在全球著力應對氣候變化和能源危機的大背景下,實現向以再生能源為主的能源轉型升級,是解決傳統能源問題的關鍵,也是塑造未來低碳經濟競爭力的核心舉措。突破傳統能源限制、加速可再生能源的轉型、發展新型可再生能源類型和技術成為全球科學研究的重要任務之一。
一、會議主席
二、會議時間
2023年02月15日(星期三)上午09:00-11:00
掃一掃預約觀看直播
三、主持及報告嘉賓
主持嘉賓:
蘇 東 研究員 Renewables主編/中國科學院物理研究所
鞏金龍 教 授 Renewables副主編/天津大學
報告嘉賓:
Federico Rosei 院 士 加拿大國立科學研究院
汪淏田 教 授 萊斯大學
四、會議日程
五、嘉賓介紹
Federico Rosei 院士
加拿大國立科學研究院
報告題目
Multifunctional Materials for Emerging Technologies
報告簡介
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 bottom–up 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
萊斯大學
報告題目
Electrochemical Approaches to Decarbonizing Fuels and Chemicals
報告簡介
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.
聲明:化學加刊發或者轉載此文只是出于傳遞、分享更多信息之目的,并不意味認同其觀點或證實其描述。若有來源標注錯誤或侵犯了您的合法權益,請作者持權屬證明與本網聯系,我們將及時更正、刪除,謝謝。 電話:18676881059,郵箱:gongjian@huaxuejia.cn