TEXplorer.org: Thermoelectric material properties data platform for experimental and first-principles calculation results

Scientific databases offer remarkable potential for solving complex questions in materials science, such as global optimization of materials and designing unknown materials for novel properties. ThermoElectric materials eXplorer (TEXplorer) is a web-based platform designed to collect and share all t...

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Main Authors: Yea-Lee Lee, Hyungseok Lee, Seunghun Jang, Jeongho Shin, Taeshik Kim, Sejin Byun, In Chung, Jino Im, Hyunju Chang
Format: Article
Language:English
Published: AIP Publishing LLC 2023-04-01
Series:APL Materials
Online Access:http://dx.doi.org/10.1063/5.0137642
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author Yea-Lee Lee
Hyungseok Lee
Seunghun Jang
Jeongho Shin
Taeshik Kim
Sejin Byun
In Chung
Jino Im
Hyunju Chang
author_facet Yea-Lee Lee
Hyungseok Lee
Seunghun Jang
Jeongho Shin
Taeshik Kim
Sejin Byun
In Chung
Jino Im
Hyunju Chang
author_sort Yea-Lee Lee
collection DOAJ
description Scientