努丽燕娜研究员

电子邮件:nlyn@sjtu.edu.cn
通讯地址:上海市东川路800号上海交通大学化学化工学院C楼905室

  • 教育背景

    1998.09-2001.06:复旦大学化学系,物理化学专业,博士

    1995.09-1998.06:新疆大学应化所,物理化学专业,硕士

    1991.09-1995.06:陕西师范大学化学系,化学专业,学士

  • 工作经历

    2003-至今:上海交通大学化学化工学院,讲师、副教授、研究员、博士生导师

    2015.07-2015.08:University of Alicante,访问学者

    2014.07-2014.08:Technical University of Denmark,访问学者

    2007.03-2008.03:University of Wollongong,访问学者

    2001.07-2003.06:复旦大学材料系,博士后

  • 研究方向

    可充镁电池(镁二次电池、镁硫(硒)电池、镁空气电池、镁离子电池、镁锂混合电池)关键材料


  • 科研项目

    主持国家自然科学基金:

    (1)面上项目,基于可实用性电解液镁硫电池的基础研究,21975159,2020. 01-2023.12

    (2)面上项目,基于金属镁负极和嵌锂正极材料的新型可充镁锂混合离子电池,215731462016. 012019.12

    (3)面上项目,高性能可充镁电池的构建及其物理化学本质问题的研究,212731472013. 012016.12

    (4)面上项目,低共熔混合熔盐法合成镁电池新型正极材料MgxMySiO4及其电化学储镁可逆性研究,209731122010.012012.12

    (5)青年基金,离子液体作为可充镁电池新型电解液的研究,206030222007.012009.12

    主持国际合作项目:

        Novel cathode materials for rechargeable magnesium batteries(日本昭荣化学,2010.04.012013.04.30


  • 代表性论文专著

    (1)      Duo Zhang, Yaru Wang, Yang Yang, Yang Zhang, Yazhen Zhao, Ming Pan, Yukun Sun, Shaopeng Chen, Xiaoshuo Liu, Jiulin Wang, Yanna NuLi*, Constructing efficient Mg(CF3SO3)2 electrolyte via tailoring solvation and interface chemistry for high-performance rechargeable magnesium batteries, Adv. Energy Mater. 2023, 2301795.

    (2)      Duo Zhang, Songzhao Duan, Xiaoshuo Liu, Yang Yang, Yang Zhang, Wen Ren, Shuxin Zhang, Mingxiang Cheng, Weijie Yang, Jiulin Wang, Yanna NuLi*, Deeping insight of Mg(CF3SO3)2 and comprehensive modified electrolyte with ionic liquid enabling high-performance magnesium batteries, Nano Energy, 2023, 109, 108257.

    (3)        Shuxin Zhang, Yaowei Wang, Yukun Sun, Yaru Wang, Yang Yang, Peng Zhang, Xuecheng Lv, Jiulin Wang, Hong Zhu, Yanna NuLi*, High-energy aqueous magnesium ion batteries with capacity-compensation evolved from dynamic copper, Small, 2023, 2300148.

    (4)        Yang Yang, Wenbin Fu, Duo Zhang, Wen Ren, Shuxin Zhang, Yuantao Yan, Yang Zhang, Sang-Jun Lee, Jun-Sik Lee, Zi-Feng Ma, Jun Yang, Jiulin Wang, Yanna NuLi*, Towards high-performance Mg-S batteries via copper phosphide modified separator, ASC Nano, 2023, 17, 1255-1267.

    (5)        Mingxiang Cheng, Yaru Wang, Duo Zhang, Shuxin Zhang, Yang Yang, Xuecheng Lv, Jiulin Wang, Yanna NuLi*, An efficient Hauser-base electrolyte for rechargeable magnesium batteries, J. Energy Chem., 2023, 76, 1-10.

    (6)        Yaru Wang, Peng Zhang, Shuxin Zhang, Yukun Sun, Jiulin Wang, Xiaoqin Zeng, Yanna NuLi*, Regulation of oxygen vacancies and electronic structures by substituting Ba2+ at A-sites of LaNi0.5Mn0.5O3 double perovskites enabling high-performance catalysts for Mg-air batteries, Appl. Surf. Sci., 2023, 639, 158287.

