一:研究经历
1.研究高性能、耐高温聚合物纳米纤维(聚酰亚胺、聚吡咙(一种杂环共轭聚合物)等) 制备与性能表征,首次报道了采用单体自组装结合高温固相聚合得到高强度的静电纺聚吡咙纳米纤维的方法,克服了该难溶解、难熔融聚合物纳米纤维制备的问题,该纤维展示了良好的力学性能以及比其他聚合物都要优异的耐热性能;
2.研究在电纺聚吡咙纳米纤维制备的基础上,采用冷冻干燥法制备基于聚吡咙纳米纤维的低密度三维弹性体,该材料显示了很好的热绝缘性和耐火性,在 2018 年 1 月在南非举行的世界静电纺丝国际会议上展示了相关工作;
3.研究基于电纺的柔性碳纳米纤维材料的制备与性能表征;
4.研究层状结构聚合物/无机纳米复合材料在防火、气体隔离以及导电方面的应用;
5.研究电纺纳米纤维/银纳米线复合柔性导电材料的制备与表征;
6.研究高性能聚酰亚胺、共聚聚酰亚胺及其复合材料,以及聚酰亚胺在锂离子电池隔膜方面的应用;
7.研究高介电钛酸钡/聚酰亚胺纳米复合材料的制备与表征。
二:论文发表:
1. Zhu, J., Breu, J., Hou, H., Greiner, A., & Agarwal, S.. Gradient structured nonflammable flexible polymer
membranes. ACS applied materials & interfaces, 2019, 11 (12), 11876-11883. (JCR 1, IF 8.456)
2. Zhu, J., Ding, Y., Agarwal, S., Greiner, A., Zhang, H., Hou, H.. Nanofibre preparation of non-processable
polymers by solid-state polymerization of molecularly self-assembled monomers. Nanoscale, 2017, 9(46),
18169-18174. (JCR 1, IF 7.233)
3. Zhu, J., Habel, C., Schilling, T., Greiner, A., Breu J., Agarwal, S.. Filter-Through Method of Making Highly
Efficient Polymer-Clay Nanocomposite Membranes. Macromolecular Materials and Engineering, 2019, DIO:
10.1002/mame.201800779. (JCR 2, IF 3.038)
4. Zhu, J., Jiang, S., Hou, H., Agarwal, S., & Greiner, A.. Low Density, Thermally Stable, and Intrinsic Flame
Retardant Poly (bis (benzimidazo) Benzophenanthroline‐dione) Sponge. Macromolecular Materials and
Engineering, 2018, 303(4), 1700615. (JCR 2, IF 3.038)
5. Zhu, J., Ding, Y., Liao, X., Xu, W., Zhang, H., & Hou, H.. Highly flexible electrospun carbon/graphite
nanofibers from a non-processable heterocyclic rigid-rod polymer of polybisbenzimidazobenzophenanthroline-dione
(BBB). Journal of materials science, 2018, 53(12), 9002-9012. (JCR 3, IF 2.993)
6. Ye, W., Zhu, J., Liao, X., Jiang, S., Li, Y., Fang, H., Hou, H.. Hierarchical three-dimensional
micro/nano-architecture of polyaniline nanowires wrapped-on polyimide nanofibers for high performance
lithium-ion battery separators. Journal of power sources, 2015, 299, 417-424. (JCR 1, IF 6.945)
7. Cheong, J. Y., Benker, L., Zhu, J., Youn, D. Y., Hou, H., Agarwal, S., Kim, I.D. & Greiner, A.. Generalized and
feasible strategy to prepare ultra-porous, low density, compressible carbon nanoparticle sponges. Carbon. 2019, 154,
363-369. (JCR 1, IF 7.466)
8. Hecht, M., Soberats, B., Zhu, J., Stepanenko, V., Agarwal, S., Greiner, A., Würthner, F.. Anisotropic
microfibres of a liquid-crystalline diketopyrrolopyrrole by self-assembly-assisted electrospinning. Nanoscale
Horizons, 2019, 4(1), 169-174. (JCR 1, IF 9.391)
9. Peng, L., Zhu, J., & Agarwal, S.. Self‐Rolled Porous Hollow Tubes Made up of Biodegradable Polymers.
Macromolecular rapid communications, 2017, 38(10), 1700034. (JCR 2, IF 4.441)
10. Liao X, Ding Y, Chen L., Ye W., Zhu J., Fang H., Hou H. Polyacrylonitrile-derived polyconjugated ladder
structures for high performance all-organic dielectric materials. Chemical Communications, 2015, 51, 10127. (JCR
1, IF 6.29)
11. Xu, W., Ding, Y., Jiang, S., Zhu, J., Ye, W., Shen, Y., Hou, H.. Mechanical flexible PI/MWCNTs
nanocomposites with high dielectric permittivity by electrospinning. European Polymer Journal. 2014, 59, 129-135.
(JCR 2, IF 3.741)