报告题目:从石墨烯合成到功能性聚合物纳米复合材料:面向下一代材料的石墨烯工程(From Graphene Synthesis to Functional Polymer Nanocomposites: Engineering Graphene for Next-Generation Materials)
时间:2026年9月11日 14:30-15:30
地点:YF205
主办单位:研究生工作部
承办单位:物理科学与工程学院
报告人介绍:
卡玛尔·尤索教授级博士(工学学士,化学工程,马来西亚理工大学;工学硕士,化学工程,马来西亚理工大学;博士,聚合物纳米技术,英国拉夫堡大学)现任马来西亚彭亨苏丹阿都拉大学(UMPSA)副校长(学术与国际事务)。他通过加强学术质量、提升教学卓越水平、拓展跨国教育(TNE)以及促进全球合作伙伴关系,为推进大学的学术与国际议程提供战略领导力,确保UMPSA的学术课程保持创新性、行业相关性和国际认可度。作为一名专注于聚合物纳米技术、聚合物纳米复合材料及石墨烯技术的杰出学者,他发表了大量论文,并为众多研究与创新项目做出了贡献。在国际合作方面,他曾获得土耳其政府颁发的梅夫拉纳奖学金,作为访问学者前往卡拉布克大学,目前还担任中国河北大学的客座教授,这体现了他对推动国际学术合作的承诺。
Professor Ts. Dr. Kamal Yusoh (B.Eng. Chemical Engineering, Universiti Teknologi Malaysia; M.Eng. Chemical Engineering, Universiti Teknologi Malaysia; PhD Polymer Nanotechnology, Loughborough University, United Kingdom) is the Deputy Vice-Chancellor (Academic and International) of Universiti Malaysia Pahang Al-Sultan Abdullah (UMPSA). He provides strategic leadership in advancing the University's academic and internationalisation agenda by strengthening academic quality, enhancing teaching and learning excellence, expanding transnational education (TNE), and fostering global partnerships to ensure academic UMPSA’s programmes remain, innovative, industry-relevant, and internationally recognised. An accomplished academic specialising in polymer nanotechnology, polymer nanocomposites, and graphene technology, he has published extensively and contributed to numerous research and innovation initiatives. Internationally, he was awarded the Mevlana Scholarship by the Government of Türkiye as a Visiting Scholar at Karabük University and currently serves as a Visiting Professor at Hebei University, China, reflecting his commitment to advancing international academic collaboration
报告摘要:
石墨烯因其优异的电学、热学、力学和表面特性,已成为最具多功能性的二维纳米材料之一。然而,将这些本征特性转化为实用的先进材料,仍然在很大程度上取决于合成路线、结构质量、表面化学性质以及石墨烯与周围基体之间的相互作用。本次报告将讨论石墨烯合成的最新进展,重点聚焦于可规模化且可持续的方法、缺陷与表面工程,以及在聚合物基体中控制石墨烯分散性和界面相互作用的策略。基于聚合物纳米技术的进步,报告还将阐述如何通过对石墨烯及石墨烯衍生纳米材料进行工程设计,开发出具有增强介电、电学、力学和热学性能的多功能聚合物纳米复合材料。特别关注结构—加工—性能关系、界面工程,以及人工智能在材料设计与性能预测中的新兴应用。报告最后将探讨石墨烯基聚合物纳米复合材料在先进电子器件、能源存储与转换、柔性设备、传感器及可持续材料领域的未来机遇。
Graphene has emerged as one of the most versatile two-dimensional nanomaterials due to its exceptional electrical, thermal, mechanical and surface properties. However, translating these intrinsic properties into practical advanced materials remains strongly dependent on the synthesis route, structural quality, surface chemistry and interaction of graphene with the surrounding matrix. This presentation discusses recent developments in graphene synthesis, with particular emphasis on scalable and sustainable approaches, defect and surface engineering, and strategies for controlling graphene dispersion and interfacial interactions in polymer matrices. Building on advances in polymer nanotechnology, the talk will highlight how graphene and graphene-derived nanomaterials can be engineered to develop multifunctional polymer nanocomposites with enhanced dielectric, electrical, mechanical and thermal properties. Particular attention will be given to the structure–processing–property relationship, interfacial engineering and the emerging use of artificial intelligence for materials design and property prediction. The presentation will conclude by discussing future opportunities for graphene-based polymer nanocomposites in advanced electronics, energy storage and conversion, flexible devices, sensors and sustainable materials.




