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刘文娟
阅读次数:发布时间:2021-03-26

基本信息

名:

刘文娟

别:

出生年月:

1984.10

贯:

河北邯郸

称:

副教授

E-mail

liuwenjuan@njtech.edu.cn

工作地点:

润德楼B505&创新大楼A605

学缘情况和工作经历

20128月至今新利18彩票

2014-2016美国加州大学圣地亚哥分校(University of California, San Diego)纳米工程系博士后

2007-2012浙江大学化学专业理学博士

2010-2011比利时根特大学(Ghent University)分析化学系交流博士(欧盟Lisum项目)

2003-2007哈尔滨工业大学化学工程与工艺专业工学学士

教学与科研情况

主要研究方向为:微纳马达设计及环境和生物医学应用、柔性传感器电极材料、电化学腐蚀机理和防护技术。先后承担国家自然科学基金青年基金、江苏省自然科学基金青年基金、浙江大学开放题课题等纵向课题项目和相关横向课题。在Advanced MaterialsAdvanced Functional MaterialsACS NanoPhysical Review AppliedSmall等期刊发表SCI论文40余篇,目前4篇工作当选为Advanced Functional MaterialsSmallNanoscale Horizons封面或封底文章,1篇入选2020 Nanoscale Hot Article Collection与浙江大学、加州大学圣地亚哥分校、南京航空航天大学建立了良好合作关系。担任Frontier in Neurorobotics杂志审稿编辑;并担任Journal of Alloys and CompoundsChemistryselect等期刊审稿人。

高水平代表性论文

(1)W.J. Liu*, X. Chen, X.Y. Ding, Q. Long, X.L. Lu*, Q. Wang*, Z.W. Gu, Visible-light-driven cuprous oxide nanomotors with surface-heterojunction-induced propulsion,Nanoscale Horizons, 2021, 6: 238-244. (内封面文章)

(2) H.Q. Shi, C.C. Tang, Z.C. Wang, Z.J. Zhang,W.J. Liu*, Y. Ding, X.D. Shen, Nanoporous bismuth electrocatalyst with high performance for glucose oxidation application,InternationalJournal of Hydrogen Energy, 2021, 46: 4055-4064.

(3)W.J. Liu*, X. Chen, X.L. Lu*, J. Wang, Y.N. Zhang, Z.W. Gu, From passive inorganic oxides to active matters of micro/nanomotors,Advanced Functional Materials, 2020, 30: 2003195.

(4)W.J. Liu*, H.B. Ge, X.Y. Ding, X.L. Lu*, Y.N. Zhang, Z.W. Gu, Cubic nano-silver-decorated manganese dioxide micromotors: enhanced propulsion and antibacterial performance,Nanoscale, 2020, 12: 19655-19664. (热点文章)

(5) H.Q. Shi, X. Chen, K. Liu, X.Y. Ding,W.J. Liu*, M.L. Xu*, Heterogeneous fenton ferroferric oxide-reduced graphene oxide-based composite microjets for efficient organic dye degradation,Journal of Colloid and Interface Science, 2020, 572: 39-47.

(6) X.L. Lu*, H. Shen, Y. Wei, H.B. Ge, J. Wang, H.M. Peng,W.J. Liu*, Ultrafast growth and locomotion of dandelion-like microswarms with tubular micromotors,Small, 2020, 16: 2003678.(封底文章)

(7) H.Q. Shi, W.B. Zhao, X.W. Wei, Y. Ding, X.D. Shen,W.J. Liu*, Effect of Ti addition on mechanical properties and corrosion resistance of Ni-free Zr-based bulk metallic glasses for potential biomedical applications,Journal of Alloys and Compounds, 2020, 815: 152636.

(8)W.J. Liu*, H.B. Ge, X. Chen, X.L. Lu*, Z.W. Gu, J.X. Li*, J. Wang, Fish-scale-like intercalated metal oxide-based micromotors as efficient water remediation agents,ACS Applied Materials & Interfaces, 2019, 11: 16164-16173.

(9) X.L. Lu*, K.D. Zhao,W.J. Liu*, D.X. Yang, H. Shen, H.M. Peng, X.S. Guo, J.X. Li*, J. Wang*, A human microrobot interface based on acoustic manipulation,ACS Nano, 2019, 13: 11443-11452.

(10) X.L. Lu*, K.D. Zhao, H.M. Peng, H.F. Li,W.J. Liu*, Local enhanced microstreaming for controllable high-Speed acoustic rotary microsystems,Physical Review Applied, 2019, 11: 044064.

(11)W.J. Liu*, H.B. Ge, Z.W. Gu, X.L. Lu*, J.X. Li*, J. Wang*, Electrochemical deposition tailors the catalytic performance of MnO2-based micromotors,Small, 2018, 14:1802771.(封底文章)

(12)W.J. Liu*, Y. Wang, H.B. Ge, L. Li, Y. Ding, L.G. Meng, X.G. Zhang, Microstructure evolution and corrosion behavior of Fe-Al based intermetallic aluminides coatings under acidic condition,Transactions of Nonferrous Metals Society of China, 2018, 28: 2028-2043.

(13) J.L. Li#, P. Angsantikul#,W.J. Liu#, B. Esteban-Fernández de Ávila#, X.C. Chang, E. Sandraz, Y.Y. Liang, S.Y. Zhu, Y. Zhang, C.R. Chen, W.W. Gao, L.F. Zhang*, J. Wang*, Biomimetic platelet-camouflaged nanorobots for binding and isolation of biological threats,Advanced Materials, 2018, 30: 1704800.(共一)

(14) J.L. Li#, P. Angsantikul#,W.J. Liu#, B. Esteban-Fernández de Ávila#, S. Thamphiwatana, M.L. Xu, E. Sandraz, X.L. Wang, J. Delezuk, W.W. Gao, L.F. Zhang*, J. Wang*, Micromotors spontaneously neutralize gastric acid for pH-responsive payload release,Angewandte Chemie International Edition, 2017, 56: 2156-2161.(共一)

授权发明专利

刘文娟,戈宏彬,陈笑,高比表面中空管状微米马达、制备方法及应用, 2019,中国,ZL201811551951.2.

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