近年來在國際著名刊物發(fā)表SCI收錄論文65篇,其中第一作者和通訊作者論文SCI影響因子10以上6篇, Nature Commun(選為特色論文)1篇,Adv Mater 1篇,Nano Lett 5篇,Mater Today(選為特色論文)1篇,被Mater Today等邀請撰寫長篇專題綜述論文,被Nature亞洲材料網(wǎng)站、德國Nanowerk網(wǎng)站、美國權威替代能源網(wǎng)站等作專題報道。在有影響的國際學術會議和美國伯克利國家實驗室等做特邀報告11次。
1. L.Q. Mai*, F. Yang, Y.L. Zhao, X. Xu, L. Xu and Y.Z. Luo. Hierarchical MnMoO4/CoMoO4 heterostructured nanowires with enhanced supercapacitor performance. Nat. Commun. 2. 2011,381 (被選為特色論文,當月下載量第三)
2. L.Q. Mai*, X. Xu, C.H. Han, Y. Z. Luo, L. Xu, Yinmin A. Wu, and Y.L. Zhao, Rational synthesis of silver vanadium oxides/polyaniline triaxial nanowires with enhanced electrochemical property, Nano Lett. 2011, 11(11), 4992–4996
3. L.Q. Mai*, Y.J. Dong*, L. Xu, and C.H. Han, Single nanowire electrochemical devices. Nano Lett. 2010,10(10), 4273–4278 (被Nature亞洲材料網(wǎng)站做專題報道)
4. X.C. Jiang, B.Z. Tian, J. Xiang, F. Qian, G.F. Zheng, H.T. Wang, L.Q. Mai, and C. M. Lieber*. Rational growth of branched nanowire heterostructures with synthetically encoded properties and function. PNAS 2011,108(30), 12212–12216
5. L.Q. Mai*, F. Yang, Y.L. Zhao, X. Xu, L. Xu, B. Hu, Y.Z. Luo, and H.Y. Liu. Molybdenum oxide nanowires from synthesis to devices and properties. Materials Today, 2011,14(7/8): 346-353 (選為特色論文)
6. L.Q. Mai*, L. Xu, B. Hu and Y.H. Gu, Improved cycling stability of nanostructured electrode materials enabled by pre-lithiation. J. Mater. Res 2010,25, 1413-1420
7. L.Q. Mai*, L. Xu, C.H. Han, X. Xu, Y.Z. Luo, S.Y. Zhao and Y.L. Zhao, Electrospun ultralong hierarchical vanadium oxide nanowires with high performance for lithium ion batteries. Nano Lett. 2010,10(11), 4750–4755 (被權威替代能源網(wǎng)站Green Car Congress亮點報道)
8. L.Q. Mai*, L. Xu, Q. Gao, C.H. Han, B. Hu and Y.Q. Pi, Single β-AgVO3 nanowire H2S sensor. Nano Lett. 2010,10(7), 2604–2608
9. L.Q. Mai*, Y. Gu, C, H. Han, B. Hu, W. Chen*, P.C. Zhang, L. Xu, W.L. Guo and Y. Dai, Orientated langmuir-blodgett assembly of VO2 nanowires. Nano. Lett. 2009,9(2), 826-830
10. L.Q. Mai, B. Hu, W. Chen*, Y.Y. Qi, C.S. Lao, R.S. Yang and Z.L. Wang*, Lithiated MoO3 nanobelts with greatly improved performance for lithium battery. Adv. Mater. 2007,19(21), 3712–3716
11. L.Q. Mai*, X. Xu, L. Xu, C. Han1, Y Luo. Vanadium oxide nanowires for Li-ion batteries. Journal of Materials Research 2011,26,2175-2185
12. L.Q. Mai, C.S. Lao, B. Hu, J. Zhou, Y.Y. Qi, W. Chen, E.D. Gu and Z.L. Wang*, Synthesis and electrical transport of single crystal NH4V3O8 nanobelts. J. Phys. Chem. B. 2006,110(37), 18138-18141
13. L.Q. Mai*, B. Hu, T. Hu, W. Chen* and E.D. Gu, Electrical property of Mo-doped VO2 nanowire array film by melting-quenching sol-gel method. J. Phys. Chem. B. 2006,110(39), 19083-19086
14. L.Q. Mai, W. Guo, B. Hu, W. Jin, and W. Chen*, Fabrication and properties of VOx-based nanorods. J Phys Chem C. 2008,112, 423-429
