伊廷锋,男,1979年7月生,教授(三级)、博士生导师。

联系电话:0335-8071622
电子邮箱:tfyihit@163.com
研究方向:
锂(钠)离子电池,超级电容器,铅酸电池,水系电池、电催化、
电极材料第一性原理计算
教育背景:
1997.09-2001.07:聊城大学,化学工程与工艺专业,工学学士
2002.09-2004.07:哈尔滨工业大学,应用化学专业,工学硕士
2004.09-2007.07:哈尔滨工业大学,化学工程与技术专业,工学博士
工作履历:
2007.09-2010.12:安徽工业大学,化学与化工学院,副教授、硕导
2011.01-2015.10:安徽工业大学,化学与化工学院,教授、硕导
2012.04-2014.09:哈尔滨工业大学/超威电源有限公司,教授、博士后
2015.10-2018.09:安徽工业大学,化学与化工学院,教授、博导
2018.07-至今: 东北大学,秦皇岛分校资源与材料学院,教授、博导
学术兼职:
物理化学学报高级编委、Rare Metals编委、有色金属编委、中国冶金教育学会学位与研究生教育分会第七届理事会常务理事、京津冀蒙高校联盟第一届理事会理事、中国冶金教育学会第七届理事会理事、安徽省化学会理事、中国电子学会高级会员、中国化学会会员、中国化工学会会员。
科研项目:
主持或主持完成20余项科研项目,其中国家自然科学基金项目6项,省部级项目6项,企业横向课题5项。
(1) 国家自然科学基金青年项目,50902001,20万,结题,主持;
(2) 国家自然科学基金面上项目,51274002,80万,结题,主持;
(3) 国家自然科学基金面上项目,51774002,60万,结题,主持;
(4) 国家自然科学基金钢铁联合研究基金项目,U1960107,68万,结题,主持;
(5) 国家自然科学基金面上项目,52374301,50万,在研,主持;
(6) 国家自然科学基金面上项目,52574348,50万,在研,主持;
(7) 国家自然科学基金面上项目,21773060,65万,结题,联合单位项目负责人;
(8) 安徽省自然科学基金面上项目,1508085MB25,8万,结题,主持;
(9) 河北省自然科学基金面上项目,E2024501010,6万,在研,主持;
(10) 中国博士后科学基金面上项目,2012M520749,5万,结题,主持;
(11) 浙江省博士后科研择优一等资助项目,Bsh1201013,5万,结题,主持;
(12) 安徽高校省级自然科学研究重点项目,KJ2010A045,5万,结题,主持;
(13) 河北省“三三三人才工程”资助项目,A202005018,5万,结题优秀,主持
(14) 安徽省高校优秀青年人才支持计划重点项目,gxyqZD2016066,6万,结题优秀,主持;
(15) 中央高校基本业务费重点科学研究引导项目,N2123001,30万,结题,主持;
(16) 中央高校基本业务费国家项目培育基金,N182304014,13万,结题,主持;
(17) 中央高校基本业务费重大成果培育项目,N2423054,10万,结题,主持;
(18) 安徽高等学校省级优秀青年人才基金重点项目,2010SQRL033ZD,2万,结题优秀,
教学项目
(1) 安徽省重大教学改革研究项目,10万,2013zdjy076,2013.10-2016.9,结题,主持;
(2) 安徽省精品资源共享课程,5万,物理化学(2015gxk020),批准文号:皖教秘高〔2015〕122号,2015.12-2018.11,结题,主持;
(3) 安徽省精品资源共享课程,5万,工程化学(2016gxk017),批准文号:皖教秘高〔2016〕189号,2016.12-2019.11,结题,主持;
(4) 安徽工业大学教学团队,应用电化学,5万,批准文号:教学[2016]16号;2016.10-2019.9,结题,主持;
(5) 河北省研究生课程思政示范课程,环境与能源材料,2万,项目编号:YKCSZ2022140,2023.01-2024.01,结题,主持;
(6) 2023-2024年度河北省高等教育教学改革研究与实践项目,2万,项目编号:2023GJJG443,2024.01-2025.12,在研,主持;
省部级奖励与荣誉:
(1) 辽宁省高等教育(研究生)教学成果奖二等奖 (R1),2026年9月;
(2) 辽宁省普通高等教育研究生教学成果展示大赛一等奖 (R1),2026年5月;
(3) 东北大学研究生教学成果特等奖(R1),2026年4月;
(4) 河北省高等教育(研究生)教学成果奖一等奖 (R1),2026年2月;
(5) 河北省高等教育(本科)教学成果奖二等奖 (R3),2026年2月;
(6) 河北省自然科学二等奖(R1),2025年4月;
(7) 河北省拔尖人才(专技),2024年3月;
(8) 河北省师德标兵,2023年8月;
(9) 河北省普通本科院校教学名师,2021年9月;
(10) 河北省青年科技奖,2019年11月;
(11) 河北省三三三人才第二层次人选,2019年9月;
(12) 江苏省双创人才,2019年7月;
(13) 河北省三三三人才第三层次人选,2018年10月;
(14) 安徽省技术领军人才,2015年8月;
(15) 安徽省教坛新秀,2013年12月;
(16) 安徽省高校优秀共产党员,2011年6月;
(17) 2020年度化学工业出版社优秀图书奖;
(18) 入选2017英国皇家化学会“Top 1% 高被引中国作者”榜单;入选2019年度科睿唯安(Clarivate Analytics) 材料科学(Materials Science)领域和交叉领域(Cross-Field)“Top 1%审稿人”、入选斯坦福大学(Stanford University)发布的World’s Top 2% Scientists终身影响力榜单(2021-至今)、全球顶尖前10万科学家排名。
省级、国家一级学会优秀硕/博士学位论文:
(1) 房子魁,2018年中国冶金教育学会优秀硕士学位论文,2019年6月;
(2) 李艳梅,2020年中国冶金教育学会优秀硕士学位论文,2020年12月;
(3) 彭盼盼,2022年中国冶金教育学会优秀硕士学位论文,2023年7月;
(4) 李 莹,2021/2022学年度河北省优秀硕士学位论文,2023年12月;
(5) 张 楠, 2024年度辽宁省优秀硕士学位论文, 2024年6月;
(6) 李学忠,2022/2023学年度河北省优秀硕士学位论文,2024年12月;
(7) 王帆帆,2022/2023学年度河北省优秀硕士学位论文,2024年12月;
(8) 仇立英,2024年中国冶金教育学会优秀硕士学位论文,2024年12月;
(9) 常 慧,2023/2024学年度河北省优秀博士学位论文,2025年12月;
(10) 纪玉瑞,2023/2024学年度河北省优秀硕士学位论文,2025年12月;
(11) 魏婷婷,2025年中国冶金教育学会优秀博士学位论文,2025年12月;
(12) 吕泽琛,2025年中国冶金教育学会优秀硕士学位论文,2025年12月;
(13) 赵钰燊,2025年中国冶金教育学会优秀硕士学位论文,2025年12月;
指导学生获的国家级奖:
(1) 左阳等(本科生),第十一届“挑战杯”(航空航天)全国大学生课外学术科技作品竞赛,三等奖,2009年11月;
(2) 任康瑞、马国鑫、董慕含、许光凝、姜海波、李学忠、张楠,《山容海“钠”—一种环保型高性能钠离子电池》,第十八届“挑战杯”全国大学生课外学术科技作品竞赛,三等奖,2023年12月;
(3) 刘朝志、任康瑞、余湛、田贵彬、刘欢,一种全固态质子电池的制备,入选第十六届全国大学生创新创业年会并进行交流和展示,2023年12月;
(4) 秦恺毅、赵一鸣、李子畅、唐明昊、刘继鹏、汪逸,去故“钠”新,分庭抗“锂”一种环保型高容量钠离子电池正极材料,2023年“建行杯”第十六届全国大学生节能减排社会实践与科技竞赛,三等奖,2023年8月;
(5) 刘朝志等,全国大学生创新年会河北省特等奖(2024.07),入选第十七届全国大学生创新创业年会并进行交流和展示,2024年11月;
(4) 陈梦达等,中国TRIZ杯大学生创新方法大赛,国家级一等奖,2024;
(5) 陈浪等,中国国际大学生创新大赛国家级银奖,2024年10月;
(6) 刘明哲等,全国大学生节能减排社会实践与科技竞赛国家级三等奖,2024;
(7) 刘朝志等,全国大学生节能减排社会实践与科技竞赛国家级三等奖,2024;
(8) 宋卓云等,全国大学生节能减排社会实践与科技竞赛国家级二等奖,2025;
