(1) 2023-05 至 今, 南京理工大学, 化学与化工学院, 副教授
(2) 2019-10 至 2023-05, 南京理工大学, 化学与化工学院, 讲师
(3) 2017-01 至 2019-10, 上海爱默金山药业有限公司, 研发部, 工程师
(1) 2007-09 至 2011-06, 南京理工大学, 化学与化工学院, 学士
(2) 2011-06 至 2016-06, 南京理工大学, 化学与化工学院, 博士
承担国家重大安全专项等科研项目,年均项目科研经费200万元。目前主要在研项目情况如下:
序号 |
名称 |
项目来源 |
项目起止时间 |
1
|
典型XX技术
|
高新工程重大专项
|
2022.01-2024.12
|
2
|
军用XX研究
|
高新工程重大专项
|
2021.01-2024.12
|
3
|
微通道xx研究
|
科工局军工基础性科研稳定支持
|
2021.11-2022.08
|
4
|
TATB包覆XXXX机理研究
|
火炸药燃烧国防科技重点实验室
|
2020.07-2022.5
|
5
|
共价型XX性能研究
|
火炸药燃烧国防科技重点实验室
|
2022.06-2024.06
|
6
|
α-AlH3稳定化技术研究
|
企业横向
|
2021.12-2023.12
|
7
|
含能XXX技术
|
国防科工局项目
|
2021.01-2024.12
|
8 |
XXX稳定化技术 |
国防科工局项目 |
2023.10-2025.10 |
9 |
XXXX制备技术 |
国防科工局项目 |
2025.01-2027.01 |
[1] Shuai Guo, Le-Wu Zhan*, Bin-Dong Li.* Mixing intensification and kinetics of 2, 4-difluoronitrobenzene homogeneous nitration reaction in the continuous-flow microreactor. Chemical Engineering Journal. 2023, 477: 147011. (SCI一区, IF=15.1)
[2] Shuai Guo, Le-Wu Zhan*, Bin-Dong Li.* Nitration of o-xylene in the microreactor: Reaction kinetics and process intensification. Chemical Engineering Journal, 2023, 468: 143468.(SCI一区, IF=15.1)
[3] Shuai Guo, Jian-Yang Cao, Mei-Qi Liu, Le-Wu Zhan*, Bin-Dong Li.* Intensification and kinetic study of trifluoromethylbenzen nitration with mixed acid in the microreactor. Chemical Engineering & Processing: Process Intensification, 2023, 183: 109239. (SCI三区, IF=4.3)
[4] Shuai Guo, Guang-Kai Zhu, Le-Wu Zhan*, Bin-Dong Li.* Continuous kilogram-scale process for the synthesis strategy of 1,3,5-trimethyl-2-nitrobenzene in the microreactor. Chemical Engineering Research & Design, 2022, 178: 179-188. (SCI三区, IF=4.1)
[5] Shuai Guo, Guang-Kai Zhu, Le-Wu Zhan*, Bin-Dong Li.* Process design of two-step mononitration of m-xylene in a microreactor. Journal of Flow Chemistry, 2022, 12(3): 327-336. (SCI三区, IF=3.2)
[6] Shuai Guo, Guang-Kai Zhu, Xin-Guang Wu, Le-Wu Zhan*, Bin-Dong Li.* Scale-Up and Development of Synthesis 2-Ethylhexyl Nitrate in a Microreactor Using the Box-Behnken Design. Organic Process Research & Development, 2022, 26: 174-182. (SCI三区, IF=3.8)
[7] Shuai Guo, Guang-Kai Zhu, Le-Wu Zhan*, Bin-Dong Li.* Kinetics and safeties of 2-Ethyl-1-hexanol nitration in a capillary-microreactor. Journal of Flow Chemistry, 2022, 12(3): 285-296. (SCI三区, IF=3.2)
[8] Song Zhang, Le-wu Zhan*, Guangkai Zhu, et al. Rapid preparation of size-tunable nano-TATB by microfluidics[J]. Defence Technology, 2021.https://doi.org/10.1016/j.dt.2021.05.015
[9] Song Zhang, Le-wu Zhan*, Yiyi Teng, et al. Layer-by-layer Nano-TATB coating for HMX surface: A scalable method to achieve the high-energy and low-sensitivity explosive[J]. Science and Technology of Energetic Materials, 2021, 82(6): 152-160.
[10] Song Zhang, Le-wu Zhan*, Guangkai Zhu, et al. Continuous, Safe and Large-scale Preparation of Insensitive High-Energy TATB/HMX Composite Particles by Microfluidic Self-assembly Technology[J]. Chemical Engineering Science. 2022, 264: 118160-118167
[11] Song Zhang, Le-wu Zhan*, Yifan Zhang, et al. Continuous flow resonance acoustic mixing technology: A novel and efficient strategy for preparation of nano energetic materials[J]. FirePhysChem, 2023, (3): 29-36
[12] Yifan Zhang, Song Zhang, Le-wu Zhan*, et al. Research on the application of microfluidic technology in the preparation of nano LLM-105[J]. Journal of Energetic Materials.
[13] 单羽,詹乐武,张松,侯静,李斌栋.微通道反应器制备微纳米HMX[J].火炸药学报,2021,44(6):776-781.
[14]詹乐武,张一帆,李营,张松, 侯静,李斌栋.超声辅助微流控技术制备纳米LLM-105[J].含能材料, 2022. DOI:10.11943/CJEM2022018