基本介紹
- 中文名:李冰
- 國籍:中國
- 出生地:遼寧省法庫縣
- 出生日期:1967-11-24
- 職業:教師
- 畢業院校:東北大學
- 代表作品:《鋁合金腐蝕與表面處理》
- 學歷:博士
- 職稱:教授
- 性別:女
學歷
工作經歷
工作業績
主要學術任職
[1] | 中國金屬學會 熔鹽委員會,委員,副主任(2016-現在) |
[2] | 中國金屬學會冶金過程物理化學分會 熔鹽委員會,委員(1991-2016),副主任(2012-2016) |
[3] | 第五屆國際鈦圓桌會議,國際諮詢委員會委員,日本北海道大學,日本,2016.07 |
[4] | 美國TMS學會會員(礦物、金屬和材料學會)(2010-2015) |
[5] | 華東理工大學學報(自然科學版),編委(2008年-現在) |
[6] | 上海市化學化工學會會員(2010-現在) |
[7] | 電化學類雜誌<electrochemcial communication>等的通訊評閱人 |
[8] | 材料化學類雜誌<Green Chemistry,Journal of materials chemistry >的通訊評閱人 |
[9] | 能源類雜誌《Hydrogen energy》等的通訊評閱人 |
[10] | 冶金類的雜誌<Metallurgical and Materials Transactions B>的評閱人 |
其他活動和獎勵
[1] | 江蘇省科技副總(企業創新崗)特聘專家,2014.11 |
[2] | 中國有色金屬學報2013年度優秀學術論文二等獎,2014.6 |
[3] | 2013年度機械與動力工程學院,“本科畢業論文/設計優秀指導教師”稱號,機械與動力工程學院,2014.1 |
[4] | 華東理工大學機械與動力工程學院“森松”青年教師獎教金二等獎,2012.1 |
[5] | 評閱挪威科技大學碩士論文,2010 |
[6] | 氧化鎂-氯化鎂複雜體系鎂電解過程的研究”已獲得教育部鑑定證書(鑒字[教SW2008]第020號),李冰,於建國,路貴民,李平,宋興福,等,2008 . |
[7] | 2001-2003校先進工作者,上海人事局,2003 |
[8] | 優秀女教師獎勵,東北大學,2000 |
教育教學
[1] | 材料電化學,研究生課程,華東理工大學(2013-今) |
[2] | 新能源材料與成型(雙語),本科生課程,華東理工大學(2015-今) |
[3] | 材料物理性能,本科生課程,華東理工大學(2013-2014) |
[4] | 材料力學性能,本科生課程,華東理工大學(2002-2006) |
[5] | 現代表面技術,本科生課程,華東理工大學(2002-2005) |
[6] | 專業外語,本科生課程,華東理工大學(2002-2005 |
[7] | 物理化學,本科生課程,東北大學(2000) |
[8] | 化工原理及實驗,本科生課程,東北大學(1993-2001) |
[9] | 指導碩士研究生22個(1個挪威科技大學的碩士研究生) |
[10] | 指導博士生7人,共同指導3人 |
發表文章
[1] | Yukang Shi, Xiaolong Liu, Yuan Gao, Chao Huang, Bing Li*,lectrochemical behaviour of Dy(III) and Dy-Fe alloys preparation by co-reduction in molten fluoride salts, Journal of The Electrochemical Society, 164 (6) D1-D6 (2017). |
[2] | Xiaolong Liu, Chao Huang and Bing Li*,The Effects of NdF2 on Current Efficiency of Nd Extraction from NdF3-LiF-Nd2O3 Melts , Materials Transactions, Vol. 58, No. 3 (2017) pp. 395 - 399 N. |
[3] | Chao Huang,†Xiaolong Liu,†Yuan Gao, Shizhe Liu and Bing Li*,cathodic processes of neodymium(III) in LiF–NdF3–Nd2O3 melts,Faraday Discuss., 2016, 190, 339-349 |
[4] | Gang Chen, Yuqi Chen, Qingjun Guo, Heng Wang and Bing Li*,Template-free electrodeposition of AlF alloy nanowires from a room-temperature ionic liquid as an anode material for Li-ion batteries,Faraday Discuss., 2016, 190, 97-108 |
[5] | Qiang Wang, Qingjun Guo, Yuanhao Hu and Bing Li*,High-quality spinel LiCoTiO4 single crystals with co-exposed {111} and {110} facets: flux growth,Format on mechanism, magnetic behavior and their application in photocatalysis†,CrystEngComm, 2016, 18,6926-6933. |
[6] | QingjunGuo,QiangWang,GangChen,HongjieXu,JiayuWu,andBingLi,MoltenSalt SynthesisofTransitionMetalOxidesdopedLi4Ti5O12asAnodeMaterialofLi-IonBattery ECSTrans.201672(9):11-23;;Published21September2016 |
[7] | Yuan Gao, Yukang Shi, Xiaolong Liu, Chao Huang, Bing Li*,Cathodic Behavior of Samarium(III) and Sm-Al alloys Preparation in Fluorides Melts,Electrochimica Acta 190 (2016) 208–214. |
[12] | Qiang Wang, Qingjun Guo, Heng Wang, Bing Li*. Molten salt synthesis of crystalline photocatalytic potassium octatitanate whiskers from KCl melt. Materials Letters, 2015, 155:38-40. |