(9) 金雨卿等,“挑战杯”中国大学生创业计划竞赛河北省特等奖,2024
学术成果
【论文、专著与专利等】
到2026年8月为止,共发表第一作者或通讯作者SCI期刊论文300余篇,H因子为70,他引16000余次,先后有37篇论文为ESI高引论文,9篇论文入选热点(ESI HOT paper)论文,49篇论文被引用超百次,论文信息见researcher ID:http://www.researcherid.com/rid/F-4594-2012.先后为Chem. Rev. Soc.、Nat. Commun.、Adv. Mater.等国内外80余种期刊审稿1200余篇,合作出版专著5部,授权第一中国发明专利16项,荷兰发明专利2项。
【出版著作】
(1) 伊廷锋, 谢颖. 锂离子电池电极材料, 2019年1月,ISBN: 978-7-122-32095-7, 入选化学工业出版社“中国制造2025” 出版工程和“十三五” 国家重点出版物出版规划项目,获2020年度化学工业出版社优秀图书奖,入选河北省“十四五”普通高等教育本科规划教材。
(2) 伊廷锋, 魏婷婷, 谢颖. 钠离子电池基础与应用, 2023年10月,ISBN: 9787122436061, 化学工业出版社;
(3) 张桥保, 吴贤文, 陆敬予, 伊廷锋, 电池材料——合成、表征与应用, 化学工业出版社,2022年4月,ISBN: 978-7-122-40290-5;
【发表的第一或通讯作者主要论文】
[1] Lingchang Wu†, Chaoyi Qiu†, Junwei Zhang†, Zihao Tao, Xiang Liu, Zhixiao Cai, Haoxiang Yu*, Lei Yan, Liyuan Zhang, Ting-Feng Yi*, Jie Shu*, A sustainable seven-electron cascade battery via orchestrated gas-liquid-solid triphase redox reactions, Science Advances, 2026, 12(27), eaef2744. (IF 12.5)
[2] Ying Li, Zheng-Han Yang, Jia-Hao Li, Zong-Lin Liu, Peng-Fei Wang, Qianyu Zhang*, Dongliang Chao, Yuping Wu*, Ting-Feng Yi*, Molecular fence on the inner Helmholtz plane for highly reversible zinc metal anodes, eScience, 2026, 100556. (IF 52.9)
[3] Tao-Tao Li, Bing-Chen Liu, Yi-Meng Wu, Peng-Fei Wang, Zong-Lin Liu, Jie Shu, Shijie Feng, Jiaming Zhang, Ting-Feng Yi*, Qiaobao Zhang*, Advances in the rational design of flexible Zn-Air batteries: Recent developments and future perspectives, Progress in Materials Science, 2026, 159, 101657. (IF 42.9)
[4] Chaoyi Qiu, Xia Lin, Zhiwei Chen, Lingchang Wu, Zhichao Wang, Haoxiang Yu, Lei Yan, Peng Li, Liyuan Zhang, Ting-Feng Yi*, Jie Shu*, In Situ Copper-Mediated Electron Bridge Revolutionizes Aqueous Sulfur-Based Batteries, Advanced Materials, 2026, 38, (16), e20299. (IF 29.1)
[5] Zheng-Han Yang, Zong-Lin Liu, Qin-Zhi Lai, Peng-Fei Wang, Jie Shu, Ting-Feng Yi*, Interface failure mechanisms and adaptive regulation strategies for zinc metal anodes toward high-performance aqueous zinc-ion batteries, Coordination Chemistry Reviews, 2026, 569, 218472. (IF 25.6)
[6] Jing-Yu Wang, Zheng-Han Yang, Hui-Cheng Wang, Zong-Lin Liu, Qin-Zhi Lai, Peng-Fei Wang, Meng-Cheng Han*, Yue Du*, Jie Shu, Ting-Feng Yi*, Functional gel electrolytes: A synergistic breakthrough in high performance and adaptability to complex environments for zinc-ion batteries, Coordination Chemistry Reviews, 2026, 567, 218288. (IF 25.6)
[7] Jing-Yu Wang, Zheng-Han Yang, Jing Li, Peng-Fei Wang, Zong-Lin Liu, Jie Shu*, Ting-Feng Yi*, Advanced aqueous eutectic electrolyte: Bridging the development of high-performance aqueous zinc-ion batteries, Coordination Chemistry Reviews, 2026, 555, 217665. (IF 25.6)
[8] Tao-Tao Li, Hao-Tian Guo, Bing-Chen Liu, Qin-Zhi Lai, Zong-Lin Liu, Da-Xian Cao, Ziyun Wang*, Qiao-Bao Zhang*, Jie Shu, Ting-Feng Yi*, Fundamental understanding of reaction mechanism and modulation strategy in carbon-based bifunctional oxygen electrocatalysts towards high-performance zinc-air batteries, Materials Science and Engineering: R: Reports, 2026, 171, 101272. (IF 21.1)
[9] Yue Du*, Wenxue Chen, Zhixian Shi, Song Pan, Xiaonan Xu, Jiaming Li, Jian Zou, Ankang Shi, Jijian Zhang, Lina Zhou, Jianqing Zhou, Yisi Liu*, Xiaoyuan Zeng*, Ting-Feng Yi*, A bonded phosphorus source strategy for Co-Co2P heterojunction catalysts via In Situ phase reconstruction toward long-life zinc-air batteries, Materials Science and Engineering: R: Reports, 2026, 169, 101195. (IF 21.1)
[10] Ying Li, Yi-Han Zhao, Jingyu Wang, Dinghao Xu, Yuange Wang, Pengfei Wang, Zonglin Liu, Qinzhi Lai, Jie Shu, Qianyu Zhang*, Ting-Feng Yi*, Epitaxial substrate engineering enables ultrastable zinc anodes via low-lattice-mismatch interface-induced dendrite regulation, Advanced Functional Materials, 2026, 36(5), e09963. (IF 19.9)
