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清華大學材料科學與工程研究院《材料科學論壇》學術報告:Oxygen Vacancy in Energy Conversion and Storage Devices – a Defect or a Beauty?

清華大學材料科學與工程研究院《材料科學論壇》

學術報告

報告題目:Oxygen Vacancy in Energy Conversion and Storage Devices – a Defect or a Beauty?

報告人:Shanqing Zhang
(Centre for Clean Environment and Energy, School of Environment and Science, Gold Coast Campus, Griffith University)

報告時間:2019年1月3日(周四)上午10:00

報告地點:清華大學逸夫科學技術樓A205學術報告廳

聯系人:林紅老師 62772672

歡迎廣大師生踴躍參加!

報告摘要:
Oxygen vacancy (OV) can be considered as a defect when the number of oxygen atoms expected in a compound is less (or missing) than what it should be in its perfect crystal lattice, it is known as In this talk, OV in titania and lithium titanate nanomaterials achieved via numerous ways (hydrogenation, cold quenching and chemical reduction) is characterized and applied for photocatalysis and lithium ion battery applications. The preliminary results suggest that the OV could bring about significant enhancement in energy conversion efficiency and energy storage capability and stability.

References
1.Chen, H., Ling, M., Hencz, L., Ling, H. Y., Li, G., Lin, Z., & Zhang, S. (2018). Chemical Reviews. 2018 118 (18), 8936-8982.
2.D. Adekoya, X Gu, M. Rudge, W. Wen, C Lai, M Hankel, & S. Zhang, Advanced Functional Materials, 2018, DOI: 10.1002/adfm.201803972.
3.Qiu J., Li S., Gray E., Liu H., Gu Q., Sun C., Lai C., Zhao H., Zhang S., J. Phys. Chem. C., 2014, 118, 8824−8830


個人介紹:
Prof. Shanqing Zhang obtained his PhD degree in electrochemistry in 2001 at Griffith University, Australia. Since then, he has worked as a research fellow during 2001–2006, senior research fellow during 2007–2009 and associate professor at Centre for Clean Environment and Energy and Griffith School of Environment, Griffith University during 2010-2015.  As a core inventor, Dr. Zhang has developed a series of patented and commercialized technologies for environmental monitoring based on functional nanomaterials. He was awarded Australia Research Council Future Fellow for 2009-2013. Currently, Prof. Zhang is mainly engaged in the research on synthesis of functional nanomaterials and modification of environmentally friendly natural polymers for energy conversion and storage devices, as well as the development of intelligent online and/or onsite sensors for environmental monitoring. He has published ca. 150 reputable papers and delivered numerous Keynotes and invited lectures.


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