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孔米秋
教授/研究员
孔米秋,工学博士,教授,硕/博士生导师,先进高分子材料全国重点实验室固定研究人员,入选四川大学双百人才工程。长期从事高性能、功能高分子及其复合材料研究,针对新材料发展和航空航天国家重大战略需求,开展高性能胶粘剂、智能黏附材料与机构、柔性材料与传感器等关键基础科学理论和应用研究。作为项目负责人承担了国家自然科学基金、装备预研、四川省科技厅、企业合作项目(华为、东方电气、航天五院、703、中广核、中物院等)、高分子材料工程国家重点实验室优秀青年人才项目、先进特种材料及制备加工新技术教育部重点实验室开放课题等20余项,作为主研人员参与了多项国家自然科学基金重点/重大、校企合作、等多项。至今已在Matter(Nature研究亮点报道)、Advanced Science、ACS Nano、Composites Part B、Macromolecules、Chemical Engineering Journal等国际知名期刊上发表高水平论文60余篇,申请专利19项。
联系方式

地址:四川省成都市武侯区一环路南一段24号/成都市双流区川大路二段2号,江安校区空天科学与工程学院空天大楼308/望江校区高分子科学与工程学院高分子实验楼202,610065

邮件:miqiukong@scu.edu.cn

工作经历

· 2020.07~至今,先进高分子材料全国重点实验室(四川大学)固定研究人员

· 2025.09~至今,四川大学空天科学与工程学院工作,从事高性能与功能化航空航天高分子材料方面的研究工作,教授/博士生导师

· 2016.09~2025.08,四川大学空天科学与工程学院工作,从事高分子及其复合材料方面的研究工作,副研究员/博士生导师

· 2014.10~2016.08,四川大学空天科学与工程学院工作,从事高分子及其复合材料方面的研究工作,讲师

教育经历

·  2012.11~2014.05,密歇根大学(美国),化学工程系,联合培养博士,导师:Ronald G Larson院士/教授

·  2004.09~2008.06,四川大学高分子科学与工程学院,材料加工工程,工学学士,导师:李光宪教授。

·  2008.09~2014.06,四川大学高分子科学与工程学院,材料加工工程,工学博士,导师:李光宪教授。

研究方向

柔性智能与感知材料(黏附材料与机构、柔性触觉传感器、智能控制等)

热固性材料的高性能化、多功能化及稳定化研究(环氧、硅橡胶、聚酰亚胺、聚氨酯等高性能胶粘剂)

