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清華大學材料科學與工程研究院《材料科學論壇》學術報告:Empa: Thin Film Technologies for a Sustainable Future

清華大學材料科學與工程研究院《材料科學論壇》學術報告

報告題目:Empa: Thin Film Technologies for a Sustainable Future

報告人: Evgeniia P. Gilshtein博士(瑞士聯邦材料研究所EMPA)

報告時間:2019年10月2日(周三) 15:00

報告地點:清華大學逸夫技術科學樓A205學術報告廳

聯系人:伍晖老師 62792396

歡迎廣大師生踴躍參加!

Abstract

As the leading Swiss R&D institution in the field of nanostructured materials and a part of the ETH Domain its interfaces and coatings, Empa drive the application-oriented exploitation of nanoscale effects and materials in collaborative projects. During this talk, you will learn about current activities and projects of Empa, its departments and research capabilities. In addition, you will get an introduction to the activities of Empa's leading Laboratory for Thin Films and Photovoltaics, which is covering different research areas. The Laboratory for Thin Films and Photovoltaics is doing research and development on not only highly efficient thin film solar cells, but also broadening its research activities to the advanced thin-films battery technologies, high-performance functional coatings, materials and components for printed electronics.

 

Biography

Evgeniia P. Gilshtein received her Bachelor degree in Technical physics from the St. Petersburg State Polytechnical University, and her master degree in Electronics and Nanoelectronics from St. Petersburg Academic University RAS and Ioffe Physical Technical Institute RAS, St. Petersburg, Russia. She joined Skolkovo Institute of Science and Technology, Moscow in 2014 as a PhD student of Nanomaterials Lab and defended her PhD thesis in October 2018 under Material Science and Engineering Program. After the defense, she moved to Switzerland, Zurich, and joined Laboratory for Thin Films and Photovoltaics at Empa, Swiss Federal Laboratories for Materials Science and Technology as a Postdoctoral researcher. Her research interests include the study of high-performance functional materials, their applications for the creation of novel energy harvesting and storage devices, as well as for conductive, flexible coatings.

 

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