[13] | Qiang Wang, Qingjun Guo, Bing Li*. Low temperature synthesis and characterization of substitutional Na-modified K2Ti6O13 nanobelts with improved photocatalytic activity under UV irradiation. RSC advances, 2015, 5(81): 66086-66095. |
[14] | Heng Wang, Shizhe Liu, Bing Li *, Zuxin Zhao, Characterization and removal of oxygen ions in LiF-NaF-KF melt by electrochemical methods, Journal of Fluorine Chemistry 175 (2015) 28–31. |
[15] | Bing Li, Miao Shen, Yuqi Chen, Heng Wang, Wang,Electrochemical removal impurity of NaCl from LiCl-KCl melts, Rare Metal Technology 2015: 19-26 (book)(edited by Neale. R. Neelameggham, Shafiq. Alam, Harald. Oosterhof, Animesh. Jha, David Dreisinger, and Shijie Wang)TMS (The Minerals, Metals & Materials Society), 2015 |
[16] | 發明專利:李冰,王強,郭卿君,八鈦酸鉀晶須的製備方法,公開日:2015.9,公開號CN104894636A |
[17] | Jiadi Wei, Qingjun Guo ,Xingwei Li*, Bing Li*, Molten salts synthesis of tin dioxide/nitrogen-doped carbon composite as Pt catalyst support for methanol electro-oxidation, J Mater Sci (2015) 50:4952–4961 |
[18] | Yuqi Chen, Heng Wang , Bing Li*. Electrodeposition of SmCo alloy nanowires with a large length-diameter ratio from SmCl3-CoCl2-1-ethyl-3-methylimidazolium ionic liquid without template. RSC advances, 2015, 5 (49): 39620-39624. |
[19] | Qingjun Guo, Shiyan Li, Heng Wang, Yuan Gao and Bing Li*,Molten salt synthesis of nano-sized Li4Ti5O12 doped with Fe2O3 for use as anode material in the lithium ion battery, RSC Adv., 2014, 4, 60327–60333. |
[20] | Shizhe Liu, Lingyun Chen, Bing Li, Liangliang Wang, Bo Yan, Mugen Liu , Anode processes for Nd electrowinning from LiF-NdF3-Nd2O3 melt,Electrochimica Acta, Volume 147, 20 November 2014, Pages 82-86 |
[21] | Bingxiao Liu,Bing Li, Shiyou Guan, Effect of fluoroethylene carbonate additive on Low temperature performance of Li-ion batteries, Electrochemical and Solid-State Letters , Electrochemical and Solid-State Letters, 15 (6) A1-A3(2012)A© The Electrochemical Society. |
[22] | M. Shen, B. Li, J. Yu, Investigation on electrochemicalremoval of CaCl2 from LiCl-KCl melts, Electrochimica Acta ,62 (2012) 153- 157. |
[23] | Guangshuai Han1, Bing Li2, Zhiqun Ye1, Changhe Cao3, Shiyou Guan1,* The Cooperative Effect of Vinylene Carbonate and 1,3-Propane Sultone on the Elevated Temperature Performance of Lithium Ion Batteries,Int. J. Electrochem. Sci., 7 (2012) 12963 – 12973 |
[24] | Guangshuai Han1, Zhiqun Ye1, Changhe Cao3, Bingxiao Liu2, Bing Li2, Shiyou Guan1,* Effect of 1,8-Naphthosultone Additive on High Temperature Performance of Lithium Ion Batteries,Int. J. Electrochem. Sci., 7 (2012) 10142 – 10153 |
[25] | Le Wang, Bing Li, Jianguo Yu. Electrochemical investigation on the corrosion resistance of steel materials in LiCl-KCl melts rare metals, INT J MIN MET MATER.,Vol19,Oct.2012,p930-933 |
[26] | M. SHEN, B. LI, S.Z. LI, and J.G. YU. Electrochemical Removal of AlCl3 from LiCl-KCl Melts, Metallurgical and Materials Transactions A: Volume 43, Issue 5 (2012), Page 1662-1669 |
[27] | Bing Li , Chunhua Fan, Yan Chen, Jingwei Lou, Lingguang Yan.Pulse current electrodeposition of Al from an AlCl3-EMIC ionic liquid. Electrochimica Acta 56 (2011) 5478-5482. |