航空航天高分子复合材料的结构调控与高性能、流变行为、服役寿命与高稳定性



代表性论文
  1. Feng JB#, Gao Pan#, Li GX, Kong MQ*, Wei P*. Ultra-strong reversible adhesion for climbing robots on rough surfaces by molecular-hair polymer. Matter. 2026, 9, 102571.(国际权威学术期刊《Nature》研究亮点报道,Nature, 2026, 650, 802. 评述链接:https://www.nature.com/articles/d41586-026-00513-z)
  2. Feng JB, Zhu H, Lv YD, Yang Q, Li GX, Kong MQ*, Pu W *. Gecko-inspired adhesive for robotic grippers with excellent ultra-low-temperature adhesion performance. Advanced Science. 2026, e15084 (1 of 13).
  3. Zhu XY, Huang B, Dong LN, Lv YD, Huang YJ, Li GX, Ronald G Larson, Kong MQ*. Rheology, Dynamics, and Mechanisms of Self-healing Polydimethylsiloxane Dual-linked by Ureido and Dynamic Imine Bonds. Journal of Colloid and Interface Science, 2025, 700 (3): 138512.
  4. Wang LQ, Feng JB, Zhu H, Lv YD, Yang Q, Li GX, Kong MQ*. Bottlebrush Polysiloxane for Designing High-Loading Thermal Interface Materials with Excellent Thermal Conductivity Efficiency and Thixotropy, Composites Part B: Engineering, 2025, 304: 112689.
  5. Wang M, Li WD, Lv YD, Li GX, Zhao ZJ, Wang YB, Zhou QH, Pu W, Kong MQ*. Highly Stable and Wide-range Flexible Pressure Sensors with a Gradient modulus and Selective Foaming layer, Chemical Engineering Journal, 2025, 515, 163761.
  6. Zhang W, Ai Li, Lv YD, Yang Q, Li GX, Kong MQ*. Super Toughened Catalyst Free Epoxy Vitrimer by tunning the molecular networks. Industrial & Engineering Chemistry Research, 2025, 64, 4, 2099-2112.
  7. Xu WQ, Zhou M, Liu SQ, Lv YD, Yang Qi, Li GX, Kong MQ*. Super Robust Strength and Self-healing Waterborne Polyurethane/Fe3O4 Composites with Phase separation. Macromolecules, 2025, 58, 1, 135-148.
  8. Gao P, Feng JB, Wei PC, Kong MQ*, Pu W*. Effect of side group modification on the glass transition and adhesion properties of polysiloxane at the atomic scale, Materials Today Communications, 2024, 40: 109513.
  9. Li WD, Zou KK, Guo JW, Zhang Cc, Feng JB, You J, Cheng G, Kong MQ*, Li GX, Guo CF, Yang JL*. Integrated Fibrous Iontronic Pressure Sensors with High Sensitivity and Reliability for Human Plantar Pressure and Gait Analysis, ACS nano, 2024, 18, 22: 14672-14684. (高被引论文)
  10. Xi Le, Feng JB, Huang YY, Huang YJ, Yang Q, Li GX, Kong MQ*. Synthesis of UV-resistant and colorless polyimide films for optoelectrical applications. npj Materials Degradation, 2024, 8: 6.
  11. Feng JB, Wang Y, Qin XG, Lv YD, Huang YJ, Yang Q, Li GX, Kong MQ*. Revealing the Molecular Mechanisms of Colorless Transparent Polyimide Films under the Photo-Oxidation, Polymer Degradation and Stability, 2023, 210: 110294.
  12. Xu WQ, Lv YD*, Kong MQ*, Huang YJ, Yang Qi, Li GX. In-situ polymerization of eco-friendly waterborne polyurethane/ polydopamine-coated graphene oxide composites towards enhanced mechanical properties and UV resistance. Journal of Cleaner Production, 2022, 373: 133942.
  13. Zhu H, Tang B, Kong MQ*, Lv YD, Huang YJ, Yang Q, Li GX. Synthesis of poly(hydroxyethyl methacrylate)-b-poly(propylene glycol)-b-poly(hydroxyethyl methacrylate)reactive block copolymer with controlled reactivity for toughening multifunctional epoxy resin. Journal of Applied Polymer Science, 2022, 139(37): e52885.
  14. Zhang W, Cui HN, Lv YD, Huang YJ, Yang Q, Li GX, Kong MQ*. Significantly Enhanced Performance of epoxy Resin by Synergistic Effects of Block Copolymer and Multi-walled Carbon Nanotubes. Journal of Applied Polymer Science, 2022, 139: e52457 (1-13).
  15. Feng JB, Wang Y, Qin XG, Lv YD, Huang YJ, Yang Q, Li GX, Kong MQ*. Property Evolution and Molecular Mechanisms of Aluminized Colorless Transparent Polyimide under Space Ultraviolet Irradiation. Polymer Degradation and Stability, 2022, 199: 109915.
  16. Lv YD, Fan DQ, Kong MQ*. Reliability assessment on PV backsheets with and without considering spectral UV albedo effects: a theoretical comparison. Solar Energy Materials and Solar Cells, 2021, 230: 111230.
  17. Li P, Zhang W, Kong MQ*, Lv YD, Huang YJ, Yang Q, Li GX. Ultrahigh performance polylactide achieved by the design of molecular structure. Materials & Design, 2021, 206: 109779 (1-11).
  18. Li P, Zhu XY, Kong MQ*, Lv YD, Huang YJ, Yang Q, Li GX. Fully Biodegradable Polylactide with Ultrahigh Expansion Ratio and Heat Resistance for Green Packaging. International Journal of Biological Macromolecules, 2021, 183: 222-234.
  19. Li P, Zhu XY, Zhang W, Kong MQ*, Lv YD, Huang YJ, Gong PJ, Li GX. High performance branched poly(lactide) induced by reactive extrusion with low-content cyclic organic peroxide and multifunctional acrylate coagents. Polymer, 2020, 205: 122867(1-11).