    (7)      Shuxin Zhang, Yaru Wang, Yukun Sun, Shaopeng Chen, Xuecheng Lv, Jiulin Wang, Yanna NuLi*, First-principles calculations of the solvent effects on magnesium polysulfides in magnesium-sulfur batteries, J. Mol. Struct., 2023, 1294, 136360.

    (8)        Shuxin Zhang, Mingxiang Cheng, Peng Zhang, Yaru Wang, Duo Zhang, Yang Yang, Jiulin Wang, Yanna NuLi*, Insights into the stability of magnesium borate salts for rechargeable magnesium batteries from AIMD simulations, Chem. Commun., 2022, 58, 11969-11972.

    (9)        Wen Ren, Mingxiang Cheng, Yaru Wang, Duo Zhang, Yang Yang, Jun Yang, Jiulin Wang, Yanna NuLi*, Boron-based electrolytes for rechargeable magnesium batteries: biography and perspective, Batteries & Supercaps, 2022, 5, e202200263.

    (10)     Mingxiang Cheng, Wen Ren, Duo Zhang, Shuxin Zhang, Yang Yang, Xuecheng Lv, Jun Yang, Jiulin Wang, Yanna NuLi*, Efficient single-perfluorinated borate-based electrolytes for rechargeable magnesium batteries, Energy Storage Mater., 2022, 51, 764-776.

    (11)     Yaru Wang, Yukun Sun, Wen Ren, Duo Zhang, Yang Yang, Jun Yang, Jiulin Wang, Xiaoqin Zeng*, Yanna NuLi*, Challenges and prospects of Mg-air batteries: a review, Energy Mater., 2022, 2, 200024.

    (12)     Shuxin Zhang, Wen Ren, Yanna NuLi*, Baofeng Wang, Jun Yang, Jiulin Wang, Sulfurized-pyrolyzed polyacrylonitrile cathode for magnesium-sulfur batteries containing Mg2+/Li+ hybrid electrolytes, Chem. Eng. J., 2022, 427, 130902.

    (13)     Di Wu, Wen Ren, Yang Yang, Jiulin Wang, Yanna NuLi*, A Se-doped S@CMK3 composite as a high-performance cathode for magnesium-sulfur batteries with Mg2+/Li+ hybrid electrolytes, J. Phys. Chem. C, 2021, 125, 25959-25967.

    (14)     Wen Ren, Di Wu, Yanna NuLi*, Duo Zhang, Yang Yang, Ying Wang, Jun Yang, Jiulin Wang, An efficient bulky Mg[B(Otfe)4]2 electrolyte and its derivatively general design strategy for rechargeable magnesium batteries, ACS Energy Lett., 2021, 6, 3212-3220.

    (15)     Di Wu, Wen Ren, Yanna NuLi*, Jun Yang, Jiulin Wang, Recent progress on selenium-based cathode materials for rechargeable magnesium batteries: A mini review, J. Mater. Sci. Technol., 2021, 91, 168-177.

    (16)     Wen Ren, Di Wu, Yanna NuLi*, Xuan Zhang, Jun Yang, and Jiulin Wang, A chlorine-free electrolyte based on non-nucleophilic magnesium bis(diisopropyl)amide and ionic liquid for rechargeable magnesium batteries, ACS Appl. Mater. Interfaces, 2021, 13, 32957-32967.

    (17)     Shuxin Zhang, Yan Huang, Yanna NuLi*, Baofeng Wang, Jun Yang, Jiulin Wang, Sodium polyacrylate as a promising aqueous binder of S@pPAN cathodes for magnesium-sulfur batteries. J. Phys. Chem. C, 2020, 124, 20712-20721.

    (18)     Di Wu, Weiqin Wang, Yanna NuLi*, Jun Yang, Jiulin Wang, Effect of copper to Selenium@Microporous carbon cathode for Mg-Se batteries with nucleophilic electrolyte, Electrochimi. Acta, 2020, 330, 135354.

    (19)     Weiqin Wang, Yuanying Yang, Yanna NuLi*, Jingjing Zhou, Jun Yang, Jiulin Wang, Metal Organic Framework (MOF)-Derived carbon-encapsulated cuprous sulfide cathode based on displacement reaction for hybrid Mg2+/Li+ batteries, J. Power Sources, 2020, 445, 227325.

