
张博凯,贵州贵阳人,中共党员,副教授,硕士生导师。2011年本科毕业于贵州大学物理学专业,2016年于南京大学获得理论物理学博士学位(导师:马余强院士、陈康教授)。随后在北京计算科学研究中心开展博士后研究(合作导师:徐辛亮研究员)。2018—2022年任浙江理工大学物理系教师,2025年于爱丁堡大学凝聚态物理与复杂系统研究所访学。2022年3月至今,任bevitor伟德副教授。长期从事软物质物理与生物物理研究,在活性物质与复杂流体等方向取得系列成果。以第一作者或通讯作者在 PNAS、Science Advances、Physical Review Letters、Journal of Fluid Mechanics、Macromolecules、Soft Matter、Journal of Chemical Physics 等期刊发表论文10余篇。主持国家自然科学基金项目3项,入选重庆市“巴渝学者”青年学者。长期担任 Physical Review Letters、Physical Review Research/E、Physics of Fluids 等期刊独立审稿人。
主要从事活性与软物质凝聚态物理的理论与计算研究,聚焦非平衡体系中的多尺度结构形成与动力学行为。研究围绕生命体系与复杂流体中的统计物理与流体力学问题展开,致力于揭示活性物质与高分子体系的动力学机制及其物理本质。当前研究方向包括:
1. 微生物游动机理与集体动力学行为
2. 生物高分子的结构调控与动力学机制
3. 高分子及其复合体系的玻璃化转变与非平衡动力学
课题组计划每年招收硕士研究生1-2名,欢迎有兴趣从事高分子物理、生物流体力学、玻璃化转变等软物质物理学中的理论与计算机模拟研究的同学与我联系,也欢迎本科员工来课题组进行科研实习,联系方式:bkaizhang(AT)sina.cn, zbk329(AT)swu.edu.cn
研究组(group):
袁崇博、郭永梅、张佳佳、李亚鹏、曾源源(2022级本科生,已保研南开大学)
已毕业员工(alumni):
1. 李靖(2022级硕士,与汪志勇教授联合培养),目前在华南理工大学读博
2. 李洪尧(2022级硕士,与汪志勇教授联合培养),目前在苏州大学读博
3. 胡明毅(2023级硕士,与汪志勇教授联合培养),中学物理教师
4. 吴友鹏(2020级本科),目前在北京大学硕博连读
5. 张宇飞 (2021级本科),目前在北京理工大学硕博连读
主要担任课程(courses):
《大学物理》(本科生)
《高等数学》(本科生)
《科技英语》(本科生)
近期主持科研项目(projects):
(1) 中央高校基本科研能力提升项目,2025-2027
(2) 国家自然科学基金面上项目,2024-2027
(3) 中央高校基本科研业务费项目,2023-2024
(4) 国家自然科学基金青年科学基金项目,2020-2022
(5) 国家自然科学基金应急管理项目(理论物理专款),2019
代表性工作:
1. Phys. Rev. Lett., in press (2026)
2. Sci. Adv., 11, eaea0786 (2025)
3. J. Fluid Mech., 994, A12 (2024).
4. Macromolecules 56, 2, 589–600 (2023)
5. Proc. Natl. Acad. Sci. USA 118, e2100145118 (2021)
6. Soft Matter 20, 5174-5182 (2024)
7. Soft Matter 17, 4632 (2021)
论文发表清单(publications)
25. Spontaneous phase transition in bacterial polar fluids
H Tan, B K Zhang*, S Guo*
(submitted), https://doi.org/10.21203/rs.3.rs-7760051/v1
24. Molecular chaos in dense active systems
L Chen, KJ Welch, P Leishangthem, D Ghosh, B K Zhang, T.-P Sun, J Klukas, Z. C. Tu, X Cheng, X.-L Xu, “Molecular chaos in dense active systems”, arXiv:2302.10525.