15. L.Q. Mai, W. Chen*, Q. Xu, J.F. Peng and Q.Y. Zhu, Mo doped vanadium oxide nanotubes: microstructure and electrochemistry. Chem. Phys. Lett. 2003,382(3-4), 307-312
16. B. Hu, L.Q. Mai, W. Chen*, F. Yang, From MoO3 nanobelts to MoO2 nanorods: structure transformation and electrical transport. ACS Nano, 2009, 3(2), 478-482
麥立強副教授:河南省周口人,材料學博士,F(xiàn)任我校材料學院副教授,在科學研究方面他提出合成釩氧化物納米管、納米棒、納米念珠等一維納米材料的流變相-自組裝新工藝,克服了目前制備該類材料使用金屬有機化合物、產(chǎn)量小、成本高、污染大的缺點;將Mo引入釩氧化物納米管,改善了電化學性能和光學性能;首次將激光輻射技術應用于釩氧化物納米管結構的調(diào)控,實現(xiàn)納米管中殘余有機物的去除和性能的改善;通過SiO2表面包覆納米LiNi0.5Co0.5VO4,改善其抗電解液溶蝕能力,解決了這類材料容量衰減快、性能不穩(wěn)定的難題;率先通過回收工業(yè)廢液中鎳鈷合成電池材料,產(chǎn)生良好的經(jīng)濟效益和環(huán)保效益。同時,他還是國際固態(tài)離子學會、美國材料研究學會、中國硅酸鹽學會會員及《Chemical Communications》(英國)、《Journal of Electroceramics》(美國)和《Journal of Solid State Chemistry》(美國)等雜志的特邀審稿人。截止目前,他發(fā)表的學術論文共有60篇(次)被SCI、EI收錄, 并在國際著名的《Physical Review B》、《Chemistry of Materials》等刊物上被他人引用。其中,僅2003年,就有16篇論文被SCI、EI(均為光盤版)收錄,約占我校被收錄論文總數(shù)的10%。部分學術論文獲得中國固態(tài)離子學會優(yōu)秀論文獎(排名第一)、中國硅酸鹽學會年會優(yōu)秀論文獎(排名第一)等。讀書期間獲得校五四青年獎章、優(yōu)秀指導教師、研究生標兵、省優(yōu)秀研究生(2次)、省優(yōu)秀畢業(yè)生等榮譽稱號,并以優(yōu)異的成績獲得長飛獎學金。
期間,他還協(xié)助導師指導了五名本科生和三名研究生。他指導的本科生郭萬里同學,在本科階段以第一作者在《Journal of Material Science Letter》和《Key Engineering Materials》發(fā)表了兩篇較高水平的學術論文,被評為湖北省大學生優(yōu)秀科研成果一等獎,在第八屆“挑戰(zhàn)杯”全國大學生課外學術作品競賽中榮獲二等獎,并獲得首屆“中國青少年科技創(chuàng)新獎”。這個我校2004年十大風云學子郭萬里同學在談到麥博士時,他坦言:“麥老師在工作上是一個非常科學嚴謹?shù)娜,為我們樹立了很好的榜樣。在實驗中,他總會給我們細心指導,耐心講解,非常注重培養(yǎng)我們的獨立動手、獨立思考的能力。即使周末我找他,他也從不會說自己忙。他不僅是我的老師,也是我的好大哥,在我心里,我很尊敬他”。
2008-2011: Advanced Research Scholar, Harvard University (Collaboration Supervisor: Prof Charles M. Lieber)
Postgraduate: Postdoctoral Research, Georgia Institute of Technology, 2006-2007 (Collaboration Supervisor: Prof Zhonglin Wang)
Graduate: Ph.D., Wuhan University of Technology, 2004 (Supervisor: Prof Wen Chen)
Graduate: M.E., Guilin Institute of Technology, 2001 (Supervisor: Prof Zhengguang Zou)
Undergraduate: B.E., Taiyuan University of Technology, 1998
Professional Experience
2011-present: Chair Professor of Materials Science, Wuhan University of Technology
2007-2011: Professor of Materials Science, Wuhan University of Technology
2004-2007: Associate Professor of Materials Science, Wuhan University of Technology
Academic and Professional Awards
New Century Excellent Talents in University, Ministry of Education, China (2010); Excellent Supervisor of National College Students "Challenge Cup" Grand Award(2011), the Nomination Award of the Excellent PhD Dissertation of China (2006); the New-Century High-Class Talent Engineering Plan Award of Hubei Province (2005); the Excellent PhD Dissertation Award of Hubei Province (2005); the Excellent Paper Award of Chinese Ceramic Society (2005); Nippon Sheet Glass Foundation Award for Materials Science and Engineering of Japan (2005).