[11] Shan Zhao, Zheng-Xiao Li, Hao-Tian Guo, Jing Li, Zong-Lin Liu*, Peng-Fei Wang, Lin-Lin Wang, Ting-Feng Yi*, Critical role of carbon substrates in optimizing Ru-based HER catalysts: from dimensional insights to metal-support interactions engineering, Advanced Functional Materials, 2026, 36(10), e09799. (IF 19.9)
[12] Zong-Lin Liu, Bing-Chen Liu, Hai-Qin Fang, Qiong Xu*, Peng-Fei Wang, Ting-Feng Yi*, Interfacial chemical regulation of zinc anodes: constructing kinetic repair zones, Advanced Functional Materials, 2026, 36(39), e74635. (IF 19.9)
[13] Zong-Lin Liu, Bing-Chen Liu, Hai-Qin Fang, Shan Zhao, Peng-Fei Wang, Ting-Feng Yi*, he breakthrough of carbon-supported ruthenium catalysts in hydrogen evolution reaction: the "dual engines" of design and synthesis, Renewable and Sustainable Energy Reviews, 2026, 229, 116622. (IF 18)
[14] Yi-Meng Wu, Jing-Yu Wang, Hao-Tian Guo, Peng-Fei Wang, Zong-Lin Liu*, Yan-Rong Zhu*, Jie Shu, Ting-Feng Yi*, Unraveling the regulation rules of vanadium-site cation substitution for Na3V2(PO4)3 cathode materials toward high energy density sodium-ion batteries, Green Energy & Environment, 2026, 11(1): 62-104. (IF 16.7)
[15] Zhuocheng Zhan, Yi-Meng Wu, Qiong Xu*, Bo-Xuan Zhang, Peng-Fei Wang, Zong-Lin Liu, Linlin Wang, Jie Shu, Ting-Feng Yi*, Bridging the development of high-performance sodium-ion Batteries by designing high-entropy layered oxide cathodes, Green Energy & Environment, 2026, (IF 16.7)
[16] Zhuoyun Song, Mingjun Cui, Yiguo Zhang, Nan Zhang, Haotian Yang, Kangrui Ren, Lang Chen, Zong-Lin Liu*, Ying Xie*, Ting-Feng Yi*, Reversible construction of rigid-flexible layered-tunnel heterostructures endowing MnO2 cathode with robust zinc ion storage, Journal of Energy Chemistry, 2026, 114, 835–847. (IF 15.6)
[17] Kang-Rui Ren, Lang Chen, Chao-Zhi Liu, Yue Tian, Xin-Yi Leng, Ming-Na Jiang, Zhuo Han, Guan-You Xiao, Guang-Ning Xu, Zhan Yu, Peng-Fei Wang, Ying Xie*, Yan-Bing He*, Ting-Feng Yi*, Ligand field electronic state regulation of monoclinic Prussian white toward highly stable sodium-ion batteries, Advanced Materials, 2025, 37(38), 2507960. (IF 29.1)
[18] Taotao Li, Bingchen Liu, Haotian Guo, Pengfei Wang, Zonglin Liu, Qinzhi Lai, Qianyu Zhang*, Ting-Feng Yi*, Enhanced bifunctional oxygen electrocatalysis by synergistic active heterostructure design, Advanced Energy Materials, 2025, 15(35), 2502493. (IF 26)
[19] Taotao Li, Nan Zhang, Bingchen Liu, Pengfei Wang, Zonglin Liu, Yuange Wang, Dinghao Xu, Hao Tian, Qianyu Zhang*, Ting-Feng Yi*, Unlocking the critical role of cations doping in MnO2 cathode with enhanced reaction kinetics for aqueous zinc ion batteries, Advanced Functional Materials, 2025, 35(20), 2423755. (ESI高被引IF 19.9)
[20] Shan Zhao, Zhen-Hong Wang, Jing-Yu Wang, Peng-Fei Wang, Zong-Lin Liu*, Jie Shu, Ting-Feng Yi*, Unveiling the mysteries of hydrogen spillover phenomenon in hydrogen evolution reaction: Fundamentals, evidence and enhancement strategies, Coordination Chemistry Reviews, 2025, 524, 216321. (IF 25.6)
[21] Jing-Yu Wang, Yi-Han Zhao, Xin-Yu Liu, Peng-Fei Wang, Zong-Lin Liu, Qianyu Zhang, Jie Shu, Ting-Feng Yi*, Exploring the unknown relationship between additives and zinc anodes: from key challenges to enhancement mechanisms, Coordination Chemistry Reviews, 2025, 545, 217019. (IF 25.6)
[22] Bo-Xuan Zhang, Wen-Juan Liu, Yue Tian, Lang Chen, Zhuo-Yun Song, Qi-Min Fang, Shengxue Yan, Jie Shu, Ting-Feng Yi*, Optimization strategies for high performance zinc-ion hybrid supercapacitors: advances in materials, interfaces and devices, Energy Storage Materials, 2025, 80, 104449. (IF 19.3)
