马余强

姓名:马余强
职称:教育部长江计划特聘教授
部门:软凝聚态物理及交叉研究中心
联系方式:
0512-67870203,myqiang@suda.edu.cn

个人简历:

1990年和1993年分别在苏州大学和南京大学获得理学硕士和博士学位;

1995年晋升南京大学物理学教授;

1997年列入教育部跨世纪优秀人才培养计划;

1999年荣获国家杰出青年科学基金;

2001年为教育部长江学者奖励计划特聘教授;

研究领域

主要从事物理学与化学和生命科学交叉的软凝聚态物理领域研究,在聚合物凝聚态物理、胶体结晶、生物膜结构组织和细胞骨架的非平衡自组织等若干前沿领域取得了有意义的成果。2000年以来发表国际知名学术刊物论文百余篇, 包括在国际权威刊物如《自然》子刊Nature Nanotechnology, 美国国家科学院院刊(PNAS)和化学类刊物如美国化学会志JACS等。一些论文被SCIENCEJACSPRLNano Lett.Angew. Chem. Int. Ed.等期刊引用有高的学术评价。多次在国际、国内重要学术会议作特邀报告, 如应邀在国际生物分子和材料模拟会议做大会报告,国际高分子物理会议做邀请报告,第十六届全国凝聚态理论和统计物理会议和全国高分子材料会议做大会报告,以及多次负责过组织中国高等科学技术中心软物质物理工作月和中国物理学年会的软凝聚态物理、生物和交叉领域分会等等。主持过国家杰出青年科学基金,国家自然科学基金重点项目、教育部跨世纪优秀人才基金、霍英东基金、国家自然科学基金理论物理重要课题、海外杰出青年学者合作基金、国家自然科学基金重大研究计划项目多项子课题等国家级项目十多项。

近期论文代表作:

1. Kai Yang and Yu-qiang Ma, Computer simulation of the translocation of nanoparticles with different shapes across a lipid bilayer, Nature Nanotechnology 5, 579 (2010).

2. Xia-qing Shi and Yu-qiang Ma, Understanding phase behavior of plant cell cortex microtubule organization,Proc. Natl. Acad. Sci. U.S.A. 107, 11709 (2010).

3. Wen-de Tian and Yu-qiang Ma, Effects of valences of salt ions at various concentrations on charged dendrimers, Soft Matter 6, 1308 (2010).

4. Qi-yun Tang and Yu-qiang Ma, High density multiplication of graphoepitaxy directed block copolymer assembly on two-dimensional lattice template, Soft Matter 6, 4460 (2010).

5. Wen-de Tian and Yu-qiang Ma, Complexation of a linear polyelectrolyte with a charged dendrimer: polyelectrolyte stiffness effects, Macromolecules 43, 1575 (2010).

6. Qing Liang, Qinghu Chen, and Yu-qiang Ma, Membrane-mediated interactions between nanoparticles on a substrate, J. Phys. Chem. B 114, 5359 (2010).

7. Zhi-yong Wang and  Yu-qiang Ma, Impact of head group charges, ionic sizes and dielectric images on charge inversion, J. Phys. Chem. B 114, 13386 (2010)

8. Zhi-yong Wang and Yu-qiang Ma, Insights from Monte Carlo simulations on charge inversion of planar electric double layers, J. Chem. Phys. 133, 064704 (2010).

9. Li-ping Xiong, Yu-qiang Ma and Lei-han Tang, Attenuation of transcriptional bursting in mRNA transport, Phys. Biology 7, 016005 (2010).

10. Chao Wang, Wen-de Tian, Yong Ding, Yu-qiang Ma, Zhong Lin Wang, Nenad Markovic, Vojislav Stamenkovic, Hideo Daimon, Shouheng Sun,Rational Synthesis of Heterostructured Nanoparticles with Morphology Control, Journal of the American Chemical Society 132, 6524(2010).

11. Chun-lai Ren, Wen-de Tian, Igal Szleifer, and Yu-qiang Ma, Specific salt effects on poly(ethylene oxide) electrolyte solutions, Macromolecules 44, 1719 (2011).

12. Bing Yuan, Shu-Xin Hu, Nai-Yan Lu, Fan Xu, Kun Zhou, Yu-qiang Ma, and Ming Li, Electrical Bistability in Self-assembled Hybrid Multilayers of Phospholipid and Nanoparticles, Nanotechnology 22, 315303(2011).

13. Bing Yuan, Tao Zhu, Zexin Zhang, Zhongying Jiang, and Yu-qiang Ma, Self-assembly of Multilayered Functional Films Based on Graphene Oxide Sheets for Controlled Release, J. Mater. Chem. 21, 3471 (2011).

14. Chun-lai Ren and Yu-qiang Ma, Loading oligonucleotides on a nanoparticle regulated by a grafted polyethylenimine layer, Soft Matter 7, 10841 (2011).

15. Wen-de Tian and Yu-qiang Ma, Coarse-grained molecular simulation of interacting dendrimers, Soft Matter 7, 500 (2011).

16. Bing Yuan, Jing-Liang Li,; Xiang Yang Liu, Yu-Qiang Ma, Hong-Yao Xu, Critical behavior of confined supramolecular soft materials on a microscopic scale Chem. Comm.  47, 2793(2011).

17. Kai Yang, Yu-qiang Ma, Wrapping and Internalization of Nanoparticles by Lipid Bilayers: a Computer Simulation Study, Aus. J.  Chem.  64,  894(2011).

18. Hong-ming Ding, Wen-de Tian and Yu-qiang Ma, Designing nanoparticle translocation through membranes by computer simulations, ACS Nano  6, 1230 (2012).

