
联系邮箱: mfkai@jnu.edu.cn
开明峰,国家高层次青年人才,教授,博导。长期致力于固废资源化利用、低碳土木工程材料、辐射制冷材料、分子模拟与多尺度计算方法等领域研究。在实验工作中,他研究开发了多种绿色材料,如工业废料改性水泥、FRP增强混凝土、垃圾焚烧飞灰基地聚物、废碱激发地聚物、以及地聚物辐射制冷涂层。这些材料不仅满足性能要求,而且符合环保规格,部分已被用于实际工程。在模拟工作中,结合密度泛函理论(DFT)、分子动力学(MD)和有限元方法(FEM),研究了水泥基、地聚物基材料的多尺度(即电子、原子、微观、介观和宏观尺度)材料机制和性能。此外,他将实验和模拟方法相结合开发纳米改性材料,如碳纳米管增强水泥/地聚物,氧化石墨烯增强水泥,Si掺杂石墨烯增强地聚物等。至今,主持国家级人才项目、广东省基础与应用基础研究重大项目、香港创新科技署资助项目、国家自然科学基金青年基金等10项,累计主持金额约1000万人民币。目前,在领域顶级刊物CCR,CCC,JHM,ES等发表学术论文55篇,其中SCI检索53篇,第一/通讯作者32篇。
研究领域
固废基地聚物材料;固废基辐射制冷涂层;纳米改性复合材料;纤维增强复合材料;自制冷混凝土、分子动力学与密度泛函理论;FRP增强混凝土结构等。
科研项目(仅列举主持项目)
1.主持,国家人才项目(200万,2024年);
2.主持,广东省基础与应用基础研究重大项目(200万,2026年);
3.主持, 香港创新科技署粤港科技合作资助计划(105.378万,2023年);
4.主持,国家自然科学基金青年基金项目(30万,2024年);
5.主持,广东省基础与应用基础研究基金区域联合基金-地区培育项目(30万,2026年);
6.主持,PolyU Technology & Consultancy Company Limited (PTeC)(87.1万,2023年);
7.主持,香港理工大学PolyU (UGC) one-line budget项目(45.5万,2021年);
8.主持,香港理工大学Start-Up funding项目(22.25万,2021年)。
代表性论著:
一、固废资源化领域
1. Lan, J., Dong, Y., Kai, M. F.*, Hou, H., & Dai, J. G.* (2024). Investigation of waste alkali-activated cementing material using municipal solid waste incineration fly ash and dravite as precursors: mechanisms, performance, and on-site application. Journal of Hazardous Materials, 133416. (中科院1区,TOP)
2. Xu, W., Tang, Z.*, Xie, Y., Long, G., Kai, M. F.*, Zhang, Z., ... & Zaland, S. (2024). Understanding the impact of synthesis parameters on the pore structure properties of fly ash-based geopolymers. Construction and Building Materials, 411, 134640. (中科院1区,TOP)
3. Khan, M., Lao, J., Ahmad, M. R., Kai, M. F.*, & Dai, J. G.* (2023). The role of calcium aluminate cement in developing an efficient ultra-high performance concrete resistant to explosive spalling under high temperatures. Construction and Building Materials, 384, 131469. (中科院1区,TOP)
4. Mi, R., Zhang, Z., Ji, W., Liu, S., Kai, M. F.*, & Tan, Y.* (2023). Solidification/stabilisation behaviours of Zn2+ in magnesium potassium phosphate cement: Experiments and density functional theory study. Environmental Research, 116247. (中科院1区,TOP)
5. Kai, M. F., Zhang, L. W.*, & Liew, K. M.* (2021). Atomistic insights into structure evolution and mechanical property of calcium silicate hydrates influenced by nuclear waste caesium. Journal of Hazardous Materials, 411, 125033. (中科院1区,TOP)
二、辐射制冷材料领域
1. Xuan, Q., Yang, N., Kai, M. F.*, Wang, C., Jiang, B., Liu, X., ... & Zhao, B*. (2024). Combined daytime radiative cooling and solar photovoltaic/thermal hybrid system for year-round energy saving in buildings. Energy, 304, 132178. (中科院1区,TOP)
2. Yang, N., Xue, S., Ahmad, M. R., Xuan, Q., Kai, M. F.*, & Dai, J. G.* (2024). Development of red mud-modified geopolymer coating with radiative cooling effect for footway application. Journal of Cleaner Production, 450, 141915. (中科院1区,TOP)
3. Yang, N., Liu, J. H., Kai, M. F.*, & Dai, J. G.* (2024). Geopolymer-based radiative cooling coating: Tailoring surface hydrophobic properties while retaining optical characteristics. Construction and Building Materials, 428, 136373. (中科院1区,TOP)
4. Yang, N., Chen, Z.,Kai, M. F.*, & Dai, J. G.* (2026). Titanium dioxide-enhanced alkali-activated geopolymer for radiative cooling and air purification. Construction and Building Materials, 539, 147443. (中科院1区,TOP)
三、分子模拟与多尺度力学领域
1. Iwama, K., Kai, M. F.*, Dai, J. G.*, Zhang, P., Wang, P., Poon, C. S., ... & Maekawa, K. (2024). Physicochemical-mechanical simulation of the short-and long-term performance of FRP reinforced concrete beams under marine environments. Engineering Structures, 308, 118051. (中科院1区,TOP)
2. Zhang, P., Manzano, H., Kai, M. F.*, & Dai, J. G. * (2024). Behaviors and influences of water confined within the CSH interlayer: A quenched solid density functional theory study. Cement and Concrete Research, 184, 107600. (中科院1区,TOP)
3. Zhang, P., Hu, X. F.,Kai, M. F.*, & Dai, J. G.* (2026). An investigation of sorption and shrinkage in cement paste using a novel framework integrating a DFT-based interlayer pore model. Cement and Concrete Research, 203, 108153.
4.Kai, M. F., & Dai, J. G. (2021). Understanding geopolymer binder-aggregate interfacial characteristics at molecular level. Cement and Concrete Research, 149, 106582. (中科院1区,TOP)
5.Kai, M. F., Zhang, L. W.*, & Liew, K. M.* (2021). New insights into creep characteristics of calcium silicate hydrates at molecular level. Cement and Concrete Research, 142, 106366. (中科院1区,TOP)
长期招收固废资源化利用、环境工程、土木工程材料、计算力学、物理化学等领域专职研究员、博士后、博士生和硕士生。