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巨军平简介

266F

巨军平,女,讲师。2010年毕业于山东师范大学化学专业,同年进入中科院兰州化学物理研究所硕博连读,2015年获得理学博士学位。2016年至今在青岛大学任教,主要从事高分子膜材料的制备及性能研究。

主持承担了国家自然科学基金青年项目1项、国家自然科学基金联合基金子课题1项。以通讯或第一作者在Advanced Functional MaterialsCarbohydrate PolymersJournal of Materials Science & Technology等杂志上发表学术论文。作为团队成员获得山东省技术发明奖二等奖和中国分析测试协会科学技术奖二等奖。

发表论文

[1] Y.Z. Zhang#, J.P#. Ju, D.D. Wang, H. Yuan, L.Y. Hao, Y.Q. Tan, Aggregation-induced emission for the visualization of the structure and properties of polymers, Journal of Materials Chemistry C 9 (2021) 11484-11496.

[2] Q. Wang#, J. Ju#, Y. Tan, L. Hao, Y. Ma, Y. Wu, H. Zhang, Y. Xia, K. Sui, Controlled synthesis of sodium alginate electrospun nanofiber membranes for multi-occasion adsorption and separation of methylene blue, CarboPolymers 205 (2019) 125-134.

[3] J. Ju, L. Hao, S. Yang, D. Wang, Y. Zhang, H. Yuan, X. Yin, Y. Tan, Designing Robust, Breathable, and Antibacterial Multifunctional Porous Membranes by a Nanofluids Templated Strategy, Advanced Functional Materials 30 (2020) 2006544.

[4] S. Wang, J. Ju#, S. Wu, M. Lin, K. Sui, Y. Xia, Y. Tan, Electrospinning of biocompatible alginate-based nanofiber membranes via tailoring chain flexibility, CarboPolymers 230 (2020) 115665-115665.

[5] J. Yang, W. Sun, J. Ju*, Y. Tan, H. Yuan, Facile Fabrication of Superwetting PVDF Membrane for Highly Efficient Oil/Water Separation, Polymers 15 (2023).

[6] Y.K. Bai, J.W. Zhang, D.D. Wen, P.W. Gong, J.M. Liu, J.P. Ju*, X. Chen, A reconfigurable, self-healing and near infrared light responsive thermoset shape memory polymer, Composites Science and Technology 187 (2020).

[7] D. Wang#, J. Ju#, S. Wang, Y. Tan, Research progress on the luminescence of biomacromolecules, Journal of Materials Science & Technology 76 (2021) 60-75.

[8] J. Ju, J. Yang, W. Zhang, Y. Wei, H. Yuan, Y. Tan, Seaweed polysaccharide fibers: Solution properties, processing and applications, Journal of Materials Science & Technology 140 (2023) 1-18.

[9] Z. Zhou, W. Sun, C. Lv, X. Gu, J. Ju*, Y. Li, Ultra-stretchable, antifreezing, and self-healing ZnO nanofluid-based hydrogels for triboelectric nanogenerators and self-powered biosensors, Eur. Polym. J. 200 (2023).


联系方式:jujunping@qdu.edu.cn



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