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    武漢理工大學(xué)材料科學(xué)與工程學(xué)院研究生導(dǎo)師:麥立強(qiáng)

    分類(lèi):導(dǎo)師信息 來(lái)源:武漢理工大學(xué)材料科學(xué)與工程學(xué)院 2019-06-04 相關(guān)院校:武漢理工大學(xué)

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    武漢理工大學(xué)材料科學(xué)與工程學(xué)院麥立強(qiáng)研究生導(dǎo)師:

    姓 名
    麥立強(qiáng)
    性別
    男
    民族
    漢
    出生年月
    1975.12
    職  稱(chēng)
    教授
    職務(wù)
    國(guó)際事務(wù)院長(zhǎng)、
    長(zhǎng)江學(xué)者
    聯(lián)系電話(huà)
    13554628578
    單位名稱(chēng)
    武漢理工大學(xué)材料科學(xué)與工程國(guó)際化示范學(xué)院、材料復(fù)合新技術(shù)國(guó)家重點(diǎn)實(shí)驗(yàn)室
    Email
    mlq518@whut.edu.cn;mlq518@163.com
    實(shí)驗(yàn)室網(wǎng)址
    http://mai.group.whut.edu.cn/
    研究方向
     
    納米能源材料與器件
    固態(tài)電池、電催化
    納電子生物界面與器件
     
    教育背景
     
    2017.02-2017.08,美國(guó)加州大學(xué)伯克利分校高級(jí)研究學(xué)者
    合作導(dǎo)師:美國(guó)科學(xué)院院士楊培東教授
    2008.06-2009.12,美國(guó)哈佛大學(xué)高級(jí)研究學(xué)者
    合作導(dǎo)師:美國(guó)科學(xué)院院士 Charles M. Lieber 教授
    2006.02-2007.12,美國(guó)佐治亞理工學(xué)院訪(fǎng)問(wèn)學(xué)者
    合作導(dǎo)師:中科院外籍院士王中林教授
    2001.09-2004.06,武漢理工大學(xué),獲工學(xué)博士學(xué)位,導(dǎo)師:陳文 教授
    1998.09-2001.06,桂林理工大學(xué),工學(xué)碩士學(xué)位,導(dǎo)師:鄒正光 教授
    1994.09-1998.06,太原理工大學(xué),工學(xué)學(xué)士學(xué)位
     
    工作經(jīng)歷
     
    2016.09至今,武漢理工大學(xué),材料科學(xué)與工程國(guó)際化示范學(xué)院,國(guó)際事務(wù)院長(zhǎng)
    2011.09至今,武漢理工大學(xué),材料學(xué)科首席教授
    2009.06至今,武漢理工大學(xué),武漢理工大學(xué)納米聯(lián)合重點(diǎn)實(shí)驗(yàn)室,主任
    2014.09-2016.08,武漢理工大學(xué),材料科學(xué)與工程試點(diǎn)學(xué)院,執(zhí)行院長(zhǎng)
    2004.06-2011.08,武漢理工大學(xué)副教授 、教授、博士生導(dǎo)師
     
