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Microscopic Mechanism of Doping-Induced Kinetically Constrained Crystallization in Phase-Change Materials
Journal article   Peer reviewed

Microscopic Mechanism of Doping-Induced Kinetically Constrained Crystallization in Phase-Change Materials

Tae Hoon Lee, Desmond Loke and Stephen R. Elliott
Advanced materials (Weinheim), Vol.27(37), pp.5477-5483
07/10/2015
PMID: 26426723

Abstract

Chemistry Chemistry, Multidisciplinary Chemistry, Physical Materials Science Materials Science, Multidisciplinary Nanoscience & Nanotechnology Physical Sciences Physics Physics, Applied Physics, Condensed Matter Science & Technology Science & Technology - Other Topics Technology
A comprehensive microscopic mechanism of doping-induced kinetically constrained crystallization in phase-change materials is provided by investigating structural and dynamical dopant characteristics via ab initio molecular dynamics simulations. The information gained from this study may provide a basis for a fast screening of dopant species for electronic memory devices, or for understanding the general physics involved in the crystallization of doped glasses.

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