    (20)     Yuanying Yang, Yixiang Qiu, Yanna NuLi*, Jun Yang, Jiulin Wang, A novel magnesium electrolyte containing magnesium bis(diisopropyl)amide-magnesium chloride complex for rechargeable magnesium batteries, J. Mater. Chem. A, 2019, 7, 18295-18303.

    (21)     Xinghe Zhao, Yuanying Yang, Yanna NuLi*, Dongyu Li, Yurui Wang, Xuelin Xiang, A new class of electrolytes based on magnesium bis(diisopropyl)amide for magnesium-sulfur batteries, Chem. Commun., 2019, 55, 6086-6089.

    (22)     Yuanying Yang, Weiqin Wang, Yanna NuLi*, Jun Yang, Jiulin Wang, High active magnesium trifluoromethanesulfonate-based electrolytes for magnesium-sulfur Batteries, ACS Appl. Mater. Interfaces, 2019, 11, 9062-9072.

    (23)     Weiqin Wang, Hancheng Yuan, Yanna NuLi*, Jingjing Zhou, Jun Yang, Jiulin Wang, A sulfur@microporous carbon cathode with a high sulfur content for magnesium-sulfur batteries with nucleophilic electrolytes, J. Phys. Chem. C, 2018, 122, 26764-26776.

    (24)     Hancheng Yuan, Yuanying Yang, Yanna NuLi*, Jun Yang, Jiulin Wang, A conductive selenized polyacrylonitrile cathode in nucleophilic Mg2+/Li+ hybrid electrolytes for magnesium–selenium batteries, J. Mater. Chem. A, 2018, 6, 17075-17085.

    (25)     Hancheng Yuan, Nan Wang, Yanna NuLi*, Jun Yang, Jiulin Wang, Hybrid Mg2+/Li+ batteries with Cu2Se cathode based on displacement reaction, Electrochimi. Acta, 2018, 261, 503-512.

    (26)     Nan Wang, Hancheng Yuan, Yanna NuLi*, Jun Yang, Jiulin Wang, Prelithiation activates Fe2(MoO4)3 cathode for rechargeable hybrid Mg2+/Li+ batteries, ACS Appl. Mater. Interfaces, 2017, 9, 38455-38466.

    (27)     Linqi Zeng, Nan Wang, Jun Yang, Jiulin Wang, Yanna NuLi*, Application of a sulfur cathode in nucleophilic electrolytes for magnesium/sulfur batteries, J. Electrochem. Soc., 2017, 164, A2504-A2512.

    (28)     Nan Wang, Yanna NuLi*, Shuojian Su, Jun Yang, Jiulin Wang, Effects of binders on the electrochemical performance of rechargeable magnesium batteries, J. Power Sources, 2017, 341, 219-229.

    (29)     Shuojian Su, Yanna NuLi*, Nan Wang, Dilinuer Yusipu, Jun Yang, Jiulin Wang, Magnesium borohydride-based electrolytes containing 1-butyl-1-methylpiperidinium bis(trifluoromethyl sulfonyl)imide ionic liquid for rechargeable magnesium batteries, J. Electrochem. Soc., 2016, 163, D682-D688.

    (30)     Shuojian Su, Yanna NuLi*, Zhenguo Huang*, Qi Miao, Jun Yang, Jiulin Wang, A high-performance rechargeable Mg2+/Li+ hybrid battery using one-dimensional mesoporous TiO2(B) nanoflakes as the cathode, ACS Appl. Mater. Interfaces, 2016, 8, 7111-7117.

    (31)     Qi Miao, Yanna NuLi*, Nan Wang, Jun Yang, Jiulin Wang, Shinichi Hirano, Effect of Mg2+/Li+ mixed electrolytes on a rechargeable hybrid battery with Li4Ti5O12 cathode and Mg anode, RSC Adv., 2016, 6, 3231-3234.

    (32)     Shuojian Su, Zhenguo Huang, Yanna NuLi*, Felure Tuerxun, Jun Yang, Jiulin Wang, A novel rechargeable battery with a magnesium anode, a titanium dioxide cathode, and a magnesium borohydride/tetraglyme electrolyte, Chem. Commun., 2015, 51, 2641-2644.

    (33)     Feilure Tuerxun, Yasen Abulizi, Yanna NuLi*, Shuojian Su, Jun Yang, JiuLin Wang, High concentration magnesium borohydride/tetraglyme electrolyte for rechargeable magnesium batteries, J. Power Sources, 2015, 276, 255-261.

    (34)     Peiwen Bian, Yanna NuLi*, Zainapuguli Abudoureyimu, Jun Yang, Jiulin Wang, A novel thiolate-based electrolyte system for rechargeable magnesium batteries, Electrochimi. Acta, 2014, 121, 258-263.

    (35)     Yanna NuLi*, Qiang Chen, Weikun Wang, Ying Wang, Jun Yang, Jiulin Wang, Carbyne polysulfide as a novel cathode material for rechargeable magnesium batteries, The Scientific World Journal, 2014, 107918.

    (36)     Qiang Chen, Yanna NuLi*, Wei Guo, Jun Yang, Jiulin Wang, Yuguo Guo*, PTMA/graphene as a novel cathode material for rechargeable magnesium batteries, Acta Phys. Chim. Sin., 2013, 29, 2295-2299.

    (37)     QingSong Zhao, Yanna NuLi*, Tuerxun Nasiman, Jun Yang, JiuLin Wang, Reversible Deposition and Dissolution of Magnesium from Imidazolium-Based Ionic Liquids, International Journal of Electrochemistry, 2012, Article ID 701741, 8 pages.

    (38)     Yupei Zheng, Yanna NuLi*, Qiang Chen, Ying Wang, Jun Yang, Jiulin Wang, Magnesium cobalt silicate materials for reversible magnesium ion storage, Electrochimi. Acta, 2012, 66, 75-81.

    (39)     Yanna NuLi*, Yupei Zheng, Ying Wang, Jun Yang, Jiulin Wang, Electrochemical intercalation of Mg2+ in 3D hierarchically porous magnesium cobalt silicate and its application as an advanced cathode material in rechargeable magnesium batteries, J. Mater. Chem. A., 2011, 21, 12437-12443.

    (40)     Yun Li, Yanna NuLi*, Jun Yang, Tuhudahong Yilinuer, Jiulin Wang, MgFeSiO4 prepared via a molten salt method as a new cathode material for rechargeable magnesium batteries, Chinese Science Bulletin, 2011, 56, 386-390.

    (41)     Yanna NuLi*, Yupei Zheng, Fei Wang, Jun Yang, Jun Yang, Andrew I. Minett, Jiulin Wang, Jun Chen, MWNT/C/Mg1.03Mn0.97SiO4 hierarchical nanostructure for superior reversible magnesium ion storage, Electrochem. Commun., 2011, 13, 1143-1146.

    (42)     Qingsong Zhao, Yanna NuLi*, Yongsheng Guo, Jun Yang, Jiulin Wang, Reversibility of electrochemical magnesium deposition from tetrahydrofuran solutions containing pyrrolidinyl magnesium halide, Electrochimi. Acta, 2011, 56, 6530-6535.

    (43)     Yanna NuLi*, Jun Yang, YongSheng Li, Jiulin Wang, Mesoporous magnesium manganese silicate as cathode materials for rechargeable magnesium batteries, Chem. Commun., 2010, 46, 3794-3796.

    (44)     Yanna NuLi, Jun Yang*, Jiulin Wang, Yun Li, Electrochemical intercalation of Mg2+ in magnesium manganese silicate and its application as high-energy rechargeable magnesium battery cathode,J. Phys. Chem. C, 2009, 113,12594-12597.

    (45)     Yanna NuLi, Peng Zhang, Zaiping Guo, Huakun Liu, Jun Yang, Jiulin Wang, Nickle-cobalt oxides/carbon nanocomposites as anode materials for lithium-ion batteries, Mater. Res. Bull., 2009, 44, 140.

    (46)     Yanna NuLi, Peng Zhang, Zaiping Guo, Huakun Liu, Jun Yang, Jiulin Wang, Nanostructured NiO-C composites for lithium-ion battery anode, J. Nanosci. Nanotech., 2009, 9, 1951.

    (47)     Yanna NuLi, Peng Zhang, Zaiping Guo, Huakun Liu, Shape evolution of a-Fe2O3 and its size-dependent electrochemical properties for lithium-ion batteries, J. Electrochem. Soc., 2008, 155, A196. 