19. Kai Yang and Yu-qiang Ma, Computer simulations of fusion, fission and shape deformation in lipid membranes, Soft Matter 8, 606 (2012) (invited review).

20. Wen-de Tian and Yu-qiang Ma, pH-responsive dendrimers interacting with lipid membranes, Soft Matter 8, 2627 (2012).

21. Bing Yuan et al., Size invariance of fibrous networks of supramolecular soft materials during formation under critical volume confinement, Soft Matter 8, 5187 (2012).

22. Hong-ming Ding and Yu-qiang Ma, Interactions between Janus particles and membranes, Nanoscale 4, 1116 (2012).

23. Wen-de Tian and Yu-qiang Ma, Insights into the Endosomal Escape Mechanism via Investigation of Dendrimer-Membrane Interactions, Soft Matter 8, 6378 (2012).

24. Hong-ming Ding and Yu-qiang Ma, Role of physicochemical properties of coating ligands in receptor-mediated endocytosis of nanoparticles, Biomaterials 33, 5798 (2012).

25. Xiao-Chun Chen, Hong-Min Li, Fei Fang, Yuan-Wei Wu, Mu Wang, Guo-Bin Ma, Yu-Qiang Ma, Da-Jun Shu and Ru-Wen Peng, Confinement-induced ordering in dewetting and phase separation of polymer blend films, Advanced Materials 24, 2637 (2012).

26. Kai Yang, Bing Yuan, and Yu-qiang Ma, Curvature Changes of Bilayer Membranes Studied by Computer Simulations, J. Phys. Chem. B 116, 7196(2012).

27. Tao Zhu, Fan Xu, Bing Yuan, Chun-lai Ren, Zhong-ying Jiang, Yu-qiang Ma,  Effect of calcium cation on lipid vesicle deposition on silicon dioxide surface under various thermal conditions, Colloids and Surfaces B: Biointerfaces 89, 228(2012).

28. Tao Zhu, Zhong-ying Jiang, Yu-qiang Ma, Lipid exchange between membranes: Effects of membrane surface charge, composition, and curvature, Colloids and Surfaces B: Biointerfaces 97, 155 (2012).

29. Zhi-yong Wang and Yu-qiang Ma, Computational evidence of two driving mechanisms for overcharging in an electric double layer near the point of zero charge,  Phys. Rev. E 85, 062501 (2012).

30. Zhi-yong Wang and Yu-qiang Ma, A molecular simulation study on the role of ion sizes and dielectric images in near-surface ion distribution far from the strong coupling limit,  J. Chem. Phys. 136, 234701 (2012).

31. Wen-de Tian and Yu-qiang Ma, Theoretical and computational studies of dendrimers as delivery vectors, Chem Soc Rev 42, 705 (2013).

32. Naiyan Lu, Kai Yang, Jingliang Li, Bing Yuan, Yuqiang Ma, Vesicle deposition and subsequent membrane-melittin interactions on different substrates:  a QCM-D experiment, BBA – Biomembranes, 1828, 1918 (2013).

33. Xiaoyan Sun, Yang Li, Tianhui Zhang, Yu-qiang Ma and Zexin Zhang, Fabrication of large two-dimensional colloidal crystals via self-assembly in attractive force gradient, Langmuir 29, 7179 (2013).

34. Tao Zhu, Zhongying Jiang, and Yu-qiang Ma, Adsorption of nanoparticles and nanoparticle aggregates on membrane under gravity, Applied Physics Letter 102, 153109 (2013).  

35. Tao Zhu, Zhongying Jiang, Nurlybaeva E.N, Jie Sheng, Yu-qiang Ma, Effect of osmotic stress on membrane fusion on solid substrate, Langmuir 29, 6377 (2013).

36. Kai Yang, Bing Yuan, and Yu-qiang Ma, Influence of geometric nanoparticle’s rotation on cellular internalization process, Nanoscale 5, 7998 (2013).

37. Chen-kun Tu, Kang Chen, Wen-de Tian and Yu-qiang Ma, Computational investigations of a peptide-modified dendrimer interacting with lipid membranes, Macromolecular Rapid Communication 34, 1237 (2013).

38. Jiaojiao Liu, Naiyan Lu, Jingliang Li, Yuyan Weng, Bing Yuan, Kai Yang, and Yu-qiang Ma, Influence of Surface Chemistry on Particle Internalization into Giant Unilamellar Vesicles, Langmuir 29, 8039 (2013).

39. Hong-ming Ding and Yu-qiang Ma, Design maps for cellular uptake of gene nanovectors by computer simulation, Biomaterials 34, 8401 (2013).

40. Naiyan Lu, Kai Yang, Jing Liang Li, Yuyan Weng, Bing Yuan, and Yu-qiang Ma, Controlled Drug Loading and Release of a Stimuli-responsive Lipogel Consisting of Poly(N-isopropylacrylamide) Particle and Lipids, J. Phys. Chem. B 117, 9677 (2013).

41. Li-qiang Xie, Wen-de Tian, and Yu-qiang Ma, Computer simulations of the interactions of high-generation polyamidoamine dendrimers with electronegative membranes, Soft Matter 9, 9319(2013).

42. Hong-ming Ding and Yu-qiang Ma, Controlling Cellular Uptake of Nanoparticles with pH-Sensitive Polymers,Scientific Reports 3, 2804 (2013).

43. Xia-qing Shi and Yu-qiang Ma, Topological structure dynamics revealing collective evolution in active nematics, Nature Communications 4, 3013(2013).




  



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