麦立强的科研项目

州科信息网 2021-10-30 06:34 编辑:净天 296阅读

主持承担国家自然科学基金、国家重大基础研究计划课题、国家国际科技合作专项国家、教育部新世纪优秀人才计划等20余项。
1. 科技部“国家重大科学研究计划课题(麦立强)”,面向能源高效利用的功能介孔材料设计和调控(2013CB934103,2013.01-2017.12)
2. 科技部“国家重大科学研究计划课题(麦立强)”,透射电镜中的扫描探针技术与应用研究(2012CB933003,2012.01-2016.12)
3. 科技部“国家国际科技合作计划(麦立强)”,高性能纳米线钒系锂离子动力电池联合研发(2013DFA50840,2013.04-2016.04)
4. 国家自然科学基金面上项目(麦立强),锂空气电池钙钛矿型镧锶钴氧分级介孔纳米线电催化性能与机理(51272197,2013.01-2016.12)
5. 国家自然科学基金青年项目(韩春华),双连续复合结构半中空石墨烯卷包覆钒氧化物纳米线器件组装、储锂性能与机理(51302203,2014.01-2016.12)
6. 湖北省杰出青年基金(麦立强),锂空气电池纳米电极电催化性能及原位表征(2014CFA035,2014.01-2016.12)
7. 国家自然科学基金杰出青年基金(麦立强),纳米线储能材料与器件(51425204,2015.01-2019.12)
8. 国家自然科学基金面上项目,钒氧化物/聚噻吩超长同轴纳米电缆的阵列构筑及脱嵌锂性能(51072153,2011.01-2013.12)
9. 新世纪人才支持计划,一维层状氧化物复杂结构纳米材料的结构性能调控与器件探索(NCET-10-0661,2011.1-2013.12)
代表性论文及著作(*为通讯联系人)
已发表SCI收录论文130余篇,其中包括Nature Nanotechnol.,Nature Commun.,Adv. Mater.,Nano Lett.,PNAS、J. Am. Chem. Soc.等。多篇论文被选为期刊封面、Frontispiece,或被Science、Nature Nanotech.、NPG Asia Mater.、Nanowerk等期刊和专业网站引用或亮点报道。论文被他引1800余次,10篇论文入选ISI Web of Science 的ESI 近十年高引用论文。受Wiley-VCH和Nova出版社邀请撰写英文专著及专著章节;受Mater. Today,IEEE T. Nanotechnol.以及Chem. Rev.邀请撰写综述论文。在美国MRS Meeting等国际学术会议做邀请报告20余次,被MRS 2013 Fall Meeting邀请组织了能源材料表征分会并担任分会主席。代表性论文如下:
1. Yunlong Zhao, Jiangang Feng, Xue Liu, Fengchao Wang, Lifen Wang, Changwei Shi, Lei Huang, Xi Feng, Xiyuan Chen, Lin Xu, Mengyu Yan, Qingjie Zhang, Xuedong Bai, Hengan Wu andLiqiang Mai*, Self-adaptive strain-relaxation optimization for high-energy lithium storage material through crumpling of graphene,Nature Commun., 2014, 5: 4565.
2.Liqiang Mai*, Xiaocong Tian, Liang Chang, and Lin Xu, Nanowire Electrodes for Electrochemical Energy Storage Devices. Chem.Rev. 2014, 114,11828.
3.Liqiang Mai*, Aamir Minhas Khan, Xiaocong Tian, KaleleMulonda Hercule, Yunlong Zhao, Xu Lin, Xu Xu. Synergistic interaction between redox active electrolyte and binder-free functionalized carbon for ultrahigh performance of supercapacitor.Nat. Commun., 2013, 4, 2923.
4.Liqiang Mai*, Fan Yang, Yunlong Zhao, Xu Xu, Li Xu and Yanzhu Luo.Hierarchical MnMoO4/CoMoO4heterostructured nanowires with enhanced supercapacitor performance.Nat. Commun.2011, 2, 381.
5. Shuo Li, Yifan Dong, Lin Xu, Xu Xu, Liang He,Liqiang Mai*, Effect of Carbon Matrix Dimensions on the Electrochemical Properties of Na3V2(PO4)3Nanograins for High-performance Symmetric Sodium-ion Batteries.Adv. Mater., 2014, 26, 3545–3553.
6.Liqiang Mai*, Qiulong Wei , Qinyou An, Xiaocong Tian , Yunlong Zhao, Xu Xu, Lin Xu, Liang Chang, Qingjie Zhang, Nanoscroll Buffered Hybrid Nanostructural VO2(B) Cathodes for High-Rate and Long-Life Lithium Storage,Adv. Mater., 2013, 25, 2969-2973.
7.Liqiang Mai, Bin Hu, Wen Chen*, Yanyuan Qi, Changshi Lao, Rusen Yang, ying Dai and Zhonglin Wang*, Lithiated MoO3nanobelts with greatly improved performance for lithium battery.Adv. Mater. 2007, 19(21), 3712-3716
8. Mengyu Yan, Fengchao Wang, Chunhua Han*, Xinyu Ma, Xu Xu, Qinyou An, Lin Xu, Chaojiang Niu, Yunlong Zhao, Xiaocong Tian, Ping Hu, Hengan Wu*, andLiqiang Mai*.Nanowire templated semi-hollow bicontinuous graphene scrolls: designed construction, mechanism and enhanced energy storage performances.J. Am. Chem. Soc., 2013, 135, 18176-18182
9. Yunlong Zhao, Lin Xu,Liqiang Mai*, Chunhua Han, Qinyou An, Xu Xu, Xue Liu, Qingjie Zhang. Hierarchical mesoporous perovskite La0.5Sr0.5CoO2.9nanowires with ultrahigh capacity for Li-air batteries.PNAS,2012,109, 19569-19574.
10.Liqiang Mai*, Lin Xu, Chunhua Han, Xu Xu, Yanzhu Luo, Shiyong Zhao and Yunlong Zhao, Electrospun ultralong hierarchical vanadium oxide nanowires with high performance for lithium ion batteries.Nano Lett., 2010, 10, 4750-4755.
11.Liqiang Mai*, Han Li, Yunlong Zhao, Lin Xu, Xu Xu, Yanzhu Luo, Zhengfei Zhang, Wang Ke, Chaojiang Niu, Qingjie Zhang, Fast Ionic Diffusion-Enabled Nanoflake Electrode by Spontaneous Electrochemical Pre-Intercalation for High-Performance Supercapacitor.Sci. Rep., 2013, 3, 1718-1724.
12. Quan Qing, Zhe Jiang, Lin Xu, Ruixuan Gao,Liqiang Maiand Charles M. Lieber*, Free-standing kinked nanowire transistor probes for targeted intracellular recording in three dimensions.Nature Nanotechnol.2014, 9, 142–147