyuan Guo, Yuhao Yang*. Ultra-low CO selectivity in aqueous-phase reforming of methanol using Pt/Fe5C2@C catalyst with strong metal-support interaction. International Journal of Hydrogen Energy, 2025, 98, 563.(中科院二区)
(8)Yuhao Yang, Jie Ran, Teng Wang, Yongning Ma, Junli Zhu, Xiaolong Li*, Zhuoya Zhao*. Enhanced hydrogen production performance and stability simultaneously in aqueous-phase reforming of methanol over Pt/V2O3-V8C7 based on strong-weak metal support interactions. Journal of Catalysis, 2025, 452, 116397. (中科院一区)
(9)Furui Jia, Dongjun Lv*, Ping Wu, Jianhui Zhang, Nan Gao*, Yirong Zhu, Xuelu Du, Mingli Feng, Xiaolong Li. Haofei Huang. High-performance UV-Vis-NIR photomultiplier detectors based on titanyl phthalocyanine/squaraine dye bulk heterojunctions. Journal of Materials Chemistry C, 2025, 13, 17031. (中科院三区)
(10)Xiaolong Li, Jundi Wan, Yulu Tang, Chenyu Wang, Yahui Zhang, Dongjun Lv, Mingyuan Guo, Yongning Ma, Yuhao Yang*. Boosting the UV−vis−NIR Photodetection Performance of MoS2 through the Cavity Enhancement Effect and Bulk Heterojunction strategy. ACS Applied Mateials &Interfaces, 2024, 16, 29003. (中科院二区)
(11)Xiaolong Li, Yahui Zhang, Tianzhu Wei, Chenyu Wang, Jundi Wang, Yulu Tang, Mingyuan Guo, Yongning Ma, Yuhao Yang*. Boosting the Photocatalytic Performance of g‑C3N4 through MoS2 Nanotubes with the Cavity Enhancement Effect. Langmuir 2024, 40, 11160. (中科院二区)
(12)Xiaolong Li, Yulu Tang, Jundi Wan, Yahui Zhang, Dongjun Lv, Mingyuan Guo, Yongning Ma, Yuhao Yang*. Y‑Type Titanyl Phthalocyanine Nanoparticle and Hollow ZnS Nanotube Heterojunctions with Cavity Enhancement Effect for UV−Vis−NIR Photodetectors. ACS Applied Nano Materials, 2024, 7, 5372. (中科院二区)
(13)Mingyuan Guo, Yongning Ma*, Zhanqing Liu, Donghua Wang, Yuhao Yang, Xiaolong Li, Enzhou Liu*. Electron, hole and radical competition mechanism of layered porous g-C3N4 for hydrogen generation and organic pollutant degradation. Journal of Catalysis, 2024, 430, 115332.
(14)Yuhao Yang, Jiahao Yan, Yixia Zhang, Shushu Xing, Jie Ran, Yongning Ma, Xiaolong Li*. S/P co-doped g-C3N4 with secondary calcination for excellent photocatalytic performance. International Journal of Hydrogen Energy, 2024, 51, 962. (中科院二区)
(15)Yuhao Yang, Yixia Zhang, Tingting Wang, Yongming Ma, Shushu Xing, Jiahao Yan, Jie Ran, Xiaolong Li*. SrTiO3–TiO2 Litchi-Like Hollow Nanospheres for Superior Photocatalytic Hydrogen Production. Catalysis Letter, 2024, 154, 2537. (中科院四区)
(16)Yuhao Yang, Shushu Xing, Yongning Ma, Yixia Zhang, Jiahao Yan, Jie Ran, Xiaolong Li*. P-doped g-C3N4 with triple calcinations for enhancing photocatalytic performance. Journal of Materials Science-Materials in Electronics, 2024, 35, 431. (中科院四区)
(17)Yongning Ma*, Peihan Wu, Mengting Ku, Mingyuan Guo, Yuhao Yang, Xiaolong Li, Haiyong Chen. Organic pollutant degradation for micro-molecule product emission over SiO2 layers-coated g-C3N4 photocatalysts. RSC Advances, 2024, 14, 6727-6737. (中科院三区)
