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Paris climate agreement sets as a target achieving net-negative global emissions by year 2070. This will require tremendous effort not only on transitioning all electricity generation and transportation to renewables but also developing efficient ways to capture and store the carbon dioxide. Intermittency of renewable solar and wind impedes their adoption and requires low-cost and scalable energy storage solutions.
Our group works on developing new materials for Li-ion batteries, hydrogen storage, CO2 capture, and photovoltaics. We utilize atomistic simulations, machine learning, automated high-throughput materials synthesis and characterization to demonstrate proof-of-principle devices that will speed-up the transition to renewables.
Our group works on developing new materials for Li-ion batteries, hydrogen storage, CO2 capture, and photovoltaics. We utilize atomistic simulations, machine learning, automated high-throughput materials synthesis and characterization to demonstrate proof-of-principle devices that will speed-up the transition to renewables.
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论文共 267 篇作者统计合作学者相似作者
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COMPUTATIONAL MATERIALS SCIENCE (2024): 112580-112580
Huaiyu Xu,Jiaojiao Song, Penghao Zhou,Yang Song,Jian Xu,Huaibin Shen, Shucheng Fang, Yan Gao, Zhenjiang Zuo,João M. Pina,Oleksandr Voznyy,Chunming Yang,
ANGEWANDTE CHEMIE-INTERNATIONAL EDITIONno. 8 (2024): e202316733-e202316733
ACS applied materials & interfacesno. 12 (2024): 14669-14679
Geordon A Frere,Advait Hasabnis,Camila B Francisco, Motasem Suleiman, Olga Alimowska, Rima Rahmatullah, Jerome Gould, Celia Yi-Chia Su,Oleksandr Voznyy,Patrick T Gunning,Ernani A Basso, Robert S Prosser
Journal of the American Chemical Societyno. 5 (2024): 3052-3064
CELL REPORTS PHYSICAL SCIENCEno. 8 (2023)
Meeting abstractsno. 45 (2023): 2471-2471
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