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明日直播 | Renewables创刊号发布会

明日直播 | Renewables创刊号发布会 邃瞳科学云
2023-02-14
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导读:为促进可再生能源领域的学术交流、展示全球可再生能源领域的前沿成果和最新技术,华南师范大学和中国化学会联合创办的面向新能源领域的高水平国际期刊Renewables(中文名称《可再生能源(英文)》)即将与

在全球着力应对气候变化和能源危机的大背景下,实现向以再生能源为主的能源转型升级,是解决传统能源问题的关键,也是塑造未来低碳经济竞争力的核心举措。突破传统能源限制、加速可再生能源的转型、发展新型可再生能源类型和技术成为全球科学研究的重要任务之一。
为促进可再生能源领域的学术交流、展示全球可再生能源领域的前沿成果和最新技术,推动可再生能源科学的研究和应用,华南师范大学中国化学会联合创办面向新能源领域的高水平国际期刊Renewables(中文名称《可再生能源(英文)》)即将与大家见面!
依托中国化学会期刊平台(CCS Publishing),Renewables将聚焦能源、化学、材料等交叉学科的高水平研究和成果,目标是成为报道新能源领域基础研究和应用研究的国际前沿期刊,以期为可再生能源的发展和应用提供有效的思路和解决方案。期刊由加拿大滑铁卢大学陈忠伟院士、中科院物理所苏东研究员担任主编,已入选中国科技期刊卓越行动计划高起点新刊。
自期刊筹备和创办以来,受到了国内外的广泛关注和支持。首期创刊号于20232月正式发布!
为庆祝Renewables创刊,中国化学会和华南师范大学特于02月15日(星期三)上午线上举行隆重的发布仪式,欢迎大家届时观看!



一、会议主席

陈忠伟         Renewables主编/滑铁卢大学
苏   东  研究员    Renewables主编/中国科学院物理研究所


二、会议时间

2023年02月15日(星期三)上午09:00-11:00


三、主持及报告嘉宾

主持嘉宾: 

苏    东   研究员     Renewables主编/中国科学院物理研究所

巩金龙    教   授     Renewables副主编/天津大学


报告嘉宾:

Federico Rosei   院  士    加拿大国立科学研究院

汪淏田                教  授    莱斯大学


四、会议日程




五、预约直播




六、嘉宾介绍

Federico Rosei  院士

加拿大国立科学研究院

Federico Rosei (MSc (1996) and PhD (2001) from the University of Rome “La Sapienza”) is Full Professor at the Centre Énergie, Matériaux et Télécommunications, Institut National de la Recherche Scientifique, Varennes (QC) Canada, where he served as Director (07/2011–03/2019). He held the Canada Research Chair (Junior) in Nanostructured Organic and Inorganic Materials (2003–2013) and since May 2016 he holds the Canada Research Chair (Senior) in Nanostructured Materials. Since January 2014 he holds the UNESCO Chair in Materials and Technologies for Energy Conversion, Saving and Storage.

Dr. Rosei’s research interests focus on structure/property relationships in nanomaterials and their use as building blocks in emerging technologies. His research has been supported by multiple funding sources from the Province of Quebec, the Federal Government of Canada as well as international agencies, for a total in excess of M$ 18. He has worked in partnership with over twenty Canadian R&D companies. He is co-inventor of three patents and has published over 445 articles in prestigious international journals (including Science, Nature Phot., Nature Mater., Nature Chem., Proc. Nat. Acad. Sci., Adv. Mater., Angew. Chem., J. Am. Chem. Soc., Adv. Func. Mater., Adv. En. Mat., ACS Nano, Biomaterials, etc.), which have been cited over 21,800 times (H index = 77). He has been invited to speak at over 345 international conferences and has given over 260 seminars and colloquia, over 60 professional development lectures and 45 public lectures in 51 countries on all inhabited continents.

报告题目

Multifunctional Materials for Emerging Technologies

报告简介

This presentation focuses on structure property/relationships in advanced materials, emphasizing multifunctional systems that exhibit multiple functionalities. Such systems are then used as building blocks for the fabrication of various emerging technologies. In particular, nanostructured materials synthesized via the bottomup approach present an opportunity for future generation low cost manufacturing of devices. We focus in particular on recent developments in solar technologies that aim to address the energy challenge, including third generation photovoltaics, solar hydrogen production, luminescent solar concentrators and other optoelectronic devices.

汪淏田  教授

莱斯大学
Dr. Haotian Wang is currently a William Marsh Rice Trustee Chair Assistant Professor in the Department of Chemical and Biomolecular Engineering at Rice University. He obtained his PhD degree in the Department of Applied Physics at Stanford University in 2016 and his Bachelor of Science in Physics at the University of Science and Technology of China in 2011. In 2016 he received the Rowland Fellowship and began his independent research career at Harvard as a principal investigator. He was awarded the 2021 Sloan Fellow, 2020 Packard Fellow, 2019 CIFAR Azrieli Global Scholar, 2019 Forbes 30 Under 30, highly cited researchers, etc. He serves as the editorial board of Communications Materials. His research group has been focused on developing novel nanomaterials for energy and environmental applications including energy storage, chemical/fuel generation, and water treatment.
报告题目
Electrochemical Approaches to Decarbonizing Fuels and Chemicals
报告简介
Electrochemical conversion of atmospheric molecules (CO2, O2, H2O, N2) into fuels and chemicals represents a green and alternative route compared to traditional manufacturing approaches. However, its practice is currently challenged at two systematic levels: the lack of active, selective, and stable electrocatalysts for efficient and reliable chemical bond transformations, and the lack of novel catalytic reactors for practical reaction rates and efficient product separation. In this talk, using CO2 reduction to gas and liquid products and O2 reduction to hydrogen peroxide as representative reactions, I will introduce the rational design of both catalytic materials and reactors towards practical electrochemical manufacturing of fuels and chemicals.


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邃瞳科学云 邃瞳科学云是一个百家争鸣的个性化学术传播平台。依托新媒体矩阵,小程序及APP等完整产品线,在开展专业性的学术活动的同时,还致力于科普教育和科学传播,更自由、重分享。 格物致知,光被遐荒。Meet Your Science!
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