研究成果
已经授权的发明专利 (排名第一):
1.一种耐氯复合纳滤膜的制备方法, ZL 2021104893091
2.一种抗污染复合膜的制备方法, ZL 202110590243.5
3. 一种强稳定性抗污复合纳滤膜的制备方法,ZL202010125724.4
4. 一种超疏水陶瓷膜材料的制备方法, ZL201610406756.5
5. 一种荷正电中空聚四氟乙烯复合纳滤膜的制备方法, ZL201610406661.3
6. 一种聚甲基丙烯酰亚胺泡沫塑料的制备方法, ZL201410283961.8
7. 一种聚四氟乙烯复合纳滤膜的制备方法, ZL201410589854.8
8. 一种无收缩共聚物及其制备方法, ZL201410283962.2
9. 一种均相发泡共聚物及其制备方法, ZL201310252198.8
10. 一种膜吸收用聚四氟乙烯中空纤维膜的制备方法, ZL201310033443.6
11. 一种原位增强聚甲基丙烯酰亚胺泡沫材料及其制备方法, ZL201310013850.0
12. 一种均质聚甲基丙烯酰亚胺泡沫材料及其制备方法, ZL201210560479.5
13. 生产含有酰亚胺基聚合物泡沫材料的方法,ZL201110200497.8.
14. 一种含有酰亚胺基的聚合物泡沫材料及其制备方法,ZL201110113220.1
15. 一种无滴落性聚酯纤维的制备方法, ZL200910100290.6
16. 聚甲基丙烯酰亚胺泡沫材料及其制备方法, ZL200910102124.X
17. 一种抗熔滴阻燃聚酯纤维的制备方法, ZL200910099269.9.
主要代表作:
1、Mingyang Zhou, Junchao Chen, Wenjin Zhou, Juan Sun, Hongyan Tang*. Separation and purification technology, 2021,256, 117799 (SCI)
2、Wenjin Zhou,Mingyang Zhou, Huapeng Zhang, Hongyan Tang*. Journal of Coatings Technology and Research, 2021 (SCI)
3. 孙娟,唐红艳等,耐氯聚酰胺复合纳滤膜的制备与性能研究。高分子材料科学与工程,2021。(EI)
4、Hongyan Tang, Liting Hao, Junchao Chen, Feng Wang, Huapeng Zhang, Yuhai Guo. Energy & Fuels,2018, 32, 3627-3636.(SCI)
5、Hongyan Tang, Jun He, Liting Hao, Feng Wang, Huapeng Zhang, Yuhai Guo. Journal of membrane science,2017, 524,612-622. (SCI)
6、Hongyan Tang, Yi Zhang, Feng Wang, Huapeng Zhang, Yuhai Guo. Energy & Fuels,2016,30,492-593.(SCI)
7、H.Y. Tang*, Fuxiang Wei, Hongyao Ding. Materials and design, 2016, 96, 304-313. (SCI)
8、Hongyao Ding, H.Y. Tang*, Feng Wang, Huapeng Zhang, Yuhai Guo. Materials and design, 2015, 88,820-826. (SCI)
9、饶小波,陈建勇,张华鹏, 唐红艳*. 中国科学:技术科学, 2014, 44,99-107.(国内顶级)
10、段国波,唐红艳*,郭玉海. 高分子材料科学与工程, 2017, 33,184-190. (EI)
11、F. Wang, H.L. Zhu, H.P. Zhang, H.Y. Tang, J.Y. Chen, Y.H. Guo, Materials letter, 2016, 164, 376-379. (SCI)
12、Pengpeng Lv, Feng Wang, Yuhai Guo, Hongyan Tang*. Key Engineering Materials 2015,671, 293-299.(EI)
13、Kun Wang,Feng Wang,Yuhai Guo, Hongyan Tang*.Key Engineering Materials ,2015,671, 300-305. (EI)
14、F. Wang, H.L. Zhu, H.P. Zhang, H.Y. Tang, J.Y. Chen, Y.H. Guo, RSC Advances,2015, 5, 86387-86392. (SCI)
15、 F. Wang, H.L. Zhu, H.P. Zhang, H.Y. Tang, et al. Journal of water process engineering 2015, 8, 11-18. (SCI)
16、 F. Wang, J.M. Li, H.L. Zhu, H.P. Zhang, H.Y. Tang, et al. Journal of water process engineering,2015, 7, 36-45. (SCI)
17、 H.Y. Tang*, X.B. Rao, Materials innovation research, 2014, 18, 473-477. (EI)
18、 F. Wang, J.M. Li, H.L. Zhu, H.P. Zhang, H.Y. Tang, et al. Desalination, 2014, 354,143-152. (SCI)
19、F. Wang, Y.H. Guo, H.P. Zhang, H.Y. Tang*. Advanced materials research , 2014,441, 593-597. (SCI)
20、H.Y. Tang*, X.B. Rao. Materials innovation research, 2014, 18, 473-477. (EI)
21、、H.Y. Tang*, Q.Z. Chen, X.B. Rao. Journal of optoelectrontics and advanced materials, 2014, 5,624-628. (SCI)
22、饶小波, 陈建勇, 唐红艳*, 张华鹏, 陈其政. 高分子材料科学与工程,2013, 29, 86-90. (EI)
23、H.Y. Tang*. Optoelectronics and Advanced Materials-Rapid communications, 2010,5, 1293-1298. (SCI)
24、H.Y. Tang*, Long Chen. Advanced Materials Research, 2011, 160, 1309-1311.(EI)
25、 H.Y. Tang, J.Y. Chen, Y.H. Guo, Materials and design, 2010, 31, 3525-3530. (SCI)