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臧晓玲 来源:5357cc拉斯维加斯    阅读次数:  2020-09-30

 

臧晓玲,工学博士,讲师。

邮箱:zangxiaoling@btbu.edu.cn

研究方向:共轭高分子合成及应用

教育背景:

2015.09 ~ 2020.06      中科院理化技术研究所            获工博士学位

2011.09 ~ 2015.06      中国矿业大学(北京)           获工学士学位

工作经历:

2020.09至今 北京工商大学,5357cc拉斯维加斯,讲师

科研经历:

1. 国家自然科学基金优秀青年基金,共轭高分子单晶(参与)

2. 国家自然科学基金面上项目,导电高分子的金属/类金属行为调控(参与)

代表性论文:

1. X. Zang, X. Wang, H. Liu, X. Ma, W. Wang, J. Ji, J. Chen, R. Li, M. Xue, Enhanced ion conduction via epitaxially polymerized two-dimensional conducting polymer for high-performance cathode in zinc-ion batteries. ACS Applied Materials & Interfaces 12, 9347-9354 (2020).

2. X. Zang, Y. He, Z. Fang, X. Wang, J. Ji, Y. Wang, M. Xue, Self-healing and shape-memory superconducting devices. Macromolecular Materials and Engineering 305, 1900581 (2020).

3. X. Zang, X. Wang, J. Xia, Y. Chai, X. Ma, R. Li, J. Ji, H. Xu, M. Xue, Ab initio design of graphene block enables ultrasensitivity, multimeter-like range switchable pressure sensor. Advanced Materials Technologies 4, 1800531 (2019).

4. X. Zang, Y. Jiang, X. Wang, X. Wang, J. Ji, M. Xue, Highly sensitive pressure sensors based on conducting polymer-coated paper. Sensors and Actuators B: Chemical 273, 1195-1201 (2018).

5. X. Zang, X. Wang, Y. Jiang, X. Wang, Z. Yang, J. Cong, J. Chen, J. Ji, C. Lu, M. Xue, Conducting polymer based visual-aided smart thermosensors on arbitrary substrates. Advanced Functional Materials 27, 1702706 (2017).

6. X. Zang, X. Wang, Z. Yang, X. Wang, R. Li, J. Chen, J. Ji, M. Xue, Unprecedented sensitivity towards pressure enabled by graphene foam. Nanoscale 9, 19346-19352 (2017).

7. X. Wang,# X. Zang,# Y. Jiang, Q. Liu, S. Chang, J. Ji, H. Zhao, Y. Liu, M. Xue, A graphene-based smart thermal conductive system regulated by a reversible pressure-induced mechanism. Nanoscale 11, 11730-11735 (2019).

8. Y. Jiang,# X. Zang,# X. Wang, X. Ma, J. Ji, C. Lu, M. Xue, Noncontact and high-accuracy smart thermosensors based on the thermal-Field resistivity response of conducting polymers. Advanced Materials Technologies 3, 1800086 (2018).

 

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