    項(xiàng)目情況
     
    1)      國(guó)家自然科學(xué)基金重點(diǎn)項(xiàng)目,分級(jí)介孔納米線(xiàn)鉀離子電池正極材料的表界面調(diào)控及原位作用機(jī)制(E021002,2019.01-2023.12)負(fù)責(zé)人
    2)      國(guó)家自然科學(xué)基金創(chuàng)新研究群體,功能復(fù)合材料新結(jié)構(gòu)創(chuàng)制與制備科學(xué)基礎(chǔ)(51521001,2016.01-2021.12)學(xué)術(shù)骨干
    3)      科技部“國(guó)家重大科學(xué)研究計(jì)劃課題”,介孔體系的能量存儲(chǔ)機(jī)理及器件組裝(2013CB934103,2013.01-2017.12)負(fù)責(zé)人
    4)      科技部“國(guó)家重點(diǎn)研發(fā)計(jì)劃納米專(zhuān)項(xiàng)”,高效納米儲(chǔ)能材料與器件的基礎(chǔ)研究(2016YFA0202603,2016.07-2021.06),學(xué)術(shù)骨干
    5)      科技部“國(guó)家國(guó)際科技合作計(jì)劃”,高性能納米線(xiàn)釩系鋰離子動(dòng)力電池聯(lián)合研發(fā)(2013DFA50840,2013.04-2016.04)負(fù)責(zé)人
    6)      科技部“國(guó)家重大科學(xué)研究計(jì)劃課題”,透射電鏡中的掃描探針技術(shù)與應(yīng)用研究(2012CB933003,2012.01-2016.12)學(xué)術(shù)骨干
    7)      國(guó)家自然科學(xué)基金杰出青年基金,納米線(xiàn)儲(chǔ)能材料與器件(51425204,2015.01-2019.12)負(fù)責(zé)人
    8)      國(guó)家自然科學(xué)基金面上項(xiàng)目,鋰空氣電池鈣鈦礦型鑭鍶鈷氧分級(jí)介孔納米線(xiàn)電催化性能與機(jī)理(51272197,2013.01-2016.12)負(fù)責(zé)人
     
    代表性學(xué)術(shù)
    成果
     
    1)      Mai, L. Q. *; Yan, M. Y.; Zhao, Y. L., Track Batteries Degrading in Real Time.Nature 2017, 546, 469.
    2)      Mai, L. Q. *; Yang, F.; Zhao, Y. L.; Xu, X.; Xu, L.; Luo, Y. Z., Hierarchical MnMoO4/CoMoO4 Heterostructured Nanowires with Enhanced Supercapacitor Performance. Nature Communications 2011, 2, 381.
    3)      Mai, L. Q. *; Tian, X. C.; Xu, X.; Chang, L.; Xu, L., Nanowire Electrodes for Electrochemical Energy Storage Devices. Chemical Reviews 2014, 114, 11828.
    4)      Mai, L. Q. *, Xu, L., Han, C. H., Xu, X., Luo, Y. Z., Zhao, S. Y., Zhao, Y. L., Electrospun Ultralong Hierarchical Vanadium Oxide Nanowires with High Performance for Lithium Ion Batteries, Nano Letters 2010, 10, 4750-4755.
    5)      Mai, L. Q. *; Hu, B.; Chen, W.; Qi, Y. Y.; Lao, C. S.; Yang, R. S.; Dai, Y.; Wang, Z. L., Lithiated MoO3 Nanobelts with Greatly Improved Performance for Lithium Batteries. Advanced Materials 2007, 19, 3712.
    6)      Mai, L. Q. *; Minhas-Khan, A.; Tian, X. C.; Hercule, K. M.; Zhao, Y. L.; Lin, X.; Xu, X., Synergistic Interaction between Redox-Active Electrolyte and Binder-Free Functionalized Carbon for Ultrahigh Supercapacitor Performance.Nature Communications 2013, 4, 2923.
    7)      Mai, L. Q. *; Sheng, J. Z.; Xu, L.; Tan, S. S.; Meng, J. S., One-Dimensional Hetero-Nanostructures for Rechargeable Batteries. Accounts of Chemical Research 2018, 51, 950.
    8)      Mai, L. Q. *; Wei, Q. L.; An, Q. Y.; Tian, X. C.; Zhao, Y. L.; Xu, X.; Xu, L.; Chang, L.; Zhang, Q. J., Nanoscroll Buffered Hybrid Nanostructural VO2 (B) Cathodes for High-Rate and Long-Life Lithium Storage. Advanced Materials2013, 25, 2969.
    9)      Zhao, Y. L.; Xu, L.; Mai, L. Q. *; Han, C. H.; An, Q. Y.; Xu, X.; Liu, X.; Zhang, Q. J., Hierarchical Mesoporous Perovskite La0.5Sr0.5CoO2.91Nanowires with Ultrahigh Capacity for Li-Air Batteries. Proceedings of the National Academy of Sciences of the United States of America 2012, 109, 19569.
    10)   Owusu, K. A.; Qu, L.; Li, J.; Wang, Z.; Zhao, K.; Yang, C.; Hercule, K. M.; Lin, C.; Shi, C.; Wei, Q.; Zhou, L.; Mai, L. Q. *, Low-Crystalline Iron Oxide Hydroxide Nanoparticle Anode for High-Performance Supercapacitors. Nature Communications 2017, 8, 14264.
    11)   Niu, C. J.; Meng, J. S.; Wang, X. P.; Han, C. H.; Yan, M. Y.; Zhao, K. N.; Xu, X. M.; Ren, W. H.; Zhao, Y. L.; Xu, L.; Zhang, Q. J.; Zhao, D. Y.; Mai, L. Q. *, General Synthesis of Complex Nanotubes by Gradient Electrospinning and Controlled Pyrolysis. Nature Communications 2015, 6, 7402.
    12)   Wei, Q. L.; Xiong, F. Y.; Tan, S. S.; Huang, L.; Lan, E. H.; Dunn, B.; Mai, L. Q. *, Porous One-Dimensional Nanomaterials: Design, Fabrication and Applications in Electrochemical Energy Storage. Advanced Materials 2017, 29, 1602300.
    13)   Meng, J. S.; Niu, C. J.; Xu, L. H.; Li, J. T.; Liu, X.; Wang, X. P.; Wu, Y. Z.; Xu, X. M.; Chen, W. Y.; Li, Q.; Zhu, Z. Z.; Zhao, D. Y.; Mai, L. Q. *, General Oriented Formation of Carbon Nanotubes from Metal-Organic Frameworks.Journal of the American Chemical Society 2017, 139, 8212.
    14)   Wang, P. Y.; Yan, M. Y.; Meng, J. S.; Jiang, G. P.; Qu, L. B.; Pan, X. L.; Liu, J. Z.; Mai, L. Q. *, Oxygen Evolution Reaction Dynamics Monitored by an Individual Nanosheet-Based Electronic Circuit. Nature Communications 2017,8, 645.
    15)   Tan, S. S.; Jiang, Y. L.; Wei, Q. L.; Huang, Q. M.; Dai, Y. H.; Xiong, F. Y.; Li, Q. D.; An, Q. Y.; Xu, X.; Zhu, Z. Z.; Bai, X. D.; Mai, L. Q. *, Multidimensional Synergistic Nanoarchitecture Exhibiting Highly Stable and Ultrafast Sodium-Ion Storage. Advanced Materials 2018, 30, 1707122.

