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UID:DSC-19276
DTSTART;TZID=Europe/Berlin:20221117T130000
SEQUENCE:1668414471
TRANSP:OPAQUE
DTEND;TZID=Europe/Berlin:20221117T140000
URL:https://dresden-science-calendar.org/calendar/en/detail/19276
LOCATION:Online\,   
SUMMARY:Gogotsi: 2D Carbides\, Nitrides\, Oxycarbides\, and Carbonitrides (
 MXenes) Expand the Nanomaterials World
CLASS:PUBLIC
DESCRIPTION:Speaker: Prof. Yury Gogotsi\nInstitute of Speaker: A.J. Drexel 
 Nanomaterials Institute\, and Department of Materials Science and Engineer
 ing\,  Drexel University\, Philadelphia\, PA 19104\, USA\nTopics:\nChemie\
 , Ausgründung/Transfer\n Location:\n  Name: Online (https://tinyurl.com/n
 anoSeminar-GA)\n  Street:  \n  City:  \n  Phone: \n  Fax: \nDescription: A
 bstract: Discovery of new materials provides moments of inspiration and sh
 ifts in understanding\, shaping the dynamic field of materials science. Cl
 osed-shell dichalcogenide structures discovered and explored by Reshef Ten
 ne increased the variety and complexity of the nanomaterials family. Follo
 ing the discovery of 2D Ti3C2 in 2011\, 2D carbides\, oxycarbides\, carbon
 itrdes and nitrides of transition metals known as MXenes [1] have further 
 expanded the nanomaterials family. More than 30 different stoichiometric c
 arbide and nitride MXenes have been reported\, and the structure and prope
 rties of numerous other MXenes have been predicted. Moreover\, the availab
 ility of solid solutions on M and X sites\, multi-element high-entropy MXe
 nes\, control of surface terminations\, and the discovery of out-of-plane 
 ordered double-M o-MXenes (e.g.\, Mo2TiC2)\, as well as in-plane ordered i
 -MXenes offer a potential for producing dozens of new distinct structures.
  This presentation will describe the state of the art in the manufacturing
  of MXenes\, their delamination into single-layer 2D flakes and assembly i
 nto films\, fibers and 3D structures. Synthesis-structure-properties relat
 ions of MXenes will be addressed on the example of Ti3C2. The versatile ch
 emistry of the MXene family renders their properties tunable for a large v
 ariety of applications.   1. R. Tenne\, L. Margulis\, M. Genut. G. Hodes\,
  Polyhedral and Cylindrical Structures of Tungsten Disulfide\, Nature\, 36
 0\, 444-446 (1992)  2. A. VahidMohammadi\, J. Rosen\, Y. Gogotsi\, The Wor
 ld of Two-Dimensional Carbides and Nitrides (MXenes)\, Science\, 372\, eab
 f1581 (2021)  <BR><BR>     Brief CV: Yury Gogotsi is Distinguished Univers
 ity Professor and Charles T. and Ruth M. Bach Professor of Materials Scien
 ce and Engineering at Drexel University. He also serves as Director of the
  A.J. Drexel Nanomaterials Institute. For his research on development of c
 arbide-derived carbons with tunable porosity\, discovery of new carbon nan
 ostructures\, visualization of liquids in carbon nanotubes\, discovery of 
 MXenes and development of materials for electrochemical capacitors\, he is
  recognized as Highly Cited Researcher in Materials Science and Chemistry\
 , and Citations Laureate in Physics by Clarivate Analytics. He has receive
 d numerous awards for his research including the MRS Medal\, ACS Award in 
 the Chemistry of Materials\, Gamow Prize\, European Carbon Association Awa
 rd\, and S. Somiya Award from IUMRS. He has been elected a Fellow of the W
 orld Academy of Ceramics\, the European Academy of Sciences\, American Ass
 ociation for Advancement of Science\, Materials Research Society\, America
 n Ceramic Society\, the Electrochemical Society\, Royal Society of Chemist
 ry\, and the International Society of Electrochemistry. He holds honorary 
 doctorates from Universities in France and Ukraine.  
DTSTAMP:20260413T223231Z
CREATED:20221113T191413Z
LAST-MODIFIED:20221114T082751Z
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