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【16th.June】New Boundaries of Sustainable Batteries by Carbon-Based Materials

2017-06-14


TOPIC:New Boundaries of Sustainable Batteries by Carbon-Based Materials
SPEAKER:Prof  Xiulei (David) Ji,  Department of Chemistry, Oregon State University
TIME:June 16 (Friday)10:00am
LOCATION:Room 528, Chemistry A Building(化学A楼 528演讲厅)
INVITER:A.Prof. Xiao Wei(魏霄 副教授)
 

报告人简介
Xiulei (David) Ji, Associate Professor
Department of Chemistry, Oregon State University
e-mail: david.ji@oregonstate.edu
http://jigroup.chem.oregonstate.edu

Research interest centers on the investigation of ion storage chemistry in solids, often employing carbon-based materials as model structures, for the purposes of sustainable energy storage.
•Design and development of batteries include hydronium-ion batteries, potassium-ion batteries, dual-ion batteries, and sodium-ion batteries
•Design and Synthesis of non-graphitic carbons, hydrocarbon molecular solids, and Prussian blue analogues for electrode materials
•Design of new device configurations on the basis of electrochemistry and materials chemistry for advanced propertiesEDUCATIONSupervisor: Professor Linda F. NazarSupervisor: Professor Linda F. NazarSupervisor: Professor Bai YangPROFESSIONAL EXPERIENCE2010 – 2012 NSERC Postdoctoral Fellow, University of California, Santa Barbara2009 – 2010 Postdoctoral Fellow, University of Waterloo • Scialog Fellow, Research Corporation for Science Advancement• Innovation Challenge Award, Natural Sciences and Engineering Research Council of Canada (2010)• Government Award for Outstanding Self-Financed Students Abroad (2009)
• 
•• Postdoctoral Fellowship, Natural Sciences and Engineering Research Council of Canada (2010-2012)
•• CAREER Award, National Science Foundation (2016)
•AWARDS AND HONORS
•Supervisor: Professor Linda F. Nazar
•Supervisor: Professor Galen D. Stucky
•2012 – Assistant Professor, Department of Chemistry, Oregon State University
• 
•1999 – 2003 B. Sc. in Chemistry, Jilin University
•2004 − 2006 M. Sc. in Materials Chemistry, University of Waterloo
•2006 − 2009 Ph. D. in Materials Chemistry, University of Waterloo
• 


PUBLICATIONS
1.Tan, G., Xu, R. Xing. Z., Yuan, Y., Lu*, J., Wen, J., Liu, C., Ma, L., Zhan, C., Liu, Q., Wu, T., Jian, Z., Shahbazian-Yassar, R., Yang, R., Miller, D. J., Curtiss, L. A., Ji*, X., Amine*, K., “Burning” Lithium in CS2: Compact Li2S@Graphene Nanocapsules for Li-S Batteries  Nature Energy accepted. 
2.Li, Z., Bommier, C., Chong, Z. S., Jian, Z., Surta T. W., Wang, X., Xing, Z., Neuefeind, J. C., Stickled, W. F., Dolgos*, M., Greaney*, P. A., and Ji*, X., Mechanism of Na-Ion Storage in Hard Carbon Anodes Revealed by Heteroatom Doping                      Advanced Energy Materials (2017) http://onlinelibrary.wiley.com/doi/10.1002/aenm.201602894/abstract
3.Jian, Z., Bommier, C., Xing, Z., Li, Z., Wang*, C., Greaney*, P. A., Ji*, X. 
4.Insights on the Mechanism of Na-Ion Storage in Soft Carbon


Chemistry of Materials (2017) in press. http://pubs.acs.org/doi/abs/10.1021/acs.chemmater.6b05474
1.Wang, X., Bommier, C., Jian, Z., Li, Z., Chandrabose, R. S., Rodríguez Pérez, I., Ji*, X. Hydronium-Ion Batteries with Perylenetetracarboxylic Dianhydride Crystals as an Electrode Angew. Chem. Int. Ed. (2017) in press http://onlinelibrary.wiley.com/doi/10.1002/anie.201700148/epdf
2.Rodríguez-Perez, I. A. Jian, Z., Waldenmaier, P. K., Palmisano, J. W., Chandrabose, R. S., Wang, X., Lerner, M. M., Carter*, R. G., and Ji*, X. ACS Energy Letters 1, (2016):719-723 doi: 10.1021/acsenergylett.6b00300
3.A Hydrocarbon Cathode for Dual-Ion Batteries
4.Wang, X., Chandrabose, R. S., Jian, Z., Xing, Z., Ji*, X. A 1.8 V Aqueous Supercapacitor with a Bipolar Assembly of Ion-Exchange Membranes as the Separator
5.Journal of the Electrochemical Society 163, (2016): A1853-A1858. doi: 10.1149/2.0311609jes
6.Jian, Z., Xing, Z., Bommier, C., Li, Z., Ji*, X. Advanced Energy Materials 6, no. 3, (2015): 1501874 doi: 10.1002/aenm.201501874
7.Hard Carbon Micro-Spheres: Potassium-Ion Anode Versus Sodium-Ion Anode
8.Jian, Z., Luo, W., Ji*, X. Carbon Electrodes for K-ion Batteries
9.Journal of the American Chemical Society 137, no.36, (2015): 11566–11569,           doi: 10.1021/jacs.5b06809





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