    Prof. Liqiang Mai

    Address: Wuhan University of Technology

    122 Luoshi Road, Wuhan 430070, Hubei, China

    Email:mlq518@whut.edu.cn; mlq518@163.com Tel:

     

    EDUCATION

     

    2017.02-2017.08Advanced Research Scholar, University of California, Berkeley, USA (Collaboration Supervisor: Prof. Peidong Yang)

    2008 - 2011Advanced Research Scholar, Harvard University, USA (Collaboration Supervisor:Prof. Charles M. Lieber)

    2006 - 2007Postdoctoral Researcher, Georgia Institute of Technology, USA (Collaboration Supervisor: Prof. Zhonglin Wang)

    2001 - 2004Ph.D., Materials Science, Wuhan University of Technology, China (Supervisor: Prof. Wen Chen)

    1998 - 2001M.Sc., Inorganic Nonmetallic Materials, Guilin Institute of Technology, China(Supervisor: Prof. Zhengguang Zou)

    1994 - 1998Bachelor, Inorganic Nonmetallic Materials, Taiyuan University of Technology, China

    WORK EXPERIENCE

    2017 - presentChangjiang Scholar Chair Professor, Ministry of Education of China

    2015 - present

    Dean for International Affair, International School of Materials Science and Engineering, Wuhan University of Technology, China

    2011 - presentChair Professor of Materials Science, Wuhan University of Technology, China

    2009 - presentDirector of WUT Nano Key Laboratory, China

    2007 - 2011Professor of Materials Science, Wuhan University of Technology, China

    2004 - 2007Associate Professor of Materials Science, Wuhan University of Technology, China

    RESEARCH PROJECT

    2016.07-2021.06The National Key Research and Development Program of China, 2016YFA0202603

    2016.01-2021.12The National Natural Science Foundation of China, 51521001

    2015.01-2019.12The National Natural Science Fund for Distinguished Young Scholars, 51425204

    2015.12-2020.12The Programme of Introducing Talents of Discipline to Universities, B17034

    2013.01-2017.12The National Basic Research Program of China, 2013CB934103

    2012.01-2016.12The National Basic Research Program of China, 2012CB933003

    2013.04-2016.04The International Science & Technology Cooperation Program of China, 2013DFA50840

    2013.01-2016.12The National Natural Science Foundation of China, 51272197

    2014.01-2016.12The Hubei Provincial Natural Science Fund for Distinguished Young Scholars, 2014CFA035

    SELECTED PUBLICATION

    1) Mai, L. Q. *; Yan, M. Y.; Zhao, Y. L., Track Batteries Degrading in Real Time. Nature 2017, 546, 469.

    2) Mai, L. Q. *; Yang, F.; Zhao, Y. L.; Xu, X.; Xu, L.; Luo, Y. Z., Hierarchical MnMoO4/CoMoO4 Heterostructured Nanowires with Enhanced Supercapacitor Performance. Nature Communications 2011, 2, 381.

    3) Mai, L. Q. *; Tian, X. C.; Xu, X.; Chang, L.; Xu, L., Nanowire Electrodes for Electrochemical Energy Storage Devices. Chemical Reviews 2014, 114, 11828.

    4) Mai, L. Q. *, Xu, L., Han, C. H., Xu, X., Luo, Y. Z., Zhao, S. Y., Zhao, Y. L., Electrospun Ultralong Hierarchical Vanadium Oxide Nanowires with High Performance for Lithium Ion Batteries, Nano Letters 2010, 10, 4750-4755.

    5) Mai, L. Q. *; Hu, B.; Chen, W.; Qi, Y. Y.; Lao, C. S.; Yang, R. S.; Dai, Y.; Wang, Z. L., Lithiated MoO3Nanobelts with Greatly Improved Performance for Lithium Batteries. Advanced Materials 2007, 19, 3712.

    6) Mai, L. Q. *; Minhas-Khan, A.; Tian, X. C.; Hercule, K. M.; Zhao, Y. L.; Lin, X.; Xu, X., Synergistic Interaction between Redox-Active Electrolyte and Binder-Free Functionalized Carbon for Ultrahigh Supercapacitor Performance. Nature Communications 2013, 4, 2923.

    7) Mai, L. Q. *; Sheng, J. Z.; Xu, L.; Tan, S. S.; Meng, J. S., One-Dimensional Hetero-Nanostructures for Rechargeable Batteries. Accounts of Chemical Research 2018, 51, 950.

    8) Mai, L. Q. *; Wei, Q. L.; An, Q. Y.; Tian, X. C.; Zhao, Y. L.; Xu, X.; Xu, L.; Chang, L.; Zhang, Q. J., Nanoscroll Buffered Hybrid Nanostructural VO2 (B) Cathodes for High-Rate and Long-Life Lithium Storage. Advanced Materials 2013, 25, 2969.

    9) Zhao, Y. L.; Xu, L.; Mai, L. Q. *; Han, C. H.; An, Q. Y.; Xu, X.; Liu, X.; Zhang, Q. J., Hierarchical Mesoporous Perovskite La0.5Sr0.5CoO2.91 Nanowires with Ultrahigh Capacity for Li-Air Batteries. Proceedings of the National Academy of Sciences of the United States of America 2012, 109, 19569.