    (48)     Yanna NuLi, Peng Zhang, Zaiping Guo, Huakun Liu, Preparation of a-Fe2O3 submicro-flowers by a hydrothermal approach and their electrochemical performance in lithium-ion batteries, Electrochim. Acta, 2008, 53, 4213.

    (49)     Yanna NuLi, Peng Zhang, Zaiping Guo, Huakun Liu, Jun Yang, NiCo2O4/C nanocomposite as a highly reversible anode material for lithium-ion batteries, Electrochem. Solid-State Lett., 2008, 11, A64.

    (50)     Yanna NuLi, Peng Zhang, Zaiping Guo, Huakun Liu, Controlled synthesis of a-Fe2O3 nanostructures and their size-dependent electrochemical properties for lithium-ion batteries, J. Power Sources, 2008, 184, 456.

    (51)     Yanna NuLi, Jun Yang, Mingshan Jiang, Synthesis and characterization of Sb/CNT and Bi/CNT composites as anode material for lithium-ion batteries, Mat. Lett., 2008, 62, 2092.

    (52)     Yanna NuLi, Zaiping Guo, Huakun Liu, Jun Yang, A new class of cathode materials for rechargeable magnesium batteries: organosulfur compounds based on sulfur-sulfur bonds, Electrochem. Commun., 2007, 9, 1913-1917.

    (53)     Yanna NuLi, Jun Yang, Pu Wang, Electrodeposition of magnesium film from BMIMBF4 ionic liquid, Appl. Surf. Sci., 2006, 252, 8086-8090.

    (54)     Pu Wang, Yanna NuLi*, Jun Yang, ZhenZhen Feng, Mixed ionic liquids as electrolyte for reversible deposition and dissolution of magnesium, Surf. Coat. Technol., 2006, 201, 3783-3787.

    (55)     Yanna NuLi, Baofeng Wang, Jun Yang, Xianxia Yuan, Zifeng Ma, Cu5Si-Si/C composites for lithium-ion battery anodes, J. Power Sources, 2006, 153, 371.

    (56)     Yanna NuLi, Jun Yang, Zhiyu Jiang, Intercalation of lithium ions into bulk and powder Highly Oriented Pyrolytic Graphite, J. Phys. Chem. Solids, 2006, 67, 882. 

    (57)     Yanna NuLi*, Jun Yang, Rong Wu, Reversible deposition and dissolution of magnesium from BMIMBF4 ionic liquid, Electrochem. Commun., 2005, 7, 1110-1115.

    (58)     Yanna NuLi, Jun Yang, Jiulin Wang, Jinqiang Xu, Pu Wang, Electrochemical magnesium deposition and dissolution with high efficiency in ionic liquid, Electrochem. Solid-State Lett., 20058C166-C169.

    (59)     Yanna NuLi, Xianxia Yuan, Jun Yang, Zifeng Ma, Baofeng Wang, Electrochemical preparation and Li-insertion of nanocrystalline NiCuO2 thin film, J. New Mater. Electrochem. Syst., 2004, 7, 39.

    (60)     张鹏, 孙煜坤, 王雅茹, 曾小勤, 努丽燕娜*,镁空气电池负极表面改性对其电化学性能的影响,有色金属学报,https://kns.cnki.net/kcms2/detail/43.1238.TG.20230615.1026.002.html

    (61)     黄岩,张树鑫,努丽燕娜*,王保峰,杨军,王久林,镁硫电池的原位生长NiS的泡沫镍正极集流体,高等学校化学学报,2021, 42(03): 794-802.

    (62)     朱悦丹,王犟,努丽燕娜*,武迪,郭瑞,镁硫电池硫硒化合物正极材料的研究,上海航天,2021, 38 (5): 1-7.

    (63)     陈绍鹏,庞佳瑞,王梦瑶,周莎,努丽燕娜*,郭瑞,镁硫电池中高载量硫正极的研究,空间电源(内刊)

    (64)     苏硕剑,努丽燕娜*,非路热吐尔逊,杨军,王久林,正极集流体对可充镁电池电化学性能的影响,物理化学学报,2015, 31 (1)111-120.

