姓名:李国锋 职称:副教授(见习) 邮箱:ligf@mail.buct.edu.cn;chase.lg@163.com 办公地址:东校区科技大厦301-3 |
教育背景:
2007/09-2011/06,北京化工大学,生命科学与技术学院,学士;
2011/09-2014/06,北京化工大学,生命科学与技术学院,硕士;
2014/09-2017/12,北京化工大学,生命科学与技术学院,博士;
工作经历:
2017/06-2018/01,澳大利亚新南威尔士大学,化学工程系,访问学者;
2018/05-2021/4,北京化工大学,生命科学与技术学院,师资博士后/讲师;
2021/5-至今,北京化工大学,生命科学与技术学院,副教授(见习);
学术兼职:
抗菌科学与技术论坛 委员
主要研究领域:
1、石墨烯复合止血材料的设计、合成与性能研究;
2、氨基酸聚合物药物递送系统协同抗菌、抗肿瘤研究;
科研项目:
主持国家自然科学基金面上项目、青年基金项目、中国博士后科学基金项目及企业合作项目;参与科技部重大专项、国家自然科学基金、北京市自然科学基金、教育部博士点基金、国家重点实验室开放课题以及企业合作项目。
代表性著作:
cascade‐targeting poly(amino acid) nanoparticles eliminate intracellular bacteria via on‐site antibiotic delivery. adv. mater. 2022, 2109789.
2. w. a, g. li*, x. wang, et al. graphene oxide reinforced hemostasis of gelatin sponge in noncompressible hemorrhage via synergistic effects. colloid. surface. b 2022, 220, 112891.
3. w. feng, g. li*, x. wang*, et al. targeted drug delivery systems for eliminating intracellular bacteria. macromol. biosci.2022, 2200311.
4. b. wu, g. li*, x. wang*, et al. graphene-ophicalcite heterogeneous composite sponge for rapid hemostasis. colloid. surface. b 2022, 220, 112596.
5. l. huang, g. li*, x. wang*, et al. multicomponent carrier-free nanodrugs for cancer treatment. j. mater. chem. b, 2022, 10, 9735–9754.
6. j. li, g. li*, x. wang*, et al. antimicrobial modification of pet by insertion of menthoxy-triazine. acs appl. polym. mater.2022, 4, 1922.
7. b. wu, , et al. graphene-based hemostatic sponge. chin. chem. lett. 2022, 33, 703.
8. w. feng, g. li*, j. xu*, x. wang*, et al. self-assembled nanosized vehicles from amino acid-based amphiphilic polymers with pendent carboxyl groups for efficient drug delivery. biomacromolecules 2021.22, 4871–4882
9. f. du, g. li*, x. wang*, et al. research progress of graphene-based hemostatic sponges. chem. j. chin. u. 2021, 4, 1177–1187.
10. w. feng, g. li*, x wang*, et al. poly(amino acid)s-based star aiegens for cell uptake with ph-response and chiral difference. colloid. surface. b 2021, 202, 111687.
11. y. liang, g. li*, x. wang*, et al. eliminating heat injury of zeolite in hemostasis via thermal conductivity of graphene sponge. acs appl. mater. interfaces 2019, 11, 23848–23857.
12. g. li*, y. liang, x. wang*, et al. polydopamine reinforced hemostasis of a graphene oxide sponge via enhanced platelet stimulation. colloid. surface. b 2019, 174, 35–41.
13. g. li, k. quan, x. wang*, et al. synergy in thrombin-graphene sponge for improved hemostatic efficacy and facile utilization. colloid. surface. b 2018, 161, 27–34.
14. g. li, x. wang*, j. xu*et al. precise synthesis of poly(n-acryloyl amino acid) through photoinduced living polymerization. polym. chem. 2018, 9, 2733–2745.
15. g. li, h. zhao, x. wang*, et al. anti fungal graphene oxide-borneol composite. colloid. surface. b 2017, 160, 220–227.
16. g. li, k. quan, x. wang*, et al. graphene-montmorillonite composite sponge for safe and effective hemostasis. acs appl. mater. interfaces 2016, 8, 35071–35080.
17. k. quan, g. li# , x. wang*, et al. diaminopropionic acid reinforced graphene sponge and its use for hemostasis. acs appl. mater. interfaces 2016, 8, 7666–7673.
18. h. yang, g. li# , x. wang*, j. nie*, et al. smart antibacteria lsurfaces made by photopolymerization. appl. mater. interfaces 2016, 8, 28047–28054.
19. k. quan# , g. li# , x. wang*, et al. black hemostatic sponge based on facile prepared cross-linked graphene. colloid. surface. b 2015, 132, 27–33.
20. g. li, x. wang*, q. yuan*, et al. cross-linked graphene membrane for high-performance organics separation of emulsions. j. membrane sci. 2015, 495, 439–444.