[23] Ying Li, Jing-Yu Wang, Jun-Wei Yin, Peng-Fei Wang, Zong-Lin Liu, Jie Shu, Ting-Feng Yi*, Unveiling the mysteries of anode-free Zn metal batteries: From key challenges to viable solutions, Energy Storage Materials, 2025, 75, 104056. (IF 19.3)
[24] Lu-Lu Zhao, Yi-Han Zhao, Yi-Meng Wu, Peng-Fei Wang, Zong-Lin Liu, Qian-Yu Zhang, Jie Shu, Ting-Feng Yi*, Everything in aqueous zinc-ion batteries may be Prussian blue analogues: From cathode materials to electrolyte additives applications, Energy Storage Materials, 2025, 78, 104299. (IF 19.3)
[25] Lu-Lu Zhao, Jun-Wei Yin, Bing-Chen Liu, Peng-Fei Wang, Zong-Lin Liu, Ying Xie*, Jie Shu, Qian-Yu Zhang, Ting-Feng Yi*, Construction of high-performance aqueous zinc-ion batteries by guest pre-intercalation MnO2-based cathodes, Advances in Colloid and Interface Science, 2025, 341, 103499. (IF 23.7)
[26] Haotian Guo, Lulu Zhao, Xinyu Liu, Jing Li, Pengfei Wang, Zonglin Liu, Linlin Wang, Jie Shu, Tingfeng Yi*, Electrospinning technology combined with MOFs: Bridging the development of high-performance zinc-air batteries, Chinese Journal of Catalysis, 2025, 79, 32-67. (IF 17.2)
[27] Lu-Lu Zhao, Jing-Yu Wang, Yi-Meng Wu, Peng-Fei Wang, Zong-Lin Liu, Jie Shu, Ting-Feng Yi*, Qiaobao Zhang*, Unlocking the multidimensional application and optimization mechanism of MOFs materials in aqueous zinc ion batteries, Journal of Energy Chemistry, 2025, 111, 249-273. (IF 15.6)
[28] Zheng-Xiao Li, Yi-Meng Wu, Jun-Wei Yin, Peng-Fei Wang, Zong-Lin Liu, Yan-Xuan Wen, Jun-Hong Zhang*, Yan-Rong Zhu*, Ting-Feng Yi*, Emerging modification strategies for layered Fe-based oxide cathodes toward high-performance sodium-ion batteries, Journal of Energy Chemistry, 2025, 107, 122-147. (IF 15.6)
[29] Hong-Yan Liu, Xin-Yu Liu, Nan Zhang, Peng-Fei Wang*, Zong-Lin Liu, Jie Shu, Ting-Feng Yi*, Functional ternary salt construction enabling an in-situ Li3N/LiF-enriched interface for ultra-stable all-solid-state lithium metal batteries, Journal of Energy Chemistry, 2025, 101, 68-75. (IF 15.6)
[30] Yi-Han Zhao, Shan Zhao, Xin-Yu Liu, Peng-Fei Wang, Zong-Lin Liu, Jie Shu, Ting-Feng Yi*, Decoding the coordination environment engineering of non-noble metal-nitrogen-carbon: from microstructure to oxygen electrocatalytic performance, Journal of Energy Chemistry, 2025, 109, 952–974. (IF 15.6)
[31] Nan Zhang, Xing-Qi Chen, Xiaoting Lin, Peng-Fei Wang*, Zong-Lin Liu, Jie Shu, Ping He*, Ting-Feng Yi*, Targeting stability: Recent progress and perspectives on both anode and cathode interface of halide solid electrolytes, Journal of Energy Chemistry, 2025, 109, 497-517. (IF 15.6)
[32] Jun-Wei Yin, Yi-Meng Wu, Xin-Yu Liu, Jing Li, Peng-Fei Wang, Zong-Lin Liu, Lin-Lin Wang, Jie Shu, Ting-Feng Yi*, Insights into degradation mechanisms and engineering strategies of layered manganese-based oxide cathodes for sodium-ion battery, Green Energy & Environment, 2025, 10(12), 2392-2417 (IF 16.7)
[33] Ya-Fei Guo, Shan Zhao, Nan Zhang, Zong-Lin Liu, Peng-Fei Wang, Jun-Hong Zhang, Ying Xie, Ting-Feng Yi*, Advanced design strategies for Fe-based metal–organic framework-derived electrocatalysts toward high-performance Zn–air batteries, Energy & Environmental Science, 2024,17(5), 1725-1755. (IF 30.5 ESI高被引)
[34] Xin-Yu Liu, Nan Zhang, Peng-Fei Wang*, Xufei An, Jie Shu, Yan-Rong Zhu, Yan-Bing He*, Ting-Feng Yi*, Ionic conductivity regulating strategies of sulfide solid-state electrolytes, Energy Storage Materials, 2024, 72, 103742. (IF 19.3)
[35] Lu-Lu Zhao, Shan Zhao, Nan Zhang, Peng-Fei Wang, Zong-Lin Liu, Ying Xie*, Jie Shu, Ting-Feng Yi*, Construction of Stable Zn Metal Anode by Inorganic Functional Protective Layer Toward Long-Life Aqueous Zn-Ion Battery, Energy Storage Materials, 2024, 71, 103628. (IF 19.3 ESI高被引)
