人员队伍详细资料

张耀

发布时间:2024年04月28日 09时00分

 基 本 信 息

姓名张耀

性别:男

职称:研究员

联系方式:zhangyao@seu.edu.cn


研究方向:


1)储氢材料

2)固态电解质材料

 个 人 简 介

教育经历

20023月,浙江大学,工学博士

19986月,大连海事大学,工学硕士

19957月,哈尔滨工业大学,工学学士

 

工作经历

20132月至今,东南大学材料科学与工程学院,研究员

20104月至7月,加拿大魁北克大学 (Université Du Québec À Trois-Rivières)  氢能研究所 (IRH), 国家留学基金委公派访问学者

200411月至20132月,中国科学院大连化学物理研究所, 副研究员, 所级“百人计划”

20028月至20049月,日本产业技术综合研究所(AIST)博士后

           

主持在研项目

1.   国家重点研发计划“氢能技术”重点专项“高密度、大容量和快速响应固态储氢装置技术”(2023YFB4005400) 子课题,2024-2026

2.   国家自然科学基金NSAF联合项目,U2330111,基于中子小角散射和中子衍射技术研究金属烯对MgH2脱吸氢的催化机理,2024-2026

3.   江苏省自然科学基金面上项目,LiBH4-二维材料界面的锂离子传导特性及机理研究,BK202214732022-2025

 

已结题项目

1.   广西自然科学基金面上项目,二维材料与硼氢化锂复合固体电解质的锂离子迁移机制,2020GXNSFAA2970742021-2023

2.   广西电子信息材料构效关系重点实验室(桂林电子科技大学)开放课题,LiBH4-二维材料BN的锂离子传导特性及机理研究,2022-2023

3.   东南大学-无锡***科技有限公司,2021-2022

4.   广东省先进储能材料重点实验室开放课题项目(AESM201701)2018-2019

5.   东南大学-包头市石墨烯研究院股份有限公司联合项目,2018-2019

6.   江苏省自然科学基金面上项目(BK20151405) Li-B-N-H复合物快离子导体的制备与锂迁移机理研究, 2015-2018

7.   江苏省 “六大人才高峰项目 (XNY-002), Li-Mg-Al-H储氢材料制备与性能, 2015-2018

8.   中央高校基本业务费GF项目, 2017-2018

9.   江苏省企业工作站项目, 2015-2018

10. 东南大学中央高校基本业务费项目, 2016-2017

11.  江苏省先进金属材料高技术研究重点实验室项目,2016

12. 国家自然科学基金委青年基金项目(50901070, 2009-2012

13. 科技部国家高技术研究发展(863)计划 (2007AA05Z120, 2007-2009

14. 中国科学院-日本学术振兴会(JSPS)合作项目 (2011-2013)

15. 教育部留学回国人员启动基金项目 (2006-2007)

 

个人获奖情况

1 2015年江苏省六大人才高峰

2.  2014年度东南大学青年教师授课竞赛提名奖

3 2010年辽宁省自然科学学术成果奖一等奖(排名第一)

4.  2008年度中国科学院沈阳分院首届优秀青年学者奖

5.  2008年度中国科协期刊优秀论文奖(排名第二)

 

学术兼职

1《矿物冶金与材料学报(英文版)》编委(International Journal of Minerals, Metallurgy and Materials, Editorial Board Member, JCR Q12021-2024)

 

讲授课程

1. 本科生专业基础课     材料分析技术  48学时

2. 研究生学位课        固态化学     32学时

 

教材编著

2023主编出版教育部高校教指委“十四五”规划教材《材料分析技术》,化学工业出版社,ISBN 978-7-122-44472-1

 

学生培养情况

1.   2023, 指导的硕士生吴子强(2019级)获东南大学优秀专业学位硕士学位论文

2.  2021, 指导的硕士生朱超烨(2017级)获江苏省优秀专业学位硕士学位论文

3.    2017/2018/2019 连续三届指导美国华盛顿州立大学荣誉学院(Honor SchoolWashington State University) 暑期访问学生

4.   2019年指导硕士生陈岗(2016级)获东南大学优秀硕士毕业生

5.   2017年指导硕士生詹乐宇(2014级)获东南大学优秀硕士毕业生

6.    2014年指导本科生杨涛获东南大学优秀毕业设计论文

 

学生毕业去向

2013级硕士生庄向阳福特汽车(南京)

