Call for Abstract

 Global Summit onMaterial Science and Engineering, will be organized around the theme “Highlighting and Focusing on future prospects in Materials Science & Engineering”

Materials Science-2015 is comprised of 11 tracks and 74 sessions designed to offer comprehensive sessions that address current issues in Materials Science-2015.

Submit your abstract to any of the mentioned tracks. All related abstracts are accepted.

Register now for the conference by choosing an appropriate package suitable to you.

  • Track 1-1Ceramography
  • Track 1-2Composite materials
  • Track 1-3Chemical engineering
  • Track 1-4Semiconductors
  • Track 1-5Graphene
  • Track 1-6Fundamentals and challenges in materials science
  • Track 1-7Recent approaches and challenges in smart coatings
  • Track 1-8Big data in materials science
  • Track 1-9Thin films, ceramics and glasses
  • Track 1-10Rare-earth magnets and their applications
  • Track 2-1Nanomaterials and nanocomposites
  • Track 2-2Nanoparticles
  • Track 2-3Carbon nanotubes
  • Track 2-4Nanophotonics
  • Track 2-5Nanomedicine
  • Track 2-6Advances in nano materials science
  • Track 2-7Commercial production and applications of nanomaterials
  • Track 2-8Quantum dots, carbon dots and other luminescent nanostructures
  • Track 2-9Environmental and health concerns about nanomaterials
  • Track 2-10Nanobiomaterials/drug delivery
  • Track 3-1Battery materials
  • Track 3-2Fuel cell materials
  • Track 3-3Solar energy materials
  • Track 3-4Thermoelectric materials
  • Track 3-5Photovoltaic devices
  • Track 4-1Crystallography
  • Track 4-2Alloy development and casting techniques
  • Track 4-3Creep resistant alloys
  • Track 4-4Corrosion, heat treatment
  • Track 4-5Extractive metallurgy
  • Track 4-6Powder metallurgy: A route to nanocomposites
  • Track 4-7Light Metals for Transportation
  • Track 5-1Fundamentals of surface engineering
  • Track 5-2Surface coating and modification
  • Track 5-3Catalysis
  • Track 5-4Electrochemistry
  • Track 6-1Surface properties of biomaterials
  • Track 6-2Biomaterial surfaces
  • Track 6-3Nanoscale surface modifications
  • Track 6-4Resorbable biomaterials
  • Track 6-5Bioengineering
  • Track 6-6Biomimetic materials
  • Track 6-7Bio-inorganic nanomaterials
  • Track 6-8Computational studies of Biomaterials
  • Track 7-1Design and manufacture
  • Track 7-2Synthesis and characterization
  • Track 7-3Liquid crystals
  • Track 7-4Chemical metrology of materials
  • Track 7-5Green chemistry
  • Track 8-1Imaging, microscopy and adaptive optics
  • Track 8-2Photonics
  • Track 8-3Laser beam delivery and diagnostics
  • Track 8-4Lasers in medicine and biology
  • Track 8-5Engineering applications of spectroscopy
  • Track 8-6Optical nanomaterials for photonics/Biophotonics
  • Track 8-7Advanced spintronic materials
  • Track 8-8Advances in dielectric materials and electronic devices
  • Track 9-1Spectroscopy
  • Track 9-2Imaging techniques
  • Track 9-3Manufacturing technology management
  • Track 9-4Materials processing for advanced manufacturing
  • Track 9-5Advanced forming processes
  • Track 9-6Composites and non-Ttraditional methods for advanced manufacturing
  • Track 9-7Material removal and laser processing for advanced manufacturing
  • Track 10-1Atomic molecular and laser physics
  • Track 10-2Spintronics
  • Track 10-3Solid state ionics (materials and devices)
  • Track 10-4Plasma physics
  • Track 10-5Materials tribology: Fundamentals, applications and solutions
  • Track 11-1Basic polymer synthesis system
  • Track 11-2Chemistry, Characterization and Modeling of Thermosetting Resins
  • Track 11-3Processing of Thermosetting Resins
  • Track 11-4Fiber-Reinforced and Green Thermosets
  • Track 11-5Repair and Recycling of Thermosets