(18)Yongning Ma*, Panpan Li, Peihan Wu, Mingyuan Guo, Yuhao Yang, Xiaolong Li. A g-C3N4/PANI S-scheme heterojunction with face-to-face structure to improve the anticorrosion property on Q235 steel and enhanced mechanism study. Journal of Applied Polymer Science, 2024, 141, e55296. (中科院三区)
(19)Xiaolong Li, Yulu Tang, Chenyu Wang, Tianzhu Wei, Dongjun Lv, Mingyuan Guo, Yongning Ma, Yuhao Yang*. High-performance UV-Vis-NIR photomultiplier detectors assisted by interfacial trapped electrons. Journal of Materials Chemistry C, 2023, 11, 13971. (中科院二区)
(20)Dongjun Lv*, Yuexing Zhang, Xiaolei Zhang, Jing Tang, Xiaolong Li, Qiuya Li, Yongsheng Guo, Jiahui Zhang. Modification of C.I.Pigment Blue 15:6 with graphene oxide. Dyes and Pigments, 2023, 220, 111710. (中科院二区)
(21)Chan Lu, Zenghui Gou, Shan Li, Zhongao Mai, Xiaolong Li, Yuhao Yang*. Superior photocatalytic degradation performance for gaseous toluene by 3D g-C3N4-reduced graphene oxide gels. Green Processing and Synthesis, 2022, 11, 195. (中科院四区)
(22)Xiaolong Li, Yuxi Feng, Chenyang Li, Huahui Han, Xueqing Hu, Yongning Ma, Yuhao Yang*, One-step preparation of metal-free phthalocyanine with controllable crystal form. Green Processing and Synthesis, 2021, 10, 95. (中科院四区)
(23)Yuhao Yang, Chan Lu, Juan Ren, Xiaolong Li*, Yongning Ma, Wenhuan Huang, Xia Zhao, Enhanced photocatalytic hydrogen evolution over TiO2/g-C3N4 2D heterojunction coupled with plasmon Ag nanoparticles. Ceramics International, 2020, 46, 5725. (中科院一区)
(24)Xiaolong Li*, Yin Xiao, Shirong Wang, Yuhao Yang, Yongning Ma, Xianggao Li*. Polymorph-induced photosensitivity change in titanylphthalocyanine revealed by the charge transfer integral. Nanophotonics, 2019, 8, 787. (中科院一区)
(25)Yuhao Yang *, Xiaolong Li, Chan Lu, Wenhuan Huang. G‑C3N4 nanosheets coupled with TiO2 nanosheets as 2D/2D heterojunction photocatalysts toward high photocatalytic activity for hydrogen production. Catalysis Letters, 2019, 149, 2930. (中科院四区)
(26)Zheng Li*, Shujun Wang, Liwei Xiao, Xiaolong Li*, Xiaona Shao, Xuemin Jing, Xiaoxia Peng, Lilei Ren. An efficient colorimetric probe for fluoride ion based on schiff base. Inorganica Chimica Acta, 2018, 476: 7-11. (中科院三区)
(27)Zheng Li*, Shujun Wang, Liwei Xiao, Li Xiaolong*, Xuemin Jing, Xiaoxia Peng, Lilei Ren. An efficient colorimetric and absorption ratiometric anion sensor basedon a simple azoazomethine receptor. Inorganica Chimica Acta, 2018, 479, 148. (中科院三区)
(28)Xiaolong Li, Shirong Wang, Yin Xiao, Xianggao Li*. A trap-assisted ultrasensitive near-infrared organic photomultiple photodetector based on Y-type titanylphthalocyanine nanoparticles. Journal of Materials Chemistry C, 2016, 4, 5584. (中科院一区)
(29)Xiaolong Li, Yin Xiao, Shirong Wang, Xianggao Li*. Ultra-photosensitive Y-type titanylphthalocyanine nanocrystals: preparation and photoelectric properties. Dyes and Pigments, 2016, 125, 44-53. (中科院二区)
(30)李小龙,王晨宇, 颜嘉豪, 库梦婷, 马永宁, 杨雨豪,酞菁类化合物在有机光电探测领域的研究进展,精细化工,2022,39(7):1307-1319.
(31)李小龙,王世荣,肖殷,李祥高*,Y-TiOPc纳米粒子的制备及其在有机光导体中的应用,材料保护,2015,48(1):49-51.
