NANO Research Energy hosting editorial board
Author:Tsinghua University Press Time:2022.08.02
At 9 o'clock Beijing time on July 29, 2022, Nano Research Energy successfully held the first online editor -in -chief exchange meeting. Participants include more than 50 first -line outstanding scientific researchers and professors from the world. The conference includes three links: opening speech, academic report, and free communication, laying a solid foundation for the booming development of Nano Research Energy in the future.
At the beginning of the meeting, the editor -in -chief of Nano Research Energy and Professor Qu Liangto of Tsinghua University published the opening remarks. He welcomed the editor -in -chief to join the NANO Research Energy to jointly build an excellent domestic journal and strive to achieve the goal of international first -class nano energy journals. Immediately afterwards, the deputy editor -in -chief of NANO Research Energy and Mr. Lin Zhiqun, the National University of Singapore, delivered a speech. It affirmed the first -line force of the young editorial committee as the leading scientific research. Growth more suggestions to promote the high -speed development of Nano Research Energy.
During the meeting, the representative editorial board carefully prepared the work introduction to everyone to share the most cutting -edge research results.
Researcher Pei Zengxia at the University of Sydney reported the research on "Design of Electrolytes for Flexible Zinc Benoic Energy Storage Device", introduced the research team in the water system battery (such as zinc -empty battery, zinc ion battery), gel polymer electrolyte (such as functional water Gel), electrical catalytic (OR/OER, etc.), and the latest achievements in research directions such as capacitor materials.
Professor Pang Huan of Yangzhou University shared an academic report entitled "Nano MOF and its derivatives". The research group introduced the design of electrochemical nanomaterials, especially the energy chemistry research based on the framework of the matches. Professor Pang Huan's research group is proceeded by the synthesis method of crystal sculpture. Through the introduction of surface active agents, ultrasonic stripping, water and heat synthesis and other methods, various common cooperative framework micro -nano materials or complexes and derivatives can be used. The shape size, porous, electrical, and stability of the material are adjusted, so that it has good electrochemical applications.
Professor Shuijianglan University of Beijing University of Aeronautics and Astronautics demonstrated the relevant research on "hydrogen energy storage and conversion", introduced the latest results of the two topics of high-capacity new room temperature hydrogen storage materials and high-performance Fe-N-C non-platinum oxygen reducing catalysts. Professor Shuijianglan proposed a hydrogen-absorbing control strategy for the coordinated domain effect/polarization effect, developed a high-capacity MXENE base room temperature hydrogen storage material, and developed a multi-scale optimization strategy of FE-N-C non-platinum oxygen reduction catalysts to obtain to obtain FE-N-C catalysts with high device activity and good stability.
Professor Liu Xijun of Guangxi University reported the recent five -year research results of "Nanomi Material Design and its electrocatalyst carbon oxide conversion". Further identify their active sites and study catalyst mechanisms to achieve the purpose of developing high -activity, high stability and low -cost catalysts.
Professor Zhang Jintao of Shandong University brought the latest research progress of "metal-iodine battery interface regulation and performance optimization". Through accurate design electrode models and in-depth awareness of the reaction mechanism, through the regulating electrode surface interface structure and composition, such as doping and spatial restrictions, optimizing the electrochemical properties of metal-iodine batteries, based on the surface structure and nature Regulatory control has effectively improved the cyclicness of metal electrodes.
Professor Chen Wei of China University of Science and Technology introduced the latest research on the latest related concepts of "secondary battery of hydrogen systems". The hydrogen battery is a rechargeable battery with a hydrogen oxidation and reduction reaction as an electrode. It has the advantages of low cost, low potential, fast reaction dynamics, large capacity, good circulation stability, and safety. It is a very promising energy conversion of energy conversion Way. Professor Chen Wei focused on the work of representatives in recent years, including high-stability-H2-H2 batteries, ultra-fast charging discharge and ultra-low temperature H2-H+conversion batteries, new types of electrocatalyst hydrogen capacitors.
During the free exchange session, the deputy editor -in -chief of NANO Research Energy and Professor Sun Xuping of Electronic Science and Technology of China introduced the study and work experience. And encouragement. The meeting enhanced the understanding and exchanges between scholars. The atmosphere of the exchange was active, the editorial committees have made suggestions, discussed the development path of the journal, and put forward their own opinions for the development of Nano Research Energy.
In the end, the editor -in -chief of Nano Research Energy and Professor Zhichunyi, the City University of Hong Kong, summarized their speeches, hoping that the editorial committees can grow together to achieve excellent academics and witness the rapid development of Nano Research Energy.
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