  20. Zhu XY, Kong MQ*, Lv YD, Huang YJ, Gong PJ, Li GX. Selective distribution of nanoparticles in immiscible blends: Effects on the morphology evolution and rheology in quiescent annealing, shear and extensional flow. Journal of Rheology, 2020, 64(6): 1357-1371.
  21. Lv YD, Chen JX, Xu WQ, Kong MQ*. Multiscale analysis on multiextruded poly(lactic acid)/organoclay nanocomposites: Insights into the underlying mechanisms of thermomechanical degradation. Polymers for Advanced Technologies, 2020, 31(11): 2742-2751.
  22. Wang C, Kong MQ*, Yang Q, Huang YJ, Yadong Lv, Li GX. Deep insight into interaction mechanisms between ESBR and silica modified by different silane coupling agents. Journal of Applied Polymer Science, 2020, e49112 (1-15).
  23. Yin BY, Liu CJ, Kong MQ*, Xu WQ, Huang YJ, Li GX. Synthesis of poly(ionic liquid) for trifunctional epoxy resin with simultaneously enhancing the toughness, thermal and dielectric performances. RSC Advances, 2020, 10, 2085 - 2095.
  24. Li P, Zhang W, Zhu XY, Kong MQ*, Lv YD, Huang YJ, Gong PJ, Li GX*. Simultaneous Improvement of the Foaming Property and Heat Resistance in Polylactide via One-step Branching Reaction Initiated by Cyclic Organic Peroxide. Industrial & Engineering Chemistry Research, 2020, 59, 2934-2945.
  25. Kong MQ, Liu CJ, Tang B, Xu WQ, Huang YJ, Li GX. Improved Mechanical and Thermal Properties of Tri-functional Epoxy Resins through Controlling Molecular Networks by Ionic Liquids. Industrial & Engineering Chemistry Research, 2019, 58(19): 8080-8089.
  26. Xu WJ, Kong MQ*, Lv YD, Huang YJ, Li GX, Study on Properties of Waterborne Polyurethane/Polydopamine Nanoparticles Prepared by in situ Polymerization. Acta polymerica sinica, 2019, 50(7): 710-720.
  27. Kong MQ, Chen GL, Xi ST, Huang YJ, Li GX, Morphology Mapping of Nanoparticle-filled Immiscible Polymer Blends in Flow: The Existence of a Critical Ratio between Nanoparticle Concentration and Droplet Concentration. ACS Omega, 2018, 3(9): 11550-11557.
  28. Zhao MX, Kong MQ*, Liu CJ, Huang YJ, Li GX, Toughening of TDE-85 Epoxy Resin by Dopamine-modified Graphene Oxide. ACTA POLYMERICA SINICA, 2018(6): 721-732.
  29. Kong MQ, Huang YJ, Lv YD, Yang Q, Li GX, Larson RG, Elongation Thinning and Morphology Deformation of Nanoparticle-filled Polypropylene/Polystyrene Blends in Elongational Flow. Journal of Rheology, 2018, 62(1): 11-23.
  30. Kong MQ, Huang YJ, Lv YD, Yang Q, Li GX, Formation and Stability of String Phase in Polyamide 6/Polystyrene Blends in Confined Flow: Effects of Nanoparticles and Blend Ratio. AIChE Journal, 2016, 62(2): 564-573.
  31. Kong MQ, Yan W, Li GX, Larson RG, A Bead-Spring Model for Running and Tumbling of Flagellated Swimmers: Detailed Predictions Compared to Experimental Data for E. coli. Soft Matter, 2015, 11(8): 1572-1581.
  32. Kong MQ, Dalal IS, Li GX, Larson RG. Systematic Coarse-Graining of the Dynamics of Self-Attractive Semiflexible Polymers. Macromolecules, 2014, 47(4): 1494-1502.
  33. Kong MQ, Huang YJ, Wang SH, Yang Q, Li GX. Flow-induced Morphological Instability in Nanosilica-filled Polyamide 6/Polystyrene Blends. Polymer, 2014, 55(16): 4348-4357.
  34. Kong MQ, Huang YJ, Chen GL, Yang Q, Li GX. Retarded relaxation and breakup of deformed PA6 droplets filled with nanosilica in PS matrix during annealing. Polymer, 2011, 52: 5231-5236.
  35. Kong MQ, Huang YJ, Liu WJ, Li GX, Influence of silica nanoparticles on the coarsening of co-continuous PMMA/PS blends during annealing. Acta Polymerica Sinica, 2010, 9: 004.
代表性专利
  1. 孔米秋,戴瑞贤,冯家宝,周沫,徐文文,吕亚栋,李光宪. 一种偶氮苯聚脲-聚丙烯酸酯基双网络液晶弹性体及其制备方法,申请号202510058387.4
  2. 孔米秋,王猛,李文东,周青华,吕亚栋,李光宪. 一种选择性发泡多层柔性复合材料及其制备方法和应用,申请号202411367011.3
  3. 孔米秋,刘晟权,尹冰艳,李光宪,吕亚栋. 环氧树脂/超支化聚离子液体符合材料及其制备方法,申请号202410122249.3
  4. 孔米秋,徐文卿,吕亚栋,李光宪. 一种高强度的自修复水性聚氨酯复合材料及其制备方法,申请号202410612373.8
  5. 孔米秋,徐文卿,吕亚栋,李光宪. 一种强韧性阻燃自修复水性聚氨酯复合材料及其制备方法,申请号202410612752.7
  6. 孔米秋,李文东,杨俊龙. 一种高孔隙率的聚合物离子凝胶纤维及其制备和应用,申请号202211669715.7
  7. 吕亚栋,朱洨易,孔米秋,黄亚江,李光宪. 一种交联PDMS/壳聚糖复合材料及其制备方法,申请号202210807015.3
  8. 孔米秋,徐文卿,吕亚栋,黄亚江,李光宪. 一种高强度自修复水性聚氨酯复合材料及其制备方法,申请号202110152346.3
  9. 孔米秋,李爱,吕亚栋,黄亚江,李光宪. 一种超韧环氧树脂类玻璃高分子材料及其制备方法,申请号202110167213.3
  10. 孔米秋,黄亚江,李光宪. 促进不相容聚合物共混物中的分散相形成稳定纤维的方法,申请号CN201510552137.2
  11. 孔米秋,刘成俊,黄亚江,李光宪. 具有双交联网络结构的环氧树脂及其制备方法,申请号CN201610545457.X
  12. 孔米秋,刘成俊,黄亚江,李光宪. 一种环氧树脂/聚离子液体的复合材料及其制备方法,申请号CN201810318393.9

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