    (65)     卞沛文,努丽燕娜* 再娜甫古丽,杨军,王久林,苯硫酚盐基溶液的可充镁电池电解液,物理化学学报,2014, 30 (2), 311-317.

    (66)     非路热吐尔逊,祖丽皮亚沙地克,努丽燕娜*,杨军,王久林,吡唑基镁卤化物/四氢呋喃可充镁电池电解液,物理化学学报,2014, 30 (9): 1634-1640.

    (67)     努丽燕娜*,杜国栋,冯真真,杨军,EC添加剂对BMImBF4离子液体作为镁沉积电解液的改性研究,化学学报,2008, 66 (2) : 175-180.

    (68)     努丽燕娜*,杨军,高鹏飞,李云,王久林,隔膜对BMImBF4离子液体电解液中镁沉积-溶出性能的影响,化学学报,201068 (10): 948-954.

    (69)     努丽燕娜*,杨军,郑育培,王久林,介孔硅酸锰镁可充镁电池正极材料的制备及其电化学性能研究,无机材料学报,201126 (2): 129-133.

    (70)     赵青松,努丽燕娜*,郭永胜,杨军,王久林,可充镁电池电解液,化学进展,201123(8): 1598-1610.

    (71)     陈强,努丽燕娜*,杨军,凯丽比努尔·克日木,王久林,集流体对可充镁电池电解液电化学性能的影响,物理化学学报,2012, 28(11): 2625-2631.

    (72)     杜国栋,努丽燕娜*,冯真真,王久林,杨军,LiNi0.5Mn1.5O4-xFx高电压电极高温保存下的电化学行为物理化学学报,200824 (1): 165.

    (73)     娜斯曼·吐尔逊,努丽燕娜*,赵青松,杨 军,王久林,咪唑类离子液体中镁的可逆沉积溶出性能中国有色金属学报,2012229):2648-2655.

    (74)     卞沛文;努丽燕娜*;陈强;杨军;王久林,乙烯硫脲-格氏试剂/THF电解液镁沉积-溶出性能,电化学,2014, 20 (1)73.

    (75)     伊丽奴尔·吐胡达洪,努丽燕娜*,陈 强,杨 军,王久林,钒掺杂的可充镁电池正极材料Mg1.03Mn0.97SiO4,材料科学,20122139-144.

    (76)     李云,努丽燕娜*,杨军,伊丽奴尔吐胡达洪,王久林,可充镁电池正极材料Mg0.75Mn0.15Fe1.1SiO4的制备及电化学性能,电源技术,201034 (10): 1031-1034.

    (77)     郑育培,努丽燕娜*,杨军,陈强,王久林,可充镁电池正极材料研究进展,化工进展,201130(5): 1024.


  • 人才培养

    硕士研究生:

           (1)     程鸣翔,2020级,学号120110910063,毕业时间2023-05,优异硕士学位论文,获国家奖学金

    (2)     张鹏,2020级,学号120110910081,毕业时间2023-05

    (3)     任文,2019级,学号119110910084,毕业时间2022-03,上海市优秀毕业生,获国家奖学金

    (4)     武迪,2019级,学号119110910087,毕业时间2022-03,上海市优秀毕业生,获凯原励志奖学金、唐敖庆化学奖学金

    (5)     王卫秦,2018级,学号118110910064,毕业时间2021-03,获国家奖学金、孚鲁克奖学金

    (6)     张树鑫,2018级,学号18102064,毕业时间2021-05,上海电力大学联合培养,获国家奖学金

    (7)     黄岩,2018级,学号18102109,毕业时间2021-05,上海电力大学联合培养

    (8)     杨元婴,2017级,学号117110910066,毕业时间2020-03,获国家奖学金、CASC航天科技奖学金、唐立新奖学金

    (9)     袁瀚程,2016级,学号116110910088,毕业时间2019-03,上海市优秀毕业生,获国家奖学金

    (10) 王楠,2015级,学号115110910079,毕业时间2018-03,上海市优秀毕业生,获国家奖学金、唐敖庆化学奖学金

    (11) 曾琳琦,2015级,学号116110910088,毕业时间2018-03

    (12) 苗琦,2014级,学号1141109066,毕业时间2017-03

    (13) 苏硕剑,2013级,学号1131109075,毕业时间2016-03,校优秀毕业生,获国家奖学金

    (14) 非路热吐尔逊,2012级,学号1121109069,毕业时间2015-03

    (15) 卞沛文,2011 ,学号1111109058,毕业时间2014-03

    (16) 陈强,2010级,学号1101109064,毕业时间2013-03

    (17) 郑育培,2009级,学号1091109068,毕业时间2012-03

    (18) 赵青松,2009级,学号1091109100,毕业时间2012-03

    (19) 李云,2007级,学号1071109063,毕业时间2010-03

    (20) 杜国栋,2005级,学号1051109070,毕业时间2008-03

    (21) 郑颖,2005级,学号1051109074,毕业时间2008-03

    (22) 王璞,2004级,学号1041109067,毕业时间2007-03


       

    本科毕业设计:

    (1)     陈可心,学号519111910104,毕业时间2023-06

    (2)     孙煜坤,学号518111910020,毕业时间2022-06,答辩优秀

    (3)     庞佳瑞,学号517110910012,毕业时间2021-06

    (4)     陈绍鹏,学号517110910004,毕业时间2021-06

    (5)     王郁蕊,学号516111910063,毕业时间2020-06

    (6)     王犟,学号516111910109,毕业时间2020-06

    (7)     武迪,学号515111910193,毕业时间2019-06

    (8)     王卫秦,学号5140219164,毕业时间2018-06,答辩优秀

    (9)     杨元婴,学号5131109031,毕业时间2017-06

    (10) 刘哲,学号5131109073,毕业时间2017-06

    (11) 刘通,学号5121109022,毕业时间2016-06

    (12) 严佳妮,学号5121109063,毕业时间2016-06

    (13) 迪力努尔玉斯甫,学号5111109057,毕业时间2015-06

    (14) 亚森阿不力孜,学号5101109037,毕业时间2014-06

    (15) 苏硕剑,学号5091109018,毕业时间2013-06, 答辩优秀

    (16) 再娜甫古丽阿布都热依木,学号5091109039,毕业时间2013-06

    (17) 哈力旦艾尼,学号5081109111,毕业时间2012-06

    (18) 凯丽比努尔·克日木,学号5081109115,毕业时间2012-06

    (19) 祖丽皮亚·沙地克,学号5081109128,毕业时间2012-06, 答辩优秀

    (20) 娜斯曼·吐尔逊,学号507109134,毕业时间2011-06, 答辩优秀

    (21) 伊丽奴尔·吐胡达洪,学号5071109143,毕业时间2011-06

    (22) 邱敬斯,学号5051109069,毕业时间2010-06

    (23) 希热力·牙生,学号5061109159,毕业时间2010-06

    (24) 王威,学号5051109069,毕业时间2009-06

    (25) 王顺平,学号5031109072,毕业时间2007-06

    (26) 吴蓉,学号5011129007,毕业时间2007-06

    (27) 沈佳妮,毕业时间2006-06

    (28) 谢夫苏,毕业时间2006-06

    (29) 姜明善,毕业时间2005-06

       

    PRP学生:

    (1)     黄旭,学号519111910072,第41

    (2)     陈可心,学号519111910104,第41

    (3)     朱悦丹,学号516111910266,第34期,答辩优秀

    (4)     王乾坤,学号5111109068,第25

    (5)     梁达辉,学号5111109069,第25

    (6)     木巴拉克·热合买提江,学号5081109121,第18

    (7)     娜斯曼·吐尔逊,学号507109134,第17

    (8)     伊丽奴尔·吐胡达洪,学号5071109143,第16


     

    大学生创新实践计划项目学生:

    (1)     孙煜坤,学号518111910020;鲍旭,学号518111910011;黄成炜,学号18075058311,任昊,518111910046,第18期,答辩优秀

    (2)     赵星赫,学号516111910068;向雪琳,学号516111910065;李冬玉,学号516111910074;王郁蕊,学号516111910063,第16期,答辩优秀


  • 软件版权登记及专利

    申请专利:

    (1)     努丽燕娜,孙煜坤,王雅茹,张鹏,一种可充镁空气电池及其制备方法,中国发明专利,申请号:CN202210849491.1,公开日期:2022.09.16.

    (2)     努丽燕娜,张鹏,曾小勤,王雅茹,孙煜坤,一种镁金属空气电池正极催化材料及其制备方法,中国发明专利,申请号:CN202210495510.5,公开日期:2022.09.02.