[36] Ying Li, Ya-Fei Guo, Zheng-Xiao Li, Peng-Fei Wang, Ying Xie*, Ting-Feng Yi*, Carbon-based nanomaterials for stabilizing zinc metal anodes towards high-performance aqueous zinc-ion batteries, Energy Storage Materials, 2024, 67, 103300. (ESI高被引IF 19.3)
[37] Ya-Fei Guo, Lu-Lu Zhao, Nan Zhang, Peng-Fei Wang, Zong-Lin Liu, Jie Shu, Ting-Feng Yi*, Composition regulation of transition metal electrocatalysts derived from zeolite imidazolate frameworks for Zn-air batteries, Energy Storage Materials, 2024, 70, 103556. (IF 19.3)
[38] Hui Chang, Xinyu Liu, Shan Zhao, Zonglin Liu, Ruitao Lv, Qianyu Zhang*, Ting-Feng Yi*, Self-assembled 3D N/P/S-tridoped carbon nanoflower with highly branched carbon nanotubes as efficient bifunctional oxygen electrocatalyst toward high-performance rechargeable Zn-air batteries, Advanced Functional Materials, 2024, 34(16), 2313491. (ESI热点ESI高被引IF 19.9)
[39] Taotao Li, Yihan Zhao, Nan Zhang, Kui Zhang*, Cheng Zhang*, Ting-Feng Yi*, Endowing carbon dots with long-lived phosphorescence emission in aqueous solutions, Advanced Functional Materials, 2024, 34(7), 2309663. (IF 19.9)
[40] Shao-Jie Yang, Lu-Lu Zhao, Zheng-Xiao Li, Pengfei Wang, Zong-Lin Liu, Jie Shu, Ting-Feng Yi*, Achieving stable Zn anode via artificial interfacial layers protection strategies toward aqueous Zn-ion batteries, Coordination Chemistry Reviews, 2024, 517, 216044. (IF 25.6 ESI高被引)
[41] Kang-Rui Ren, Guang-Ning Xu, Zhan Yu, Chao-Zhi Liu, Peng-Fei Wang, Jun-Hong Zhang*, Yan-Bing He*, Ting-Feng Yi*, Towards Prussian blue analogues-based advanced aqueous batteries: From facing critical challenges to feasible solutions, Coordination Chemistry Reviews, 2024, 510, 215833. (IF 25.6)
[42] Shu-Hui Tian, Jian-Cang Wang, Nan Zhang, Peng-Fei Wang*, Junhong Zhang*, Ting-Feng Yi*, Key issues and modification strategies towards high-performance polymer all-solid-state lithium-sulfur batteries, Coordination Chemistry Reviews, 2024, 513, 215909. (IF 25.6)
[43] Taotao Li, Nan Zhang, Shan Zhao, Mingzhe Liu, Kui Zhang*, Cheng Zhang*, Jie Shu, Ting-Feng Yi*, Long-lived dynamic room temperature phosphorescent carbon dots for advanced sensing and bioimaging applications, Coordination Chemistry Reviews, 2024, 516, 215987. (ESI高被引IF 25.6)
[44] Jian-Cang Wang, Lu-Lu Zhao, Nan Zhang, Peng-Fei Wang*, Ting-Feng Yi*, Interfacial stability between sulfide solid electrolytes and lithium anodes: Challenges, strategies and perspectives, Nano Energy, 2024, 123, 109361. (ESI高被引IF 16.8)
[45] Hui Chang, Lulu Zhao, Shan Zhao, Zong-Lin Liu, Peng-Fei Wang, Ying Xie, Ting-Feng Yi*, Tuning interface mechanism of FeCo alloy embedded N,S-codoped carbon substrate for rechargeable Zn-air battery, Journal of Energy Chemistry, 2024, 93, 400-410. (ESI高被引IF 15.6)
[46] Junzhe Li, Chao Wang, Cheng Ji, Yangzhou Ma, Rui Wang, Shilin Zhang, Junnan Hao, Tengfei Zhou*, Longhai Zhang, Chaofeng Zhang*, Ting-Feng Yi*, Molybdenum-based materials for alkali metal-ion batteries: Recent advances and perspectives, Coordination Chemistry Reviews, 2024, 506, 215725. (IF 25.6)
[47] Hui Chang, Ya-Fei Guo, Xu Liu, Peng-Fei Wang, Ying Xie*, Ting-Feng Yi*, Dual MOF-derived Fe/N/P-tridoped carbon nanotube as high-performance oxygen reduction catalysts for zinc-air batteries, Applied Catalysis B: Environmental, 2023, 327, 122469. (IF 19.7 ESI高被引) 三年高被引申请2026年A+
[48] Ya-Fei Guo, Ying Li, Yu-Hao Chen, Peng-Fei Wang, Ying Xie*, Ting-Feng Yi*, Rational design of one-dimensional cobalt-related oxygen electrocatalysts toward high-performance zinc-air batteries, Coordination Chemistry Reviews, 2023, 495, 215383. (IF 25.6)
