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78mppt威九国际


Jawayria Mujtaba


姓名:Jawayria Mujtaba (穆洁)

性别:Female

学位:PhD博士

职务:Associate Professor 副教授

出生年月:198708

学科专业:材料科学与工程


 

  简历

  Jawayria Mujtaba got her PhD of Materials Science and Engineering from Tsinghua University (THU) in 2017. She was engaged in research as a postdoc in Fudan University and Shenzhen University. Now, she is the Associate Professor of College of Chemistry and Materials Science in Anhui Normal University. Her research interests include controllable synthesis of transition metal oxides/ sulfides/ phosphides nanomaterials and their application in energy storage and conversion.

      Jawayria Mujtaba2017年获得清华大学材料科学与工程博士学位。她曾在复旦大学和深圳大学担任博士后。现为安徽师范大学78mppt威九国际副教授。她的研究兴趣包括过渡金属氧化物/硫化物/磷化物纳米材料的可控合成及其在能量储存和转换中的应用。

讲授课程

研究生课程:Guide for Scientific Writing 论文写作指导

研究方向

Research interests include (1) Clean Energy, (2) Nanomaterial Synthesis, (3) Lithium-ion batteries, (4) Sodium-Sulfur batteries, (5) Fuel cells, (6) Catalytic Nanomotors and other fields. Investigation on the relationship of the structures and properties of novel advanced materials to be used in sustainable energy technologies.

研究兴趣包括(1)清洁能源,(2)纳米材料合成,(3)锂离子电池,(4)钠硫电池,(5)燃料电池,(6)催化纳米马达和其他领域。 研究用于可持续能源技术的新型先进材料的结构和性能之间的关系。

学生获奖

Postdoctoral International Exchange Program  (2019-2021)

Chinese Government Scholarship PhD  (2014-2017)

Quaid-i-Azam University Distinction Award Masters  (2007-2009)

出版著作及代表性论文:Selected Publications

  • J. Mujtaba, J. Liu, K. K. Dey, T. Li, R. Chakraborty, K. L. Xu, D. Makarov, R. Barmin, D. A. Gorin, V. Tolstoy, G. S. Huang, A. A. Solovev*, Y. F. Mei*, “Micro-Bio-Chemo-Mechanical-Systems: Micromotors, Microfluidics and Nanozymes for Biomedical Applications”, Advanced Materials, 33, 2007465, 2021. Link

  • J. Mujtaba, L. He, H. Zhu, Z. Xiao, G. S. Huang*, A. A. Solovev*, Y. F. Mei, “Co9S8 Nanoparticles for Hydrogen Evolution”, ACS Applied Nano Materials, 4(2), 1776-1785, 2021. Link

Figure 1

  • S. Naeem‡, J. Mujtaba‡, F. Naeem, K. Xu, G. Huang, A. A. Solovev*, J. Zhang*, Y. Mei. “Catalytic/magnetic assemblies of rolled-up tubular nanomembrane-based micromotors”, RSC Advances, 10 (60), 36526-36530, 2020. Link

Graphical abstract: Catalytic/magnetic assemblies of rolled-up tubular nanomembrane-based micromotors

  • S. Naeem, F. Naeem, J. Zhang, J. Mujtaba, J, K. Xu, G. Huang, A. A. Solovev, Y. Mei. “Parameters Optimization of Catalytic Tubular Nanomembrane-Based Oxygen Microbubble Generator”, Micromachines, 11, 643, 2020. Link

  • S. Naeem, F. Naeem, J. Zhang, J. Mujtaba, …., Y. Mei, A. A. Solovev*, K. K. Dey*, “Oxygen Generation Using Catalytic Nano/Micromotors”, Micromachines, 12, 1251, 2021. Link

  • J. Mujtaba, Sun H, Zhao Y, Xiang G, Xu S, Zhu J. “High-performance lithium storage based on the synergy of atomic-thickness nanosheets of TiO2(B) and ultrafine Co3O4 nanoparticles”. Journal of Power Sources, 363: 110- 116, 2017. Link

  • J. Mujtaba, H. Sun, G. Huang, Y. Zhao, H. Arandiyan, G. Sun, S. Xu, J. Zhu, “Co9S8 Nanoparticles Encapsulated in Nitrogen Doped Mesoporous Carbon Networks with Improved Lithium Storage Properties”, RSC Advances, 6 (38), 31775-31781, 2016. Link

Graphical abstract: Co9S8 nanoparticles encapsulated in nitrogen-doped mesoporous carbon networks with improved lithium storage properties

  • J. Mujtaba, G. Huang , K. Mølhave , Y. Liu , Y. Zhao , X. Wang , S. Xu , J. Zhu, “Nanoparticle Decorated Ultrathin Porous Nanosheets as Hierarchical Co3O4 Nanostructures for Lithium Ion Battery Anode Materials”, Scientific Reports,6 (20592), 2016. Link

  • J. Mujtaba, H. Sun, F. Fang, M. Ahmad, J. Zhu, “Fine control over the morphology and photocatalytic activity of 3D ZnO hierarchical nanostructures: capping vs. etching”, RSC Advances, 5 (69), 56232-56238, 2015. Link

Graphical abstract: Fine control over the morphology and photocatalytic activity of 3D ZnO hierarchical nanostructures: capping vs. etching

  • J. Mujtaba, U. Manzoor, S. Zia, M. Hafeez, A. S. Bhatti, “Piezoelectric, Piezo-Phototronic, and UV Sensing Properties of Single Ultra Long Nanobelt”, Science of Advanced Materials, 7 (4), 789- 793, 2015. Link

  • X. Wang, Y. Liu, H. Arandiyan, H. Yang, L. Bai, J. Mujtaba, Q. Wang, S. Liu, H. Sun, “Uniform Fe3O4 microflowers hierarchical structures assembled with porous nanoplates as superior anode materials for lithium-ion batteries”, Applied Surface Science, 389, 240–246, 2016. Link

  • X. Wang, J. Mujtaba, F. Fang, M. Ahmad, H. Arandiyan, H. Yang, G. Sun, H. Sun, “Constructing aligned γ-Fe2O3 nanorods with internal void space anchored on reduced graphene oxide nanosheets for excellent lithium storage”, RSC Advances, 5 (111), 91574-91580, 2015. Link

  • H. Sun, J. Mujtaba, J. Zhu, K. Mølhave, “Chemically Modified Hierarchical Metal Oxide Nanostructures for Excellent Lithium Storage”, DTU Sustain Conference 2015.



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