    (3)     努丽燕娜,张树鑫,张铎,一种可充镁离子电池电解液和可充镁离子电池,中国发明专利,申请号:CN202210646679.6,公开日期:2022.09.20.

     

    授权专利:

    (1)     努丽燕娜,陈绍鹏,庞佳瑞,王梦瑶,周莎,郭瑞,一种水系粘结剂在镁硫电池中的应用方法,中国发明专利,专利号:ZL202010574177.8,授权日期:2021.10.22.

    (2)     努丽燕娜,苏硕剑,杜国栋,杨军,王久林,一种可充镁电池,中国发明专利,专利号:ZL201410784106.5,授权日期:2017.11.10.

    (3)     努丽燕娜,非路热吐尔逊,苏硕剑,杨军,王久林,一种二硫化物在可充镁电池中的应用方法,中国发明专利,专利号:ZL201410083128.9,授权日期:2017.05.24. 

    (4)     Yanna NuLiQingsong Zhao, Jun Yang, Yongsheng Guo, Magnesium secondary battery, use of electrolytic solution in magnesium secondary battery and electrolytic solution for magnesium secondary battery,美国发明专利,专利号:US9136528B2授权日期:2015.09.15.

    (5)     努丽燕娜, 卞沛文, 非路热··吐尔逊, 杨军, 王久林,一种用于可充镁电池的电解液,中国发明专利,专利号:ZL201310027306.1,授权日期:2015.07.15.

    (6)     努丽燕娜, 卞沛文, 陈强, 杨军, 王久林. 一种磷酸钛镁在可充镁电池正极材料中的应用方法,中国发明专利,专利号:ZL201210445467.8,授权日期:2015.06.17.

    (7)     努丽燕娜,陈强,哈力旦·艾尼,杨军,王久林,一种含氧有机物正极材料的可充镁电池及其制备方法中国发明专利,专利号ZL201210082250.5授权日期:2014.10.22.

    (8)     努丽燕娜,郑育培,杨军,毕秋芳,王久林,一种硅酸钴镁在可充镁电池正极材料中的应用,中国发明专利,专利号ZL201010274778.3,授权日期:2012.09.05.

    (9)     努丽燕娜,赵青松,杨军,郭永胜,可充镁电池、电解液在可充镁电池中的应用、以及用于可充镁电池的电解液,中国发明专利,专利号:ZL201110056952.1,授权日期:2012.08.29.

    (10) 李云,努丽燕娜,杨军,王久林,徐欣欣,一种可充镁电池正极材料及其制备方法,中国发明专利,专利号:CN200810207799.6授权日期:2012.3.21.

    (11) 努丽燕娜,杨军,冯真真,李云,王久林,一种可充镁电池正极材料硅酸锰镁的制备方法,中国发明专利,专利号:ZL200810040462.0授权日期:2010.1.20.

    (12) 努丽燕娜,杨军,谢夫苏,有机硫聚合物在二次镁电池正极材料中的应用,中国发明专利,专利号:ZL200610027413.4,授权日期:2008.08.13.

    (13) 努丽燕娜,杨军,李晓明,冯真真,有机硫化物在二次镁电池正极材料中的应用,中国发明专利,专利号:ZL200610027411.5授权日期:2008.08.13.

     


  • 荣誉奖励

    2020年度上海交通大学“优秀班主任”

    2019年度上海交通大学“优秀班主任”

    2017-2018年度上海交通大学“三八红旗手”

    2016-2017年度上海交通大学“烛光奖励计划”二等奖

    2006-2007年度上海交通大学“优秀教师”三等奖


  • 教学工作

    本科生:应用电化学、电化学测试技术及实验、化工热力学、化工专业英语及文献检索

    研究生:能源材料测试技术、专业英语、化学工程前沿专题、应用化学前沿专题

  • 教学成果

    专著:

    (1) 努丽燕娜,王保峰,《实验电化学》,化学工业出版社,2007年.

    (2) 参与编写《化学电源测试原理与技术》,主编:杨军,解晶莹,王久林,化学工业出版社,2006年.



  • 人才需求


    热诚欢迎对镁电池感兴趣的博士后、博士和硕士研究生加入!


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