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个人简介
Ifan’s research aims to enable the large-scale electrochemical conversion of renewable energy to fuels and valuable chemicals and vice versa. Such processes will be critical in order to allow the increased uptake of renewable energy.
His focus is on the catalyst at the electrode, i.e. the electrocatalyst. It turns out that the electrocatalyst material defines the efficiency of several important electrochemical processes, including:
(i) electrolysis for the storage of renewable electricity — which is inherently intermittent — in the form of fuels, such as hydrogen or alcohols.
(ii) fuel cells as a potentially zero emission source of power for automotive vehicles.
(iii) the green synthesis of valuable chemicals, such as H2O2.
(iv) batteries, which tend to degrade by gas evolution at the electrode-electrolyte interface. Hence the reactions that need to be accelerated in electrolysers and fuel cells — such as CO2, CO, O2 and H2 evolution — are precisely those that need to be inhibited in batteries.
Ifan has discovered or co-discovered several new catalysts for the oxygen reduction reaction, which exhibited significant improvements in performance over the prior state-of-the-art (see Selected Publications). In particular, his research on hydrogen peroxide production led to the establishment of the spinout company, HP Now www.hpnow.dk.
His focus is on the catalyst at the electrode, i.e. the electrocatalyst. It turns out that the electrocatalyst material defines the efficiency of several important electrochemical processes, including:
(i) electrolysis for the storage of renewable electricity — which is inherently intermittent — in the form of fuels, such as hydrogen or alcohols.
(ii) fuel cells as a potentially zero emission source of power for automotive vehicles.
(iii) the green synthesis of valuable chemicals, such as H2O2.
(iv) batteries, which tend to degrade by gas evolution at the electrode-electrolyte interface. Hence the reactions that need to be accelerated in electrolysers and fuel cells — such as CO2, CO, O2 and H2 evolution — are precisely those that need to be inhibited in batteries.
Ifan has discovered or co-discovered several new catalysts for the oxygen reduction reaction, which exhibited significant improvements in performance over the prior state-of-the-art (see Selected Publications). In particular, his research on hydrogen peroxide production led to the establishment of the spinout company, HP Now www.hpnow.dk.
研究兴趣
论文共 77 篇作者统计合作学者相似作者
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M Rosa Palacin,Patrik Johansson,Robert Dominko,Ben Dlugatch,Doron Aurbach,Zhenyou Li,Maximilian Fichtner,Olivera Lužanin,Jan Bitenc,Zhixuan Wei,Clarissa Glaser,Jürgen Janek,Ana Fernández-Barquín,Aroa R Mainar,Olatz Leonet,Idoia Urdampilleta,J Alberto Blázquez,Deyana S Tchitchekova,Alexandre Ponrouch,Pieremanuele Canepa,Gopalakrishnan Sai Gautam, Raúl San Román Gallego Casilda,Cynthia S Martinez-Cisneros, Nieves Ureña Torres,Alejandro Varez,Jean-Yves Sanchez,Kostiantyn V Kravchyk,Maksym V Kovalenko,Anastasia A Teck,Huw Shiel,Ifan E L Stephens,Mary P Ryan,Eugen Zemlyanushin,Sonia Dsoke,Rebecca Grieco,Nagaraj Patil,Rebeca Marcilla,Xuan Gao,Claire J Carmalt,Guanjie He,Maria-Magdalena Titirici
Journal of Physics: Energyno. 3 (2024): 031501
JOURNAL OF THE AMERICAN CHEMICAL SOCIETYno. 13 (2024): 8928-8938
Meeting abstracts/Meeting abstracts (Electrochemical Society CD-ROM)no. 47 (2023): 2513-2513
HAL (Le Centre pour la Communication Scientifique Directe) (2023)
JOURNAL OF MATERIALS CHEMISTRY Ano. 43 (2023): 23211-23222
Advanced Functional Materials (2023)
Johnson Matthey Technology Review (2023)
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作者统计
#Papers: 77
#Citation: 8802
H-Index: 34
G-Index: 77
Sociability: 6
Diversity: 0
Activity: 1
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