Professional Society Memberships
Associate Editor of Journal of Nanoscience Letters; Council member of Youth Committee of Chinese Materials Research Society; Member of International Society of Solid State Ionics, Materials Research Society, American Chemical Society, and Chinese Silicate Society; Appraisal experts of Research Fund and Awards for Science and Technology of Ministry of Education, Academic Degree and Graduate Education of Ministry of Education, the Fok Ying-Tong Education Foundation and Awards
Research Interests
Nano energy materials and devices; Nanoelectronic and biological materials & devices.
Research Projects
He has conducted more than 10 research projects as project principal such as National Natural Science Foundation of China, Program for New Century Excellent Talents in University, Ministry of Education, Doctoral Fund of Ministry of Education of China, etc. and taken part in projects such as National Basic Research Program of China, Program for Changjiang Scholars and Innovative Research Team in University, National Natural Science Foundation of United States, etc. as main researcher.
(1) "Structure-property adjustment and device exploration of one dimensional layered oxide complex nanomaterials", Program for New Century Excellent Talents in University, Ministry of Education, China (PI)
(2) “Technique and application of scanning probe microscopy in transmission electron microscope”, National Basic Research Program of China
(3) "Ordered construction and lithium ion insertion/extraction properties of vanadium oxide /polythiophene superlong coaxial nanocables", National Natural Science Foundation of China (PI)
(4) "Study on electrical transport and photoconductivity of vanadium oxide nanorods and ordered networks ", National Natural Science Foundation of China (PI)
(5) "Magnetic property of silver vanadium oxide nanobelt array", the Research Fund for the Doctoral Program of Higher Education (PI)
(6) “Preparation and properties of one dimensional Zn3P2/VOx core/shell nanostructures” Department of the Ministry of Education (PI)
(7) “Fabrication and photoelectric properties of zinc phosphite/ molybdenum oxides/ poly phenylenevinylene multi-layer nanocable arrays” Wuhan innovation fund (PI);
(8) “Electrogenesis property and mechanism of microbial fuel cell based on ordered vanadium oxide /polythiophene superlong coaxial nanocables” the Fundamental Research Funds for the Central Universities (PI)
Publications
Prof Liqiang Mai has published 65 papers tagged by SCI in leading journals such as Nat. Commun., Nano Lett, Adv Mater, PNAS, ACS Nano, etc, which have been cited 660 times by the world leading scientists such as MS Whittingham, GD Stucky, R Tenne, CNR Rao, etc in Prog Mater Sci, Nano Lett, Adv Mater,etc. He has been invited to co-author 1 book chapter in English and to publish 4 review papers by Mater. Today, J Phys Chem C, J Mater Res, etc. He has 14 patents authorized among 18 filed applications. He has given 12 invited presentations, and acted as seminar chairman 5 times in international conferences.
