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"In Silico Chemistry" Sympoisum at US ... (No replies)

mkychan
9 years ago
mkychan 9 years ago

The 2016 MRS Fall Meeting & Exhibit will be held November 27-December 2, 2016 in Boston, Massachusetts, USA. The call for abstracts is now open (deadline June 16).

To Submit: http://www.mrs.org/fall-2016-call-for-papers-tc1

Symposium on In Silicon Materials Chemistry

Materials chemistry has been one of the fastest growing areas of materials research in the past decade. This is driven by the urgent need for materials discovery for renewable energy, clean environment, and biomedical applications. Understanding structure-property relationships is fundamental to the chemistry of materials and key to realizing materials’ functions. Advances in theoretical understanding, algorithms and computational power are enabling computational tools to play an increasing role in materials discovery, development and optimization. For example, recently developed data mining techniques and genetic algorithms enable the “virtual synthesis” of novel materials, with their properties being predicted on a computer before ever being synthesized in a laboratory. This is the central thesis of “In silico Materials Chemistry”: One understands, predicts, and designs new materials and chemistry based on computer simulations. One key focus of this symposium is the chemistry aspect: the structures, compositions, and reactions responsible for materials’ properties and functions.

This symposium aims to bring together computational researchers working on focused topics of materials chemistry to exchange ideas and to stimulate discussion. It will provide a unique venue for the participants to broaden their view of materials design and discovery and to learn from others’ computational approaches.

Topics will include:

  • Materials design for chemical, electrochemical, and photo catalysis
  • Modeling of materials for electric energy storage
  • Structure prediction for novel materials
  • Virtual screening
  • Exploration of potential energy surface
  • Advanced force fields
  • Multiscale modeling of materials chemistry



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Ab initio (from electronic structure) calculation of complex processes in materials