    10) Owusu, K. A.; Qu, L.; Li, J.; Wang, Z.; Zhao, K.; Yang, C.; Hercule, K. M.; Lin, C.; Shi, C.; Wei, Q.; Zhou, L.;Mai, L. Q. *, Low-Crystalline Iron Oxide Hydroxide Nanoparticle Anode for High-Performance Supercapacitors. Nature Communications 2017, 8, 14264.

    11) Niu, C. J.; Meng, J. S.; Wang, X. P.; Han, C. H.; Yan, M. Y.; Zhao, K. N.; Xu, X. M.; Ren, W. H.; Zhao, Y. L.; Xu, L.; Zhang, Q. J.; Zhao, D. Y.; Mai, L. Q. *, General Synthesis of Complex Nanotubes by Gradient Electrospinning and Controlled Pyrolysis. Nature Communications 2015, 6, 7402.

    12) Wei, Q. L.; Xiong, F. Y.; Tan, S. S.; Huang, L.; Lan, E. H.; Dunn, B.; Mai, L. Q. *, Porous One-Dimensional Nanomaterials: Design, Fabrication and Applications in Electrochemical Energy Storage. Advanced Materials 2017, 29, 1602300.

    13) Meng, J. S.; Niu, C. J.; Xu, L. H.; Li, J. T.; Liu, X.; Wang, X. P.; Wu, Y. Z.; Xu, X. M.; Chen, W. Y.; Li, Q.; Zhu, Z. Z.; Zhao, D. Y.; Mai, L. Q. *, General Oriented Formation of Carbon Nanotubes from Metal-Organic Frameworks.Journal of the American Chemical Society 2017, 139, 8212.

    14) Wang, P. Y.; Yan, M. Y.; Meng, J. S.; Jiang, G. P.; Qu, L. B.; Pan, X. L.; Liu, J. Z.; Mai, L. Q. *, Oxygen Evolution Reaction Dynamics Monitored by an Individual Nanosheet-Based Electronic Circuit. Nature Communications 2017, 8, 645.

    15) Tan, S. S.; Jiang, Y. L.; Wei, Q. L.; Huang, Q. M.; Dai, Y. H.; Xiong, F. Y.; Li, Q. D.; An, Q. Y.; Xu, X.; Zhu, Z. Z.; Bai, X. D.; Mai, L. Q. *, Multidimensional Synergistic Nanoarchitecture Exhibiting Highly Stable and Ultrafast Sodium-Ion Storage. Advanced Materials 2018, 30, 1707122.

    INTERNATIONAL CONFERENCE

    2018 Session Chair, Chinese Materials Research Society Conference 2018, Xiamen, China

    2018 Session Chair, The 22nd International Conference on Photochemical Conversion and Storage of Solar Energy, Hefei, China

    2018 Keynote, International conference on Electrochemical Energy Science and Technology, Niagara Falls, Canada

    2018 Keynote, 3rd International Symposium on Renewable Energy Technologies, Queensland Gold Coast, Australia

    2018 Keynote, 256th ACS National Meeting, Boston, USA

    2018 Keynote, The 19th National Solid State Ionics Conference, Shanghai, China

    2017 Session Chair, 7th Annual International Congress on Chemistry 2017, Qingdao, China

    2017 Keynote, International Symposium on Functional Materials for Energy Storage and Conversion, Shanghai, China

    2017 Keynote, International Conference on Energy Materials and Nanotechnology, Zhengzhou, China

    2016 Chairman, Nature Conference on Materials for Energy 2016, Wuhan, China

    2016 Chairman, The 2nd China-France Symposium on Advanced Materials, Metz, France

    2016 Keynote, The 3rd International Academy of Electrochemical Energy Science, Kunming, China

    2016 Plenary, The 2nd China-France Symposium on Advanced Materials, Metz, France

    2015 Chairman, The 10th Sino-US Symposium on Nanoscale Science and Technology (2015), Wuhan, China

    2014 Chairman, The First China-France Symposium on Advanced Materials (2014), Wuhan, China

    2014 Plenary, The 1s China-France Symposium on Advanced Materials, Wuhan, China

    2013 Session Chair, MRS Fall Meeting, Boston, USA

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