2014级硕士生詹乐宇厦门天马 (厦门)        孙文培 台积电    (南京)

2015级硕士生范小路上汽大通(上海)

2016级硕士生陈岗   海力士半导体(无锡)   相梦园  德国博世  (无锡)

2017级硕士生刘志祥海力士半导体(无锡)   朱超烨  中兴通讯  (南京)

2018级硕士生袁子蕊  中兴通讯  (南京)

2019级硕士生吴子强华为 (上海)

2020级硕士生许诺东风汽车(武汉)  栗志鹏芯原微电子 (南京)

 

指导本科生创新创业项目

1.   2023年,吴泽冲、朱天文,LLZTO|LiBH4-BN固态电解质,校重点项目

2.   2022年,吴泽冲、李乃琪、石载,SiO负极材料制备和性能机理探索,校重点项目

3.   2021年,王前翔、高雨霆、吴宇凡,PdNi双金属烯对MgH2储氢特性的影响,省级项目

4.   2021年,王前翔、高雨霆、吴宇凡,锂掺杂过渡金属对MgH2储氢特性的影响,校级项目

5.   2020年,马祖英、赵鹏程、梁溢华、杨松昂,石榴石型复合固态电解质及其负极界面研究,院级项目

6.   2020年,谢明宇、杨千洛、张思宇、刘鑫,MgH2储氢体系的性能及金属纳米颗粒掺杂改性影响的研究,校级项目

7.   2019年,郭付仪、李榆舒、张嘉坤,硅碳负极材料的制备和性能研究,校重点项目,结题优秀

8.   2018年,高蕾、陈俊宇、周梦婷、罗旭,MgH2系储氢复合体系的结构,性能和机理研究,国家级项目

9.   2018年,梁荣,锂离子电池Mg系负极材料的合成与性能研究,院级

10. 2016年,何凌潇、严潇潇、宋冠洲、王全,铜修饰多孔硅电极的制备及其结构、性能研究,国家级项目

11.  2016年,楼浩然、张嘉敏、刘彦奇、祁琪,TiH2和反应相协同改进MgH2储氢性能的研究,国家级项目,结题优秀

 

近年文章  (一作或通讯)

2024

35. Nuo Xu, Haoran Zhou, Mingqiang ZhangYuchuan Ye, Kaiwen Wang, Yingtang Zhou*, Yunfeng Zhu* and Yao Zhang*Synergistic effect of Pd single atoms and clusters on the de/re-hydrogenation performance of MgH2Journal of Materials Science & Technology,191 (2024) 49–62https://doi.org/10.1016/j.jmst.2024.01.009

34. Zhipeng Li, Ze Liang, Zhihong Ma, Peiyao Qu, Yao Zhang*, Si-PDA-SA  Boosting the anode performance of the porous Si coated with polydopamine and cross-linked with sodium alginate, Journal of Alloys and Compounds, 971 (2024) 172738.  https://doi.org/10.1016/j.jallcom.2023.172738

2023

33. Nuo Xu, Kaiwen Wang, Yunfeng Zhu, Yao Zhang*, PdNi biatomic clusters from metallene unlock record-low onset dehydrogenation temperature for bulk-MgH2Advanced Materials (2023) 2303173 (1-11)  https://doi.org/10.1002/adma.202303173

32. Nuo Xu, Zirui Yuan, Zhihong Ma, Xinli Guo, Yunfeng Zhu, Yongjin Zou, Yao Zhang*, Effects of highly dispersed Ni nanoparticles on the hydrogen storage performance of MgH2, International Journal of Minerals, Metallurgy and Materials, 30 (2023) 54. https://doi.org/10.1007/s12613-022-2510-8

2022

31. Ziqiang Wu, Kaiwen Wang, Weiwei Sun, Zhipeng Li, Zhihong Ma,* Yunfeng Zhu, Yongjin Zou,* and Yao Zhang*, Defective Boron Nitride Inducing the Lithium-ion Migration on the Sub-Surface of LiBH4, Advanced Functional Materials. 2022, 2205677 (1-13) https://doi.org/10.1002/adfm.202205677

30. Zirui Yuan, Shaohan Li, Kaiwen Wang, Nuo Xu, Weiwei Sun, Litao Sun, Hujun Cao, Huaijun Lin, Yunfeng Zhu*, Yao Zhang*, in-situ formed Pt nano-clusters serving as destabilization-catalysis bi-functional additive for MgH2, Chemical Engineering Journal 435(2022) 135050,  https://doi.org/10.1016/j.cej.2022.135050