Publications are as follows:
1. L.Q. Mai*, F. Yang, Y.L. Zhao, X. Xu, L. Xu and Y.Z. Luo. Hierarchical MnMoO4/CoMoO4 heterostructured nanowires with enhanced supercapacitor performance. Nat. Commun. 2: 2011,381 (Featured image of Nature Communications Homepage)
2. L.Q. Mai*,X. Xu, C.H. Han,Y. Z. Luo, L. Xu, Yinmin A. Wu, and Y.L. Zhao, Rational synthesis of silver vanadium oxides/polyaniline triaxial nanowires with enhanced electrochemical property, Nano Lett. 2011, 11(11), 4992–4996
3. L.Q. Mai*, Y.J. Dong*, L. Xu, and C.H. Han, Single nanowire electrochemical devices. Nano Lett. 2010,10(10), 4273–4278 (Highlighted by Nature Asia Materials, Nanowerk, etc)
4. X.C. Jiang, B.Z. Tian, J. Xiang, F. Qian, G.F. Zheng, H.T. Wang, L.Q. Mai, and C. M. Lieber*. Rational growth of branched nanowire heterostructures with synthetically encoded properties and function. PNAS 2011,108(30), 12212–12216
5. L.Q. Mai*, F. Yang, Y.L. Zhao, X. Xu, L. Xu, B. Hu, Y.Z. Luo, and H.Y. Liu. Molybdenum oxide nanowires from synthesis to devices and properties. Materials Today, 14(7/8): 346-353(2011) (Feature Review Paper)
6. L.Q. Mai*, L. Xu, B. Hu and Y.H. Gu, Improved cycling stability of nanostructured electrode materials enabled by pre-lithiation. J. Mater. Res 25, 1413-1420 (2010).
7. L.Q. Mai*, L. Xu, C.H. Han, X. Xu, Y.Z. Luo, S.Y. Zhao and Y.L. Zhao, Electrospun ultralong hierarchical vanadium oxide nanowires with high performance for lithium ion batteries. Nano Lett. 2010,10(11), 4750–4755 (Highlighted by Green Car Congress)
8. L.Q. Mai*, L. Xu, Q. Gao, C.H. Han, B. Hu and Y.Q. Pi, Single β-AgVO3 nanowire H2S sensor. Nano Lett. 2010,10(7), 2604–2608
9. L.Q. Mai*, Y. Gu, C.H. Han, B. Hu, W. Chen*, P.C. Zhang, L. Xu, W.L. Guo and Y. Dai, Orientated langmuir-blodgett assembly of VO2 nanowires. Nano. Lett. 2009,9(2), 826-830
10. L.Q. Mai, B. Hu, W. Chen*, Y.Y. Qi, C.S. Lao, R.S. Yang and Z.L. Wang*, Lithiated MoO3 nanobelts with greatly improved performance for lithium battery. Adv. Mater. 2007,19(21), 3712–3716
11. L.Q. Mai*, X. Xu, L. Xu, C. Han1, Y Luo. Vanadium oxide nanowires for Li-ion batteries. Journal of Materials Research 2011,26,2175-2185
12. L.Q. Mai, C.S. Lao, B. Hu, J. Zhou, Y.Y. Qi, W. Chen, E.D. Gu and Z.L. Wang*, Synthesis and electrical transport of single crystal NH4V3O8 nanobelts. J. Phys. Chem. B. 2006, 110(37), 18138-18141
13. L.Q. Mai*, B. Hu, T. Hu, W. Chen* and E.D. Gu, Electrical property of Mo-doped VO2 nanowire array film by melting-quenching sol-gel method. J. Phys. Chem. B. 2006,110(39), 19083-19086
14. L.Q. Mai, W. Guo, B. Hu, W. Jin, and W. Chen*, Fabrication and properties of VOx-based nanorods. J Phys Chem C. 2008,112, 423-429
15. L.Q. Mai, W. Chen*, Q. Xu, J.F. Peng and Q.Y. Zhu, Mo doped vanadium oxide nanotubes: microstructure and electrochemistry. Chem. Phys. Lett. 2003,382(3-4), 307-312
16. B. Hu, L.Q. Mai, W. Chen*, F. Yang, From MoO3 nanobelts to MoO2 nanorods: structure transformation and electrical transport. ACS Nano, 2009,3(2), 478-482
Patents
He has 14 patents authorized among 18 filed applications.