[49] Nan Zhang, Jian-Cang Wang, Ya-Fei Guo, Peng-Fei Wang, Yan-Rong Zhu, Ting-Feng Yi*, Insights on rational design and energy storage mechanism of Mn-based cathode materials towards high performance aqueous zinc-ion batteries, Coordination Chemistry Reviews, 2023, 479, 215009. (IF 25.6 ESI高被引,ESI热点)
[50] Jian-Cang Wang#, Peng-Fei Wang#,*, Ting-Feng Yi, Ting-Feng Yi*, Challenges and optimization strategies at the interface between sulfide solid electrolyte and lithium anode, Energy Storage Materials, 2023, 62, 102958. (IF 19.3)
[51] Peng-Fei Wang#, Xuewei He#, Ze-Chen Lv, Hucheng Song*, Xiaoying Song, Ting-Feng Yi*, Ning Xu, Ping He*, Haoshen Zhou, Light-driven polymer-based all-solid-state lithium-sulfur battery operating at room temperature, Advanced Functional Materials, 2023, 33(5): 2211074. (IF 19.9)
[52] Yu-Rui Ji, Ya-Fei Guo, Xu Liu, Peng-Fei Wang, Ting-Feng Yi*, Insights on rational design and regulation strategies of Prussian blue analogues and their derivatives towards high-performance electrocatalysts, Chemical Engineering Journal, 2023, 471, 144743. (IF 12.5 ESI高被引)
[53] Ting-Ting Wei, Xu Liu, Shao-Jie Yang, Peng-Fei Wang, Ting-Feng Yi*, Regulating the electrochemical activity of Fe-Mn-Cu-based layer oxides as cathode materials for high-performance Na-ion battery, Journal of Energy Chemistry, 2023, 80, 603-613 (IF 15.6 ESI高被引、ESI热点)
[54] Nan Zhang, Yu-Rui Ji, Jian-Cang Wang, Peng-Fei Wang, Yan-Rong Zhu, Ting-Feng Yi*, Understanding of the charge storage mechanism of MnO2-based aqueous zinc-ion batteries: Reaction processes and regulation strategies, Journal of Energy Chemistry, 2023, 82, 423-463. (IF 15.6 ESI高被引)
[55] Ling-Na Shi, Lan-Tong Cui, Yu-Rui Ji, Ying Xie*, Yan-Rong Zhu, Ting-Feng Yi*, Towards high-performance electrocatalysts: Activity optimization strategy of 2D MXenes-based nanomaterials for water-splitting, Coordination Chemistry Reviews, 2022, 469, 214668. (IF 25.6)
[56] Hui Chang, Ling-Na Shi, Yu-Hao Chen, Peng-Fei Wang, Ting-Feng Yi*, Advanced MOF-derived carbon-based non-noble metal oxygen electrocatalyst for next-generation rechargeable Zn-air batteries, Coordination Chemistry Reviews, 2022, 473, 214839. (ESI热点IF 25.6)
[57] Ting-Ting Wei, Panpan Peng, Yu-Rui Ji, Yan-Rong Zhu, Ting-Feng Yi*, Ying Xie*, Rational construction and decoration of Li5Cr7Ti6O25@C nanofibers as stable lithium storage materials, Journal of Energy Chemistry, 2022, 71, 400-410. (ESI高被引、ESI热点IF 15.6)
[58] Hong-Li Ding, Hai-Tao Yu, Xiao-dong Wang*, Chen-Feng Guo, Bing Zheng, Ying Xie*, Ting-Feng Yi*, Improving the stability, lithium diffusion dynamics, and specific capacity of SrLi2Ti6O14 via ZrO2 coating, Green Energy & Environment, 2022, 7(1): 53-65. (IF 16.7)
[59] Ting-Feng Yi*, Liying Qiu, Jin-Peng Qu, Hongyan Liu, Jun-Hong Zhang*, Yan-Rong Zhu, Towards high-performance cathodes: Design and energy storage mechanism of vanadium oxides-based materials for aqueous Zn-ion batteries, Coordination Chemistry Reviews, 2021, 446, 214124. (IF 25.6)
[60] Ting-Feng Yi*, Hirbod Maleki Kheimeh Sari, Xuezhong Li, Fanfan Wang, Yan-Rong Zhu, Junhua Hu, Jiujun Zhang*, Xifei Li*, A review of niobium oxides based nanocomposites for lithium-ion batteries, sodium-ion batteries and supercapacitors, Nano Energy, 2021, 85, 105955. (ESI高被引、ESI热点IF 17.1)
[61] Baole Guan, Si-Yu Qi, Ying Li, Ting Sun*, Yan-Guo Liu*, Ting-Feng Yi*, Towards high-performance anodes: Design and construction of cobalt-based sulfide materials for sodium-ion batteries, Journal of Energy Chemistry, 2021, 54, 680-698. (IF 15.6)
[62] T.-F. Yi*, J.-P. Qu, X. Lai, X. Han, H. Chang, Y.-R. Zhu, Towards high-performance Li storage anodes: Design and construction of spherical carbon-coated CoNiO2 materials, Materials Today Chemistry, 2021, 19, 100407. (IF 6.7 ESI高被引)