2021

29. Chaoye Zhu, Yao Zhang*, Ziqiang Wu, Zhihong Ma*, Xinli Guo, Fuyi Guo, Jiakun Zhang, Yushu Li, Closely packed Si@C and Sn@C nano-particles anchored by reduced graphene oxide sheet boosting anode performance of lithium ion batteries, Journal of Materials Science & Technology, 87 (2021) 18-28.https://doi.org/10.1016/j.jmst.2020.12.075

28. Chaoye Zhu, Yao Zhang*, Zhihong Ma*, Hui Wang, Gunnar L. Sly, Yolk-void-shell Si–C nano-particles with tunable void size for high-performance anode of lithium ion batteries, Nanotechnology, 32 (2021) 085403 (13pp).https://doi.org/10.1088/1361-6528/abc77f

27.Yao Zhang*, Chaoye Zhu, Zhihong Ma*, Si@Cu3Si nano-composite prepared by facile method as high-performance anode for lithium-ion batteries, Journal of Alloys and Compounds850 (2021) 156854, 1-10.https://doi.org/10.1016/j.jallcom.2020.156854

26. Yao Zhang*, Zhixiang Liu, Chaoye Zhu, Xinli Guo, Wanqiang Liu, Yi Qu, Boosting anode performance of mesoporous Si by embedding copper nano-particlesJournal of Alloys and Compounds, 850 (2021) 156863, 1-8. https://doi.org/10.1016/j.jallcom.2020.156863

2020
25. Chaoye Zhu, Yao Zhang*, Zhihong Ma*, Yunfeng Zhu, Liquan Li, Mesoporous-Si embedded and anchored by hierarchical Sn nano-particles as promising anode for lithium-ion batteriesJournal of Alloys and Compounds, 832 (2020) 154935, 1-9 https://doi.org/10.1016/j.jallcom.2020.154935

24.Zhixiang Liu, Yao Zhang*, Jipeng Hao, Yunfeng Zhu, Xinli Guo, Liquan Li, Gunnar Sly, Hui Wang, Fast lithium ionic conductivity observed in LiI-MoS2 composite, Inorganic Chemistry Communications, 112 (2020) 107761, 1-5.  https://doi.org/10.1016/j.inoche.2019.107761

23. Zhixiang Liu, Mengyuan Xiang, Yao Zhang*, Huaiyu Shao*, Yunfeng Zhu, Xinli Guo, Liquan Li, Hui Wangand Wanqiang Liu, Lithium migration pathways at the composite interface of LiBH4 and two-dimensional MoS2 enabling superior ionic conductivity at room temperature, Physical Chemistry Chemical Physics, 22 (2020) 4096-4105.   https://pubs.rsc.org/en/content/articlelanding/2020/CP/C9CP06090A

22. Zhixiang Liu, Yao Zhang*, Jipeng Hao, Yunfeng Zhu, Xinli Guo, Liquan Li, Gunnar Sly, High ionic conductivities of composites of Li4(BH4)3I with two dimensional MoS2 at room temperature, Journal of Alloys and Compounds 815 (2020) 152353. https://doi.org/10.1016/j.jallcom.2019.152353

2019

21. Gang Chen, Yao Zhang*, Honghui Cheng, Yunfeng Zhu, Liquan Li, Huaijun Lin, Effects of two-dimension MXene Ti3C2 on hydrogen storage performances of MgH2-LiAlH4 composite, Chemical Physics, 522 (2019) 178–187.

2018

20. Xiaolu Fan, Yao Zhang*, Yunfeng Zhu*, Xinli Guo, Jian Chen, Liquan Li, Hydrogen storage performances and reaction mechanism of non-stoichiometric compound Li1.3Na1.7AlH6 doped with Ti3C2, Chemical Physics, 513 (2018) 135-140.