1. LQ Mai, CH Han, Q Gao, L Xu. A beta AgVO3 hydrogen sulfide nanowires sensitive materials and used to make the method of gas sensors, Chinese patent ZL201010184423.5
2. LQ Mai, W Chen, Y Gao. The preparation method of FeSe nano-flowers, Chinese patent ZL200910062158.0
3. LQ Mai, W Chen, WL Guo, YH Guo, CH Han, B Hu, PC Zhang, L Xu, Y Dai. A method of mono-dispersion modification and orientation assembly of VO2 nanowires, Chinese patent ZL200810237425.9
4. LQ Mai, W Chen, Y Gao, CH Han, B Hu, HR Xu. The preparation method of Zn3P2 nanorods, Chinese patent ZL200810047438.X.
5. W Chen, LQ Mai, B Hu, YY Qi, J Zhou, Y Dai, ZL Wang. Lithiated MoO3 nanobelt cathode materials and their modification method, Chinese patent ZL200710052368.2
6. W Chen, LQ Mai, Q Xu, YY Qi, W Jin, T Hu, J Zhou. Tiered MO3 nanorods and and their preparation method, Chinese patent ZL 200510019381.9
7. W Chen, LQ Mai, YY Qi, L Xu, XF Dai, Y Dai, J Zhou, XQ Zhu. LiFePO4 nanorods and their preparation method, Chinese patent ZL 200510019360.7
8. W Chen, LQ Mai, Q Xu, YY Qi, JF Peng, J Zhou, XH Huang. Surface-modification nano-LiMVO4 cathode and its modification method, Chinese patent ZL 200410061373.6
9. W Chen, LQ Mai , Q Xu, YY Qi, JF Peng, QX Zhu. A method to achieve transfer of VO2 nanorods from B phase to M phase, Chinese Patent ZL 200410060859.8
10. W Chen, LQ Mai, Q Xu, JF Peng, XQ Zhu, J Zhou, XH Huang. Vanadium dioxide nanorods and their preparation method, Chinese Patent ZL 03125408.X
11. W Chen, LQ Mai, Q Xu , JF Peng, XQ Zhu, J Zhou, XH Huang. Metal cations-doped vanadium oxide nanotubes and their preparation method , Chinese Patent ZL 03.25385.7
12. W Chen, Q Xu, J Zhou, D Zhang, J Zhang, XQ Zhu, LQ Mai. Electronic transmitting semicon- ductor refrigeration material ceramic and method of preparation , Chinese Patent ZL02147766.3
13. W Chen, LQ Mai, Q Xu, XQ Zhu, J Zhou, XH Huang, WL Guo, JU Peng. An organic acid-complex-combustion method to synthesize cathode materials for Li ion battery, Chinese Patent ZL 02147763.9
14. W Chen, Q Xu, J Zhou, D Zhang, J Zhang, XQ Zhu, LQ Mai. The hole transmitting semiconductor refrigeration material ceramic and method of preparation, Chinese Patent ZL02147765.5
15. LQ Mai, YL Zhao, CH Han, F Yang. Preparation methods of hierarchical MnMoO4/CoMoO4 heterostructured nanowires (CN20110048928.3)
16. LQ Mai, X Xu, CH Han. The synthesis method and applications of silver vanadium oxides/polymer triaxial nanowires(CN201110296002.6)
17. LQ Mai, YJ Dong, L Xu, CH Han. The methods of assemble and in situ characterization of single nanowire electrochemical devices (CN 201010275021.6)
18. LQ Mai, L Xu, CH Han. Preparation methods of ultralong hierarchical vanadium oxide nanowires (CN 201010194708.7)