[63] Ting-Feng Yi*, Hui Chang, Ting-Ting Wei, Si-Yu Qi, Yanmei Li*, Yan-Rong Zhu, Approaching high-performance electrode materials of ZnCo2S4 nanoparticle wrapped carbon nanotubes for supercapacitors, Journal of Materiomics, 2021, 7(3): 563-576. (ESI高被引IF 9.6)
[64] Ting-Feng Yi*, Jing-Jing Pan, Ting-Ting Wei, Yanwei Li∗, Guozhong Cao∗, NiCo2S4-based nanocomposites for energy storage in supercapacitors and batteries, Nano Today, 2020, 33, 100894. (IF 10.9 ESI高引ESI热点)
[65] Ting-Feng Yi*, Ting-Ting Wei, Ying Li, Yan-Bing He*, Zhen-Bo Wang*, Efforts on Enhancing the Li-ion Diffusion Coefficient and Electronic Conductivity of Titanate-based Anode Materials for Advanced Li-ion Batteries, Energy Storage Materials, 2020, 26: 165-197. (IF 19.3 ESI高引ESI热点)
[66] Tingting Liu, Xikun Zhang, Maoting Xia, Haoxiang Yu, Na Peng, Cheng Jiang, Miao Shui, Ying Xie*, Ting-Feng Yi*, Jie Shu*, Functional cation defects engineering in TiS2 for high-stability anode, Nano Energy, 2020, 67, 104295 (ESI高被引IF17.1)
[67] Ting-Feng Yi*, Li-Ying Qiu, Jie Mei, Si-Yu Qi, Ping Cui, Shaohua Luo, Yan-Rong Zhu, Ying Xie⁎, Yan-Bing He⁎, Porous spherical NiO@NiMoO4@PPy nanoarchitectures as advanced electrochemical pseudocapacitor materials, Science Bulletin, 2020, 65(7): 546-556. (IF 21.1 ESI高被引ESI热点)
[68] Ting-Feng Yi*, Jie Mei, Baole Guan, Ping Cui, Shaohua Luo, Ying Xie∗, Yanguo Liu⁎, Construction of spherical NiO@MnO2 with core-shell structure obtained by depositing MnO2 nanoparticles on NiO nanosheets for high-performance supercapacitor, Ceramics International, 2020, 46(1): 421-429. (ESI高被引IF 5.1)
[69] Yanmei Li, Jingjing Pan, Jinzhu Wu, Tingfeng Yi*, Ying Xie∗, Mesoporous NiCo2O4 nanoneedles@MnO2 nanoparticles grown on nickel foam for electrode used in high-performance supercapacitors, Journal of Energy Chemistry, 2019, 31: 167-177. (IF 15.6)
[70] Yanmei Li, Xiao Han, Tingfeng Yi*, Yanbing He∗, Xifei Li, Review and prospect of NiCo2O4-based composite materials for supercapacitor electrodes, Journal of Energy Chemistry, 2019, 31: 54-78. (ESI高被引, IF 15.6)
[71] Ting-Feng Yi*, Yan-Rong Zhu, Wei Tao, Shaohua Luo∗, Ying Xie∗, Xi-Fei Li, Recent advances in the research of MLi2Ti6O14 (M=2Na, Sr, Ba, Pb) anode materials for Li-ion batteries, Journal of Power Sources, 2018, 399: 26–41. ESI高被引IF 8.4)
[72] Xiao Han, Xuan Gui, Ting-Feng Yi*, Yanwei Li, Caibo Yue, Recent progress of NiCo2O4-based anodes for high-performance lithium-ion batteries, Current Opinion in Solid State & Materials Science, 2018, 22(4): 109-126. (ESI高被引 IF 13.4)
[73] Ting-Feng Yi*, Jie Mei, Yan-Rong Zhu, Key strategies for enhancing the cycling stability and rate capacity of LiNi0.5Mn1.5O4 as high-voltage cathode materials for high power lithium-ion batteries, Journal of Power Sources, 2016, 316: 85-105. (ESI高被引 IF8.4)
[74] Ting-Feng Yi*, Shuang-Yuan Yang, Ying Xie*, Recent advances of Li4Ti5O12 as promising next generation anode material for high power lithium-ion batteries, Journal of Materials Chemistry A, 2015, 3(11): 5750-5777. (ESI高被引IF 9.5)
[75] Ting-Feng Yi*, Shuan-Yuan Yang, Xiao-Ya Li, Jin-Han Yao*, Yan-Rong Zhu, Rong-Sun Zhu. Sub-micrometric Li4-xNaxTi5O12 (0≤x≤0.2) spinel as anode material exhibiting high rate capability. Journal of Power Sources, 2014, 246: 505-511. (ESI高被引IF 8.4)
[76] Ting-Feng Yi*, Ying Xie*, Yan-Rong Zhu, Rong-Sun Zhu, Haoyu Shen. Structural and thermodynamic stability of Li4Ti5O12 anode material for lithium-ion battery. Journal of Power Sources, 2013, 222: 448~454. (ESI高被引IF 8.4)