19. Mengyuan Xiang, Yao Zhang*, Huaijun Lin, Yunfeng Zhu*, Xinli Guo, Jian Chen, Liquan Li, LiBH4-NaX (X=Cl, I) composites with enhanced lithium ionic conductivity, J. Alloys and Compounds,764 (2018) 307-313

18. Mengyuan Xiang, Yao Zhang*, Yunfeng Zhu*, Xinli Guo, Jian Chen, Liquan Li, Ternary LiBH4-NaBH4-MgH2 composite as fast ionic conductor, Solid State Ionics,324 (2018) 109–113

17. Gang Chen, Yao Zhang*, Jian Chen, Xinli Guo, Yunfeng Zhu*, Liquan Li, Enhancing hydrogen storage performances of MgH2 by Ni nano-particles over mesoporous carbon CMK-3, Nanotechnology,29 (2018) 265705 (1-11)  

16.Dan Wang, Yao Zhang, Jian Chen*, Hui Xu, Liguang Qin, Yanhuai Li, Wei Zhang, Peigen Zhang, Wubian Tian, Xinli Guo, ZhengMing Sun*, Structural hybridization of ternary (0D, 1D and 2D) composites as anodes for high-performance Li-ion batteries,Energy Storage Materials, 13 (2018) 293–302

15. Xiangyang Zhuang, Yao Zhang*, Lingxiao He, Yunfeng Zhu, Quan Shi*, Quan Wang, Guanzhou Song, Xiaoxiao Yan, Liquan Li, Strategy to form homogeneously macroporous Si as enhanced anode material of Li-ion batteries J. Alloys and Compounds, 731 (2018)1-9.

2017

14. Xiaolu Fan, Yao Zhang*, Yunfeng Zhu*, Cassandra Phillips, Xinli Guo, Jian Chen, Zengmei Wang, Liquan Li, Preparations and de/re-hydrogenation properties of LixNa3-xAlH6 (x=0.9~1.3) non-stoichiometric compounds, J. Alloys and Compounds, 729 (2017) 648-654.

13. Mengyuan Xiang, Yao Zhang*, Leyu Zhan, Yunfeng Zhu*, Xinli Guo, Jian Chen, Zengmei Wang, Liquan Li, Study on xLiBH4-NaBH4x=1.6, 2.3, and 4composites with enhanced lithium ionic conductivity, J. Alloys and Compounds, 729 (2017) 936-941.

12Xiangyang Zhuang, Yao Zhang*, Lingxiao He, Yunfeng Zhu, Qifeng Tian, Xinli Guo, Jian Chen**, Liquan Li, Quan Wang, Guanzhou Song, Xiaoxiao Yan, Scalable synthesis of nano-Si embedded in porous C and its enhanced performance as anode of Li-ion batteries, Electrochimica Acta, 249 (2017) 166-172.

11. Leyu Zhan, Yao Zhang*, Mengyuan Xiang, Yunfeng Zhu*, Xinli Guo, Jian Chen, Zengmei Wang, Liquan Li, The lithium ionic conductivity of 2LiBH4-MgH2 composite as solid electrolyteInorganic Chemistry Communications83 (2017) 62-65.

10. Leyu Zhan, Yao Zhang*, Xiangyang Zhuang, Hui Fang, Yunfeng Zhu*, Xinli Guo, Jian Chen, Zengmei Wang, Liquan Li, Ionic conductivities of lithium borohydride-lithium nitride composites, Solid State Ionics, 304 (2017) 150-155

9. Yao Zhang*, Leyu Zhan, Xiangyang Zhuang, Yunfeng Zhu*, Neng Wan, Xinli Guo, Jian Chen, Zengmei Wang, Liquan Li, The ionic conductivities, stabilities and ionic mobilities of xLiBH4-Li2NH (x = 1, 2, 4) composites as fast ion conductor, J. Alloys and Compounds, 695 (2017) 2894-2901.

2016

8.Wenpei Sun, Yao Zhang*, Yunfeng Zhu*, Xiangyang Zhuang, Jun Dong*Yi Qu, Xinli GuoJian ChenZengmei WangLiquan Li, The hydrogen storage performance of a 4MgH2-LiAlH4-TiH2composite system, J. Alloys and Compounds, 676 (2016) 557-564

7. Yao Zhang*, Leyu Zhan, Xiangyang Zhuang, Yunfeng Zhu*, Yi Qu, Jian Chen, Xinli Guo, Neng Wan, Liquan Li, The electrochemical hydrogen storage performances of MgxCo100-x (x = 40, 45, 50, 55, 60, 63) body-centered cubic alloys and their Pd-doped system, Int. J. Hydrogen Energy, 41 (2016) 1089-1097

