Symposium CG
Progress in Nano-laminated Ternary Carbides, Nitrides and Borides (MAX/MAB) Phases and Derivatives Thereof (MXenes)

Convener:
Michel W. BARSOUM, Drexel University, USA

Members:
Thierry CABIOC’H, University of Poitiers, France
Michael FARLE, University of Duisburg-Essen, Germany
Qing HUANG, Ningbo Inst.of Materials Technology & Engineering, China
Konstantza LAMBRINOU, SCK-CEN, Belgium
Shibo LI, Beijing Jiaotong University, China
Vincent MAUCHAMP, University of Poitiers, France
Michael NAGUIB, ORNL, USA
Thierry OUISSE, Grenoble INP, France
Milan RADOVIC, Texas A&M University, USA
Johanna ROSEN, Linkoping University, Sweden
Jochen M. SCHNEIDER, RWTH Aachen University, Germany
Jingyang WANG, Shenyang National Lab. for Materials Science, China
 
Babak ANASORI, Drexel University, USA
Michel W. BARSOUM, Drexel University, USA
Thierry CABIOC'H, University of Poitiers, France
Elad CASPI, Nuclear Research Centre - Negev, Israel
Martin DAHLQVIST, Linkoping University, Sweden
Michael FARLE / Ruslan SALIKHOV, University of Duisburg-Essen, Germany
Micah GREEN, Texas A&M University, USA
Surojit GUPTA, University of North Dakota, USA
Mohammed HADJI, University of Blida, Algeria
Qing HUANG, Ningbo Inst.of Materials Technology & Engineering, China
Arni S. INGASON, Linkoping University, Sweden & Grein Research, Iceland
Takahiro ITO, Nagoya University, Japan
Anne JOULAIN, University of Poitiers, France
Mohamed KHAZAEI, RIKEN, Japan
Sankalp KOTA, Drexel University, USA
Konstantina LAMBRINOU, SCK-CEN, Belgium
Shibo LI, Beijing Jiaotong University, China
Vincent MAUCHAMP, University of Poitiers, France
Michael NAGUIB, Tulane University, USA
Thierry OUISSE, Grenoble INP, France
Per PERSSON, Linkoping University, Sweden
Miladin RADOVIC, Texas A&M University, USA
Johanna ROSEN, Linkoping University, Sweden (Keynote Speaker)
Udo SCHWINGENSCHLOGL, King Abdullah University of Science and Technology, Saudi Arabia
ZhengMing SUN, Southeast University, China
Sybrand VAN DER ZWAAG, Delft University, Netherlands
Jef VLEUGELS, KU Leuven, Belgium
Xiaohui WANG, Shenyang National Lab.for Materials Science, China
Jie ZHANG, Institute of Metal Research, CAS, China
 
This Symposium aims at being an international forum in which the different aspects of the MAX phases and other layered carbides and nitrides and their 2D derivative compounds, viz. the MXenes, are discussed. The MAX phases are layered hexagonal machinable ternary early transition metal carbides and nitrides. Currently the MAX phases number over 70, with new ones, especially 413’s and solid solutions still being discovered on a routine basis. The recent discovery of out of plane ordering, (o-MAX) and in-plane ordering (i-MAX) phases and their 2D derivative have greatly enriched and invigorated the field. The re-discovery of layered transition metal borides (MAB) phases that share some, but not all, similarities with the MAX phases is also a new and exciting
The International Symposium “Progress in Nano-laminated Ternary Carbides Nitrides and Borides (MAX/MAB) Phases and Derivatives Thereof (MXenes)” will focus on the latest advances in understanding the chemistry/processing/properties/microstructure relationships in the MAX/MAB and MXene phases. The proposed sessions will cover the gamut from density functional theory calculations to transport properties, to new phases, both predicted and synthesized, to ambient and high temperature mechanical properties including creep and oxidation. How the MAX phases are converted to MXene and the properties of the latter will also be covered. Lastly, a session will be devoted to current and potential applications of these novel, exciting and unusual phases.
 
Session Topics

CG-1 Bulk and thin film transport properties of the MAX/MAB/MXenes

CG-2 New MAX/MAB/MXenes

CG-3 Mechanical properties and oxidation of MAX/MAB/MXenes

CG-4 MAX/MAB and MXene composites and their properties

CG-5 Electronic properties, ab initio calculations and structural characterization

CG-6 Synthesis and fabrication of MAX/MAB/MXenes

CG-7 Functional properties of MAX/MAB/MXenes

CG-8 Energy storage

CG-9 Applications of the MAX/MAB and MXene phases

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