2026
23. Bacterial turbulence at compressible fluid interfaces
Y Yin, B K Zhang*, H P Zhang, S Guo*
Phys. Rev. Lett., in press (2026) 理论部分通讯
2025
22. Chain ends excite polymer cooperative motion
Q Xu, Z Wu, K Randazzo, W-S Xu, B K Zhang*, R D Priestley*, B Zuo*
Sci. Adv., 11, eaea0786 (2025) 理论部分通讯
2024
21. Crowding accelerates the rotation of a bacterial rotor
H X Huang#, B K Zhang#, S Guo*
J. Fluid Mech. 994, A12 (2024) 共一作
20. Activity-induced stiffness, entanglement network and dynamic slowdown in unentangled semidilute polymer solutions
J Li, B K Zhang*, Z-Y Wang*
Soft Matter 20, 5174–5182 (2024)
19. Conformational and static properties of tagged chains in solvents: effect of chain connectivity in solvent molecules
H Y Li, B K Zhang*, Z-Y Wang*
Soft Matter 20, 3073 (2024)
2023
18. Initial-state dependence of phase behaviors in a dense active system
L Chen*, B K Zhang, Z C Tu
Chin. Phys. B 32, 086401 (2023)
17. Glass formation in mechanically interlocked ring polymers: the role of induced chain stiffness
J Li, B K Zhang*, Y-S Li*
Macromolecules 56, 2, 589–600 (2023)
2022
16. Intrinsic spin, valley and piezoelectric polarizations in room-temperature ferrovalley Janus TiXY (XY = SCl and SeBr) monolayers
K Sheng, H-K Yuan, B K Zhang*
Nanoscale 14, 15156–15164 (2022)
15. Strain-engineered topological phase transitions in ferrovalley 2H-RuCl₂ monolayer
K Sheng, B K Zhang, H-K Yuan, Z-Y Wang*
Phys. Rev. B 105, 195312 (2022)
14. Dissecting the co-segregation probability from genome architecture mapping
L Liu*, X-M Cao, B K Zhang, C Hyeon*
Biophys. J. 121, 20 (2022)
Before 2021
13. An effective and efficient model of the near field hydrodynamic interactions for active suspensions of bacteria
B K Zhang, P Leishangthem, Y Ding*, X-L Xu*
Proc. Natl. Acad. Sci. USA 118, e2100145118 (2021)
12. Theory of polymer diffusion in polymer–nanoparticle mixtures: effect of nanoparticle concentration and polymer length
B K Zhang*, J Li, J-M Hu, L Liu*
Soft Matter 17, 4632 (2021)
11. Microscopic theory for elastic modulus of colloidal polymers: effect of bond length
B K Zhang*
Acta Physica Sinica 70, 12, 126401 (2021)
10. Glassy dynamics of model colloidal polymers: Effect of controlled chain stiffness
J Li, B K Zhang*, Y-S Li*
Chin. Phys. B 30, 3, 036104 (2021)
9. Extracting multi-way chromatin contacts from Hi-C data
L Liu*, B K Zhang, C Hyeon*
PLoS Comput. Biol. 17(12): e1009669 (2021)
8. Effect of chain length on structure and dynamics in a melt of semiflexible rings
J Li*, B K Zhang*
EPL 130, 56001 (2020)
7. Metabasin dynamics of supercooled polymer melt
J Li*, B K Zhang
Chin. Phys. B 28, 12, 126101 (2019)
6. Unique role of bond length in the glassy dynamics of colloidal polymers
B K Zhang, H-S Li, J Li, K Chen*, W-D Tian*, Y-Q Ma*
Soft Matter 12, 8104 (2016)
5. Transport coefficients and mechanical response in hard-disk colloidal suspensions
B K Zhang*, J Li, K Chen, W-D Tian, Y-Q Ma
Chin. Phys. B 25, 116101 (2016)
4. A new self-consistent field model of polymer/nanoparticle mixture
K Chen*, H-S Li, B K Zhang, J Li, W-D Tian*
Scientific Reports 6, 20355 (2016)
3. Glassy dynamics of model colloidal polymers: the effect of “monomer” size
J Li, B K Zhang, H-S Li, K Chen*, W-D Tian*, P-Q Tong*
J. Chem. Phys. 144, 204509 (2016)
2. Brush in the bath of active particles: anomalous stretching of chains and distribution of particles
H-S Li, B K Zhang, J Li, W-D Tian*, K Chen
J. Chem. Phys. 143, 224903 (2015)
1. Theory of activated dynamics and glass transition of hard colloids in two dimensions
B K Zhang, H-S Li, W-D Tian, K Chen*, Y-Q Ma*
J. Chem. Phys. 140, 094506 (2014)
——Updated March 2026