6. Leyu Zhan, Yao Zhang*, Yunfeng Zhu*, Xiangyang Zhuang, Neng Wan, Yi Qu, Xinli Guo, Jian Chen, Zengmei Wang, Liquan Li, Electrochemical performances of Mg45M5Co50 (M=Pd, Zr) ternary hydrogen storage electrodes, Transactions of Nonferrous Metals Society of China, 26 (2016) 1388−1395

5. Leyu Zhan, Yao Zhang*, Yunfeng Zhu*, Xiangyang Zhuang, Jun Dong,Yi Qu, Xinli Guo, Jian Chen, Zengmei Wang, Liquan Li, The electrochemical hydrogen storage properties of Mg67-xPdxCo33 (x=1, 3, 5, 7) electrodes with BCC phase, J. Alloys and Compounds, 662 (2016) 396-403

2015

4.Yao Zhang*, Xiangyang Zhuang, Yunfeng Zhu*, Neng Wan, Liquan Li, Jun Dong, Synergistic effects of TiH2 and Pd on hydrogen desorption performances of MgH2, Int. J. Hydrogen Energy, 40 (2015) 16338-16346

3. Xiangyang Zhuang, Yao Zhang*, Yunfeng Zhu*, Yi Qu, Leyu Zhan, Neng Wan, Honghui Chenge, Xinli Guo, Jian Chen, Zengmei Wang, Liquan Li, The effects of Pd and/or Zr additives on the structures and cyclic stabilities of Mg50Ni50-based electrode alloys, Int. J. Hydrogen Energy, 40 (2015) 2768–2774

2. Yao Zhang*, Leyu Zhan, Yunfeng Zhu*, Xiangyang Zhuan, Xinli Guo, Jian Chen, Zengmei Wang, Liquan Li, Yi Qu, The reversible hydrogen storage performances of Mg50Co50 and Mg50Co45Pd5 alloys with body centered cubic phase in electrochemical system, Int. J. Hydrogen Energy, 40 (2015) 3944 – 3952.

1.Yao Zhang*, Xiangyang Zhuang, Yunfeng Zhu*, Leyu Zhan, Zhenggan Pu, Neng Wan, Liquan Li, Effects of additive Pd on the structures and electrochemical hydrogen storage properties of Mg67Co33-based composites or alloys with BCC phase, Journal of Alloys and Compounds, 622 (2015) 580-586.

 

已授权发明专利

1.   张耀,一种具有纳米尺度的锂离子导体及其制备方法,201410001335.5

2.   张耀,一种Li-B-N-H复合物快离子导体及其制备方法,201410001455.5

3.   张耀,一种可低温脱氢的镁基复合材料及其制备方法,201410677464.6

4.   张耀, 庄向阳,詹乐宇,陈坚,一种高容量的镁-钴系储氢电极材料及其制备方法,201410690517.8

5.   张耀, 詹乐宇,庄向阳,陈坚,一种镁--钴三元镍氢电池负极材料及其制备方法,201410688254.7

6.   张耀,范小路,一种锂钠双碱金属铝氢化合物及其合成方法,201611166388.8

7.   张耀,陈岗,一种铝介孔材料及其制备方法,201611196744.0 

8.    张耀,陈岗,罗旭,周梦婷,高蕾,陈俊宇,一种负载型双金属纳米材料的制备方法及其应用201711268024.5

9.    张耀,刘志祥,曲翊,硼氢化锂与二硫化钼复合体系固态电解质材料及其制备方法和应用,201811445051.X

10.  张耀,刘志祥,曲翊,卤化物与二维材料复合固态电解质材料及制备方法和应用,ZL201911079521.X

11.  张耀,朱超烨,曲翊,一种硅--石墨烯复合物电极材料及其制备方法和应用,ZL201911217804.6

12.  张耀,朱超烨,曲翊,夹层中空双壳结构的硅--石墨烯电极材料及制备方法和应用,ZL201911079510.1

13. 张耀,袁子蕊、曲翊,氢化物掺杂镍-铂核壳结构纳米催化剂储氢材料及其制备方法,ZL 201911079509.9

14. 张耀,吴子强,一种复合固态电解质材料及其制备方法和应用,ZL202210010155.8

15.  张耀,许诺,一种Pd基双层金属烯纳米材料、其制备方法及应用,ZL 2022 1 1207785.0