Computational Materials Genome Initiative by High-Throughput Approaches

<p>Recently, in materials innovations, computational methods are used more frequently than in past decades. In this thesis, the materials genome initiative, an advanced new framework, will be introduced. With this blueprint, our efficient high-throughput software, AFLOW, has been implemented w...

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Main Author: Xue, Junkai
Other Authors: Curtarolo, Stefano
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10161/8041
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spelling ndltd-DUKE-oai-dukespace.lib.duke.edu-10161-80412013-11-16T03:30:30ZComputational Materials Genome Initiative by High-Throughput ApproachesXue, JunkaiMaterials ScienceComputer scienceAFLOWHigh-throughput<p>Recently, in materials innovations, computational methods are used more frequently than in past decades. In this thesis, the materials genome initiative, an advanced new framework, will be introduced. With this blueprint, our efficient high-throughput software, AFLOW, has been implemented with several compatible functions for ma- terials properties investigations, such as prototype searching, phase diagram studying and magnetic properties discovering. With this effective tool, we apply ab initio cal- culations to discover new generation of specific materials properties.</p><p>An efficient algorithm for prototypes comparision has been designed and imple- mented into our high-throughput framework AFLOW. In addition, prototypes clas- sification was utilized to differentiate the our materials database. This classification will accelerate the materials properties searching speed. With respect to structure prototypes, low temperature phase diagrams were used for binary and ternary alloy systems stability investigation. The alogrithms have been integrated into AFLOW. With this tool, we systematically explored the binary Ru systems and Tc systems and predicted new stable compounds.</p>DissertationCurtarolo, Stefano2013Dissertationhttp://hdl.handle.net/10161/8041
collection NDLTD
sources NDLTD
topic Materials Science
Computer science
AFLOW
High-throughput
spellingShingle Materials Science
Computer science
AFLOW
High-throughput
Xue, Junkai
Computational Materials Genome Initiative by High-Throughput Approaches
description <p>Recently, in materials innovations, computational methods are used more frequently than in past decades. In this thesis, the materials genome initiative, an advanced new framework, will be introduced. With this blueprint, our efficient high-throughput software, AFLOW, has been implemented with several compatible functions for ma- terials properties investigations, such as prototype searching, phase diagram studying and magnetic properties discovering. With this effective tool, we apply ab initio cal- culations to discover new generation of specific materials properties.</p><p>An efficient algorithm for prototypes comparision has been designed and imple- mented into our high-throughput framework AFLOW. In addition, prototypes clas- sification was utilized to differentiate the our materials database. This classification will accelerate the materials properties searching speed. With respect to structure prototypes, low temperature phase diagrams were used for binary and ternary alloy systems stability investigation. The alogrithms have been integrated into AFLOW. With this tool, we systematically explored the binary Ru systems and Tc systems and predicted new stable compounds.</p> === Dissertation
author2 Curtarolo, Stefano
author_facet Curtarolo, Stefano
Xue, Junkai
author Xue, Junkai
author_sort Xue, Junkai
title Computational Materials Genome Initiative by High-Throughput Approaches
title_short Computational Materials Genome Initiative by High-Throughput Approaches
title_full Computational Materials Genome Initiative by High-Throughput Approaches
title_fullStr Computational Materials Genome Initiative by High-Throughput Approaches
title_full_unstemmed Computational Materials Genome Initiative by High-Throughput Approaches
title_sort computational materials genome initiative by high-throughput approaches
publishDate 2013
url http://hdl.handle.net/10161/8041
work_keys_str_mv AT xuejunkai computationalmaterialsgenomeinitiativebyhighthroughputapproaches
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