科学研究

法国索邦大学教授Maguy Jaber学术报告
发布:科技处 2026-08-04 阅读:215


应我校材料科学与工程学院廖立兵教授、吕国诚教授邀请,法国索邦大学教授Maguy Jaber 及法国SYNERGIE4 SAS公司Fabrice Gaslain来我校进行学术交流,并做学术报告。


时间:2026年8月6日(星期四)上午9:00 –11:00

地点:测试楼303


报告题目:Ancient Recipes, Modern Materials: Bridging Heritage and Innovation

报告人简介:    

Maguy Jaber博士,法国索邦大学资深教授,法国科学研究中心LAMS实验室主任。兼任欧洲黏土学会主席、Applied Clay Science编委,曾任法国黏土学会主席,入选法国大学科学院。长期从事黏土矿物及其交叉领域研究,在黏土矿物表界面反应、文化遗产材料保护、生命起源、环境治理、矿物-有机分子相互作用及功能材料设计等领域取得系列成果,在Sci. Adv., Angew. Chem. Int. Ed., Appl. Clay Sci.等期刊发表高水平论文130余篇,出版1部无机化学教材,并在Elsevier、Springer、Wiley等出版社出版的著作中撰写多个章节。

讲座内容:

Mineral-water-organic interactions are fundamental from prebiotic chemistry to ancient empirical recipes. Clay minerals, with reactive surfaces, serve as a bridge. This talk addresses three key questions: How do organic molecules bind to mineral surfaces? How do processing conditions control structure, rheology, and stability? And how can understanding these interfaces inspire new materials? Using selected clay–organic examples, we show that revisiting ancient know-how and fundamental surface chemistry offers a pathway to innovative hybrids for conservation, cosmetics, construction, and drilling fluids.


报告题目:Turning impossible EDS analyses into accessible solutions

报告人简介:    

Fabrice Gaslain博士,法国扫描电镜与微区分析领域资深专家,长期从事SEM、FIB-SEM及EDS、WDS、EBSD等微区分析技术应用研究。现任法国SYNERGIE4 SAS公司技术总监,负责BRUKER微区分析系统、KLEINDIEK原位系统及TECHNOORG LINDA离子抛光/减薄系统在欧洲主要地区的技术支持工作。曾任法国国家科学研究中心/巴黎高等矿业学院高级研究工程师,负责材料表征平台建设与管理,在Chem. Commun., J. Mater. Chem. A, J. Phys. Chem. Lett.等学术期刊上发表高水平论文60余篇,并参与撰写了多部微观分析技术领域的专业著作章节。

讲座内容:         

EDS analysis of challenging samples-beam-sensitive materials, biological sections, semiconductors, batteries, FIB/TEM lamellae, nanoparticles, and topographic/charging specimens-is often hindered by conventional large-area detectors. Their inclined geometry produces noisy maps. An annular detector with ring-shaped SDD and high take-off angle maximizes signal collection efficiency, delivering sensitivity even at low (<3 kV) or high (>15 kV) voltages and ultra-low probe currents (<50 pA)—conditions essential yet impossible with inclined detectors. This thereby makes analysis routine and reliable.


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