发明专利:
(1)李小龙,张亚辉,万俊弟,魏天柱,唐雨露,马永宁,杨雨豪,一种三元异质催化剂载体及其制备方法和应用,中国,ZL202310543839.9
(2)李小龙,王晨宇,杨雨豪,马永宁,唐雨露,魏天柱,一种形貌可控的二硫化钼纳米材料及其制备方法和应用,中国,ZL202211137312.8
(3)李小龙,魏天柱,马永宁,杨雨豪,唐雨露,王晨宇,一种钼盐异质载体及其制备方法和应用,中国,ZL202211138046.0
(4)李小龙,王晨宇,杨雨豪,马永宁,唐雨露,魏天柱,一种形貌可控的二硫化钼纳米材料及其制备方法和应用,中国,ZL202211137312.8
(5)李小龙,王晨宇,杨雨豪,马永宁,颜嘉豪,库梦婷,一种具有光降解效应的聚合硅铝酸盐无机絮凝剂的制备方法,中国,ZL202011270527.8
(6)李小龙;赵卓雅;杨雨豪;马永宁;常雨情;韩华慧;冯羽西;胡雪晴,一种电热消泡除沫装置及其工作方法,中国,ZL202010032562.X
(7)李小龙,赵卓雅,马永宁,杨雨豪,孙丽媛,常雨请,张月茹,魏天柱,一种对碘甲苯的绿色合成方法,中国,ZL201911243371.1
(8)李祥高,李小龙,王世荣,肖殷,多晶型光敏性TiOPc纳米粒子的制备方法及其在有机光导体中的应用,中国,ZL201310629073.2
(9)杨雨豪,张祎遐,李小龙,马永宁,邢书书,颜嘉豪,冉杰,一种能带可调的硫氧钛锶催化剂及其制备方法和应用,中国,ZL202310888149.7
(10)杨雨豪,邢书书,李小龙,马永宁,魏天柱,张祎遐,颜嘉豪,冉杰,一种铬盐异质载体及其制备方法和应用,中国,ZL202310516795.0
(11)马永宁,李盼盼,郭明哲,武慧童,李小龙,杨雨豪,吴沛涵,韩国钰,一种铁基表面磷酸化氮化碳涂层及其制备方法,中国,ZL202310441787.4
(12)马永宁,段仪豪,王蒙,费贵强,王海花,李小龙,杨雨豪,韩玉英,一种负载石墨相氮化碳的多孔二氧化硅凝胶颗粒和具有其的纸及其制备方法,中国,ZL201910544137.6
科研项目:
(1)横向项目,高稳定性ATO分散液工艺开发,2024.04-2029.04,100万元,主持;
(2)横向项目,电子级聚碳酸酯的中试工艺包开发,2023.03-2026.03,60万元,主持;
(3)国家自然科学基金委员会—青年基金项目,基于“多重光反射”空腔耦合增强效应的Y-TiOPc NPs/MoS2 NTs异质结光敏材料的构筑,2021/01~2023/12,24万元,主持;
(4)陕西省教育厅专项科研计划项目,高光敏性酞菁氧钛/石墨烯基复合材料的制备及其光敏特性机理研究,2019.1-2021.1,2万元,主持;
(5)陕西科技大学自然科学预研基金,可控形貌钙钛矿纳米材料的制备及其光电性能研究,2017.4-2020.4,15万元,主持;
(6)横向项目,碘苯类衍生物的合成及中试放大工艺包开发,2019/06~2022/06,50万元,主持;
(7)陕西省自然科学基金项目,边缘位调控耦合光的多重反射构建MoS2高效光解水制氢体系,2021.01-2022.12,3万元,参与;
(8)国家高技术研究发展计划(863计划),柔性AMOLED显示材料产业化关键技术研究,2015.1-2017.12,1366万元,参与;
(9)国家自然科学基金(青年项目),氟代金属酞菁半导体材料的合成、性能与薄膜器件研究,2013.1-2015.12,25万元,参与;
(10)天津市应用基础及前沿技术研究计划(自然科学基金一般项目),场效应金属酞菁化合物的合成及性能研究,2012.10-2015.9,10万元,参与;
(11)国家高技术研究发展计划(863计划),纳米有机光导材料及彩色激光光导体的规模化制备技术,2012.1-2014.12,1954万元,参与。

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