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  • Symposia
    • A. Coatings for Use at High Temperatures
    • B. Hard Coatings and Vapor Deposition Technologies
    • C. Fundamentals and Technology of Multifunctional Materials and Devices
    • D. Coatings for Biomedical and Healthcare Applications
    • E. Tribology and Mechanical Behavior of Coatings and Engineered Surfaces
    • F. New Horizons in Coatings and Thin Films
    • G. Surface Engineering – Applied Research and Industrial Applications
    • H. Advanced Characterization Techniques for Coatings, Thin Films, and Small Volumes
    • TS1. Anti- and De-icing Surface Engineering
    • TS2. New Horizons in Boron-Containing Coatings: Modeling, Synthesis and Applications
    • TS3. In-silicio Design of Novel Materials by Quantum Mechanics and Classical Methods
    • TS4. Photocatalytic and Superhydrophilic Surfaces
    • TS5. Thin Films on Polymer Substrates: Flexible Electronics and Beyond
  • Short Courses
    • Plasmas in Physical Vapor Deposition, Including Arcs and HiPIMS – 4/26/20
    • In-situ and Ex-situ Ellipsometry Characterizations of Thin Films – 4/26/20
    • NEW! Design and Deposition of Hard and Superhard Coatings – 4/27/20
    • Reactive Magnetron Sputter Deposition – 4/27/20
    • NEW! Atmospheric Pressure Plasma: Principles, Sources and Applications – 4/28/20
    • Practical Thin Film Characterization – 4/28/20
    • Fundamentals of HiPIMS Plasmas for Thin Film Deposition – 4/29/20
    • Nanomechanics and Tribology of Thin Film Coatings – 4/29/20
    • Industrial Surface Engineering: Fundamentals, Practice and Applications – 4/30/20
    • Understanding and Control Stresses in PVD Thin Films – 4/30/20
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TS2. New Horizons in Boron-Containing Coatings: Modeling, Synthesis and Applications

Topical Symposium 2

Borides and boron-containing thin film materials are emerging as the next generation of hard, wear-, oxidation-, and corrosion-resistant coatings. Furthermore, various boron-based materials exhibit unique properties obtaining high potential for functional and architectural designs. The aim of this symposium is to provide a platform for first-principles design, synthesis, characterization of properties and defect structure as well as applications of different types of boron-containing protective and functional thin films. A strong intent is directed towards the initiation of an in-depth discussion covering a broad range of boron-containing materials and synthesis technologies including approaches such as PVD and CVD but also on modeling and advanced characterization techniques.

TS2. Invited Speakers:
  • John R. Abelson, University of Illinois at Urbana-Champaign, USA, “Metal Diborides Everywhere: Conformal Coating, Infilling, and Alloying by Low-Temperature CVD”
  • Michel W. Barsoum, Drexel University, USA, “A Progress Report on Bulk MAB Phases”
  • Jens Birch, Linköping Univ., IFM, Thin Film Physics Div., Sweden, “Boron Carbide Thin Films for State-of-the-Art Neutron Detectors at the ESS”
  • Jinn P. Chu, National Taiwan University of Science and Technology (NTUST), Taiwan, “Boron-containing Metallic Glass Thin Films”
  • Christian Mitterer, Montanuniversität Leoben, Austria, “Boride-based Hard Coatings – Three Decades from the Early Beginnings to a Knowledge-based Materials Design”
  • Christina Scheu, Max-Planck Institut für Eisenforschung, Germany, ” Insights in the Structure, Defects and Stability of Mo2BC Thin Films by Advanced Characterization Methods”

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Key Dates

ICMCTF Awards Deadline:
October 1, 2019

Late News Abstract Deadline:
February 5, 2020

Early Registration Deadline:
March 20, 2020

Hotel Reservation Deadline:
March 20, 2020

Manuscript Deadline:
March 20, 2020

Downloads

  • Call for Abstracts FlIer
  • Presentation & Poster Guidelines

Contact

ICMCTF
Yvonne Towse

Conference Administrator
125 Maiden Lane; Suite 15B
New York, N.Y. 10038
icmctf@icmctf.org

 

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