[77] Yan-Rong Zhu, Long-Cheng Yin, Ting-Feng Yi*, Haiping Liu*, Ying Xie*, Rong-Sun Zhu, Electrochemical performance and lithium-ion intercalation kinetics of submicron-sized Li4Ti5O12 anode material, Journal of Alloys and Compounds, 2013, 547: 107~112. (ESI高被引, IF 6.3)
[78] Ting-Feng Yi*, Haiping Liu, Yan-Rong Zhu, Li-Juan Jiang, Ying Xie*, Rong-Sun Zhu. Improving the high rate performance of Li4Ti5O12 through divalent zinc substitution. Journal of Power Sources, 2012, 215: 258~265. (ESI高被引IF 8.4)
[79] Ting-Feng Yi*, Ying Xie*, Qiuju Wu, Haiping Liu*, Lijuan Jiang, Mingfu Ye, Rongsun Zhu. High rate cycling performance of lanthanum-modified Li4Ti5O12 anode materials for lithium-ion batteries. Journal of Power Sources, 2012, 214: 220~226. (ESI高被引IF 8.4)
[80] Ting-Feng Yi*, Ying Xie*, Yan-Rong Zhu, Rong-Sun Zhu, Ming-Fu Ye. High Rate micron-sized niobium-doped LiMn1.5Ni0.5O4 as ultra high power positive-electrode material for lithium-ion batteries. Journal of Power Sources, 2012, 211: 59~65. (ESI高被引 IF 8.4)
[81] Ting-Feng Yi*, Jie Shu*, Yan-Rong Zhu, Xiao-Dong Zhu*, Rong-Sun Zhu, An-Na Zhou. Advanced electrochemical performance of Li4Ti4.95V0.05O12 as a reversible anode material down to 0 V. Journal of Power Sources, 2010, 195(1): 285~288. (ESI高被引 IF 8.4)
[82] Ting-Feng Yi*, Li-Juan Jiang, J. Shu*, Cai-Bo Yue, Rong-Sun Zhu, Hong-Bin Qiao. Recent development and application of Li4Ti5O12 as anode material of lithium ion battery. Journal of Physics and Chemistry of Solids, 2010, 71(9):1236~1242. (ESI高被引 IF 4.9)
【授权专利】
[1] 伊廷锋,梅洁,朱彦荣,诸荣孙. 一种宽电位窗口的锂离子电池负极材料的制备方法,专利号:ZL201511005962.7,授权公告日:2017.12.29
[2] 伊廷锋,朱彦荣. 一种锂离子电池复合负极材料的制备方法,授权公告号:CN107221659B,专利号:ZL201710449705.5,授权公告日:2019.08.23
[3] 伊廷锋,梅洁,朱彦荣. 一种含钠的锂离子电池复合负极材料的制备方法,授权公告号:CN107204427B, 专利号:ZL201710445989.0,授权公告日:2020.02.14
[4] 伊廷锋,朱彦荣. 一种具有多级结构的钛酸钠锂负极材料的制备方法,授权公告号:CN107742718B,专利号:ZL201710968566.7,授权公告日:2020.02.14
[5] 伊廷锋,朱彦荣. 一种锂离子电池用多级结构钛酸盐负极材料的制备方法,授权公告号:CN107749471B,专利号:ZL201710968478.7,授权公告日:2020.02.14
[6] 伊廷锋, 朱彦荣, 梅洁. 一种多级结构的球形N掺杂C包覆金属氧化物负极材料的制备方法, 授权公告号:CN108258223B, 专利号:ZL201810051386.7,授权公告日:2020.05.05
[7] 伊廷锋, 潘静静, 朱彦荣. 一种铬基锂离子电池复合负极材料的制备方法, 授权公告号:CN107742710B, 专利号:ZL201710968479.1, 授权公告日:2020.05.19
[8] 伊廷锋, 朱彦荣. 一种铬钛基锂离子电池多级结构负极材料的制备方法, 授权公告号:CN107732207B, 专利号:ZL201710968783.6, 授权公告日:2020.05.26
[9] 伊廷锋, 韩啸, 朱彦荣. 一种多级结构的双金属氧化物复合负极材料的制备方法, 授权公告号:CN107732206B, 专利号:ZL201710968480.4, 授权公告日:2020.06.30
[10] 伊廷锋, 齐思雨, 仇立英, 韩梦成. 罗绍华. 一种锌位钠铜共掺杂协同氮硫掺杂碳包覆改性钛酸锌负极材料及其制备方法和用途, 授权公告号:CN110581273B, 专利号:ZL 201910882225.7, 授权公告日:2021.04.13
[11] 伊廷锋, 戴德兵, 张文泉, 李忠明, 戴长松. 一种锂离子电池钛酸锂负极材料的制备方法, 专利号: ZL 202010300966.2授权公告号: CN 111403721 B,授权公告日:2021.06.29
[12] 伊廷锋, 仇立英, 齐思雨, 韩梦成, 刘延国. 一种锌基负极材料的制备方法及由其制得的负极材料、负极极片和锂电池. 专利号: ZL201910881271.5, 授权公告号:CN110577237B授权公告日:2022.03.01
[13]伊廷锋, 戴德兵, 张文泉, 李忠明, 戴长松, 付定华. 一种改性N,P共掺杂钛酸锂负极材料及其制备方法, 专利号: ZL202010317842.5授权公告号:CN111403724B, 授权公告日:2022.03.29
[14] 伊廷锋, 曲津朋, 魏婷婷, 王鹏飞. 水系铵离子电池用类毛球状柏林绿电极材料的制备方法, 专利号: ZL202210708214.9授权公告号:CN114873612B授权公告日:2023.07.14
[15] Tingfeng Yi, Yanrong Zhu, Yushen Zhao, Ying Li, Pengfei Wang. High-entropy layered oxide cathode material for sodium ion battery, preparation method and use, 授权号2036045, 授权日2025.04.30, 荷兰专利
[16] Tingfeng Yi, Yanrong Zhu, Jinpeng Qu, Pengfei Wang. Preparation method for wool-ball-like berlin green electrode material for aqueous ammonium ion battery, 授权号2036113, 授权日2025.07.05, 荷兰专利
指导研究生情况
截止到2026年9月,现指导博士研究生5人,硕士研究生12人,毕业40人,先后有27人35次获得国家奖学金[2011级陈宾、2013级杨双瑗(2次)、2014级武金珠、2014级房子魁、2015级梅洁、2015级陶伟、2016级李艳梅、2016级韩啸、2018级彭盼盼、2019级李莹(2次)、2020级李学忠、2020级史玲娜、2021级张楠(2次)、2021级赵钰燊、2021级纪玉瑞、2022级郭亚飞(2次)、2022级王建仓、2023级赵路路(2次)、2023级刘欣宇、2023级赵珊、2024级王静宇、2024级郭昊天、2024级尹俊伟、2019级魏婷婷(博士生,2次)、2020级常慧(博士生,2次)、2021级李桃桃(博士生2次)、2022级李莹(博士生2次)、2023级赵艺含(博士生)]。
大道至简,实干为要。欢迎有材料学、化学、化工及物理学背景的同学攻读博士研究生、硕士研究生。