李海波

教授四级

李海波,博士,教授,硕士导师。聊城大学“光岳新秀”、“光岳英才”山东省优秀研究生指导教师,新加坡国立大学访问学者。主要从事清洁能源存储与转化研究,包括电催化氧还原反应、醇氧化反应、燃料电池、金属空气电池等,长期担任Chem. Eng. J., J Power Sources, Int. J. hydrogen Energ.等能源化学领域权威期刊审稿人。作为项目负责人承担国家自然科学基金、山东省自然科学基金等教研、科研项目10项。相关相关研究成果发表在Adv. Energy Mater.‌、Adv. Sci.Chem. Eng. J.、大学化学等国内外权威期刊100余篇,单篇引用100次以上论文9篇,热点论文2篇,封面论文1篇,国家授权发明专利2项。获批山东省一流本科课程1门,山东省课程思政示范课程1门,参与编著《分析化学》数字教材1部。获山东省高等学校科学技术奖、山东省化学化工学会科学技术奖、山东省高等学校课程联盟课程教学优秀案例等奖励10项。指导学生获研究生国家奖学金、省优秀硕士/学士学位论文、省优秀研究生创新成果奖等8项。

一、代表性教研、科研项目:

[1] 国家自然科学基金:碳材料可控氮掺杂改性及在电化学器件中的应用研究,主持

[2] 山东省自然科学基金:基于密胺海绵构建柔性自支撑M-N-C单原子催化剂及电催化氧还原/氧析出性能研究主持

[3] 山东省自然科学基金:以石墨烯为基底构筑金属配合物型分子催化剂及其电化学性质研究,主持

[4] 山东省研究生优质课程:现代分析测试技术,主持;

[5] 山东省研究生教育质量提升计划项目:研究生创新能力培养探索——以跨专业思维开展燃料电池研究为例,主持

[6] 山东省高等学校科技计划项目:PtM1M2三元合金催化剂构筑及电催化性能研究,主持

[7] 聊城大学科技成果培育项目:功能纳米材料电子结构与几何结构调控及电化学性能研究,主持

[8] 山东化学教指委教学改革研究项目:“一流专业建设”及“师范专业认证”双驱动下高素质化学师范类人才培养模式探索,主持;

[9] 聊城大学教学研究重点资助项目:“理念引领、培优强特、协同推进”师范认证驱动化学一流专业内涵建设探索与实践,主持。

二、代表性获奖:

[1] 202520242018硕士研究生国家奖学金指导教师;

[2] 2021年度山东省优秀研究生指导教师;

[3] 2020年山东省优秀硕士学位论文指导教师;

[4] 2016年山东省优秀学士学位论文指导教师;

[5] 2019年山东省研究生优秀成果二等奖指导教师;

[6] 2019年山东省高等学校科学技术三等奖(首位);

[7] 2016年山东省高等学校科学技术二等奖(第二位);

[8] 2022年山东化学化工学会科学技术奖二等奖(首位)

[9] 2023年山东省高等学校课程联盟课程教学(管理类)优秀案例三等奖(首位);

[10] 201920162013聊城大学优秀科研成果奖(首位)

[11] 2024年聊城大学优秀硕士学位论文指导教师;

[12] 2024年聊城大学研究生优秀成果指导教师;

[13] 2022年聊城大学第五届“大学生良师益友”;

[14] 2021年聊城大学优秀共产党员;

[15] 2021年聊城大学优秀班主任

三、代表性论文:

[1] Zongge Li, Wenjie Tian, Kunsheng Hu, Yajie Guo, Xiaotan Tian, Wenjun Kang, Rui Li,Konggang Qu, Lei Wang, Fanpeng Meng,* Huayang Zhang,* and Haibo Li*, Oxygen-driven reconstruction activates quasi-single Pd sites in hollow PdAg nanotubes for zinc-air and fuel cells, Advanced. Science 2025, 12, e09329. (SCI区,IF14.1

[2] Zongge Li, Wenjun Kang, Jingkai Lin, Rui Li, Konggang Qu, Suyuan Zeng, Lei Wang, Fanpeng Meng*, Huayang Zhang*, Haibo Li*, Singleatom Co meets remote Fe for a synergistic boost in oxygen electrocatalysis, Adv. Energy Mater., 2025, 15, 2500617(封面论文). (SCI一区,IF = 24.4)

[3] Yuanjie Zhang*, Zhongguo Wang, Yueyang Huo, Xiuping Ju, Kai Liu, Wenjun Kang, Peng Zhang, Zongge Li*, Haibo Li*, Unveiling the synergistic promotion mechanism of vanadium nitride nanoparticles on single-atom Fe sites for enhanced oxygen reduction reaction, Chemical Engineering Journal, 2025, 524, 169464. (SCI区,IF13.4

[4] Zongge Li, Shuhua Liu, Wenjun Kang, Suyuan Zeng, Konggang Qu, Fanpeng Meng, Lei Wang, Rui Li, Yikai Yang, Kepeng Song, Shenglin Xiong*, Bing Nan*, and Haibo Li*, Engineering the local atomic environments of Te-modulated Fe single-atom catalysts for high-efficiency O2 reduction, Small, 2025, 2406659. (SCI二区,IF = 13)

[5] Ting Wang, Zongge Li*, Wenjun Kang, Rui Li, Konggang Qu, Lei Wang, Fanpeng Meng* and Haibo Li*, Atomically dispersed Fe/Zn synergy in sulfurmodified nitrogen-doped carbon for boosting oxygen reduction activity, J. Mater. Chem. A, 2025, 13, 25423. (SCI二区,IF9.5

[6]Fuxian Zheng, Yajie GuoTing WangXianghui MengKonggang QuLei WangRui LiZongge Li*Wenjun Kang*Haibo Li*, Highly dispersed ternary metal FeZnCe with nitrogen/oxygen co-doped carbon materials for efficient oxygen electroreduction, Chemical Engineering Journal, 2024, 498, 155487. (SCI一区,IF = 13.4)

[7] Wenjun Kang, Jiabao Chen, Yuanjie Zhang*, Yajie Guo, Fanpeng Meng, Konggang Qu, Rui Li, Lei Wang, Zongge Li*, Haibo Li*,Carbon-loaded ordered PdZn alloys for efficient oxygen reduction in zinc-air batteries, Journal of Alloys and Compounds, 2025, 1022, 179887. (SCI二区,IF5.8

[8] Yajie Guo, Fuxian Zheng, Ting Wang, Xinyang Liu, Xiaotan Tian, Konggang Qu, Lei Wang, Rui Li, Wenjun Kang*, Zongge Li*, and Haibo Li*, Construction of Pd-Te intermetallic compounds to achieve ultra-stable oxygen reduction activity, ACS Appl. Mater. Interfaces, 2024, 16, 3636336372. (SCI二区,IF = 8.5)

[9] Zhiran Sun, Shuhua Liu, Yajie Guo, Fuxian Zheng, Bing Nan, Wenjun Kang, Konggang Qu, Lei Wang, Rui Li, Zongge Li*, Lile Dong* and Haibo Li*, Atomically dispersed dual-metal with two-N-bridged FeCu-N6 sites for efficient oxygen reduction, Electrochimica Acta, 2024, 478, 143857. (IF = 5.5)

[10] Zongge Li#, Jiabao Chen#, Yajie Guo, Fuxian Zheng, Konggang Qu, Lei Wang, Rui Li, Shenglin Xiong*, Wenjun Kang, and Haibo Li*, Interfacial oxygen atom modification of a PdSn alloy to boost oxygen reduction in zinc-air batteries, Journal of Colloid and Interface Science, 2024, 659, 257-266. (SCI一区,IF = 9.4)

[11] Shuhua LiuZhiran SunYajie GuoFuxian ZhengBing NanWenjun KangKonggang QuLei Wang, Rui Li, Zongge Li*Shenglin Xiong* and Haibo Li*, MnO synergizes with FeC-FeN in carbon nanofiber to boost oxygen reduction for zinc-air batteries, Inorganic Chemistry Frontiers, 2023, 10, 6245-6252. (HOT paperSCI一区,IF = 6.1)

[12] Zhongqing Wang, Lan Zhou, Rui Li, Konggang Qu, Lei Wang, Wenjun Kang, Haibo Li*, Shenglin Xiong*, Electrocatalytic oxygen reduction of iron-containing COF-derived Fe-Nx nanoclusters/carbon and application for high performance Zn-air battery. Micropor. Mesopor. Mat. 2022, 330, 111609.

[13] Xiangxia Jing, Lei Wang, Konggang Qu, Rui Li, Wenjun Kang, Haibo Li*, and Shenglin Xiong*, KOH Chemical-Activated Porous Carbon Sponges for Monolithic Supercapacitor Electrodes, ACS Applied Energy Materials 2021, 4, 7, 6768-6776.

[14] Xiangxia Jing, Lan Zhou, Wenjun Kang, Lei Wang, Denghu Wei, Konggang Qu, Rui Li, Baoli Chen, Zengjing Guo, and Haibo Li*,Regulating Capacitive Performance of Monolithic Carbon Sponges by Balancing Heteroatom Content, Surface Area and Graphitization DegreeChemNanoMat, 2020, 6(10), 1507-1512.

[15] Rui Zhang, Haibo Li*, Rui Li, Denghu Wei, Wenjun Kang, Zhicheng Ju*, and Shenglin Xiong* Boosting the potassium-ion storage performance of a carbon anode by chemically regulating oxygen-containing species, Chem. Commun., 2019, 55, 14147-14150.

[16] Xue Dong, Jingru Li, Denghu Wei, Rui Li, Konggang Qu, Lei Wang, Shuling Xu, Wenjun Kang*, Haibo Li*, Pd(II)/Ni(II)-dimethylglyoxime derived Pd‒Ni‒P@N-doped carbon hybrid nanocatalysts for oxygen reduction reaction, Applied Surface Science, 2019, 479, 273-279.

[17] Rui Zhang, Xiangxia Jing, Yanting Chu, Jing Liu, Lei Wang, Wenjun Kang, Denghu Wei, Haibo Li*, and Shenglin Xiong*, Nitrogen/Oxygen Co-doped Carbon Monolithic Electrode Derived from Melamine Foam for High-Performance Supercapacitors, J. Mater. Chem. A, 2018, 6, 17730-17739. (HOT paper)

[18] Haibo Li*, Cancan Ren, Shuling Xu, Lei Wang, Qiaoli Yue, Rui Li, Yuanfu Zhang, Qingwang Xue, and Jifeng Liu*, Te-template approach to fabricating ternary TeCuPt alloy nanowires with enhanced catalytic performance towards oxygen reduction reaction and methanol oxidation reaction, J. Mater. Chem. A, 2015, 3, 5850-5058.

[19] Haibo Li, Wenjun Kang, Lei Wang, Qiaoli Yue, Shuling Xu, Huaisheng Wang, Jifeng Liu*, Synthesis of three-dimensional flowerlike nitrogen-doped carbons by a copyrolysis route and the effect of nitrogen species on the electrocatalytic activity in oxygen reduction reaction, CARBON, 2013, 54, 249-257.

[20] Haibo Li*, Wenjun Kang, Yang Yu, Jifeng Liu, Yitai Qian, Synthesis of bamboo-structured carbon nanotubes and honeycomb carbons with long-cycle Li-storage performance by in situ generated zinc oxide, CARBON, 2012, 50, 4787-4793.

[21] Haibo Li*, Qiaoli Yue, Shuling Xu, Lei Wang, Jifeng Liu*, Fabrication of octahedral carbon nanocages via an in-situtemplate approach, Mater. Lett., 2012, 66, 353-356.

[22] Ke Zhang, Qiaoli Yue, Guifen Chen, Yanling Zhai, Lei Wang, Huaisheng Wang, Jinsheng Zhao, Jifeng Liu*, Jianbo Jia*, Haibo Li*, Effects of acid treatment of Pt−Ni alloy nanoparticles@graphene on the kinetics of the oxygen reduction reaction in acidic and alkaline solutions, J. Phys. Chem. C, 2011, 115, 379-389.

[23]Haibo Li, Wenjun KangBaojuan XiYan YanHuiyun BiYongchun ZhuYitai Qian*, Thermal synthesis of Cu@carbon spherical core-shell structures from carbonaceous matrices containing embedded copper particles, CARBON, 2010, 48, 464-469.

[24]Haibo Li, Yongchun Zhu, Zhenghao Mao, Jun Gu, Junhao Zhang, YitaiQian*, Synthesis and characterization of carbon fibrils formed by stacking graphite sheets of nanometer thickness, CARBON, 2009, 47, 328-330.

[25] Haibo Li, Lanlan Chai, Xiaoqing Wang, Xueying Wu, Guangcheng Xi, Yankuan Liu, and Yitai Qian*, Hydrothermal growth and morphology modification of β-NiS three-dimensional flowerlike architectures, Crystal Growth & Design, 2007, 7(9), 1918-1922.

四、代表性发明专利:

[1] 李海波,董雪,一种磷镍钯共掺杂碳基复合催化剂及其制备方法和应用,专利号:ZL201811279809.7

[2] 李海波,彭乐超,一种PtPdCu三元合金催化剂及其制备方法和应用,专利号:ZL201910059027.0

联系邮箱:lihaibo@lcu.edu.cn