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能源学院学术报告:Multifunctional materials for solar techn

日期: 2016-12-08     阅读次数:364

报告题目:Multifunctional materials for solar technologies

时间:129号上午10

地点:物理科技楼101

报告人: Federico Rosei院士

报告人单位:UNESCO Chair in Materials and Technologies for Energy Conversion, Saving and Storage Centre for Energy, Materials and Telecommunications, INRS, 1650 Boul. Lionel Boulet, J3X 1S2 Varennes (QC), Canada

 

报告人简介:Federico Rosei教授,是加拿大皇家科学院院士、加拿大工程院院士、欧洲科学院院士,任加拿大国立科学研究院(能源、材料和信)院,同担任合国教科文组织能源化、节约及存与技方向主席。主要研究方向是功能性米材料和体系的性能控制和用,尤其是在原子和分子面上以观结构基元来建构新型能源材料Rosei教授已在包ScienceNatureNature子刊、JACSAdv. Mat.PNASAngew. Chem. Int. Ed.等高档期刊200多篇,在近20个国术组织50余次担任国主席或召集得了大量国知名奖项和荣誉

 

摘要:As the age of fossil fuels is coming to an end, now more than ever there is the need for more efficient and sustainable renewable energy technologies. This presentation will give an overview on recent developments in solar technologies that may address, in part the energy challenge. In particular, nanostructured materials synthesized via the bottom–up approach present an opportunity for future generation low cost manufacturing of devices [1]. We demonstrate various strategies to control nanostructure assembly, to design and synthesize functional materials that will help address the energy challenge. We study, in particular, multifunctional materials, namely materials that exhibit more than one functionality, and structure/property relationships in such systems, including for example: (i) control of size and luminescence properties of semiconductor nanostructures, synthesized by reactive laser ablation; (ii) we devised new strategies for synthesizing multifunctional nanoscale materials to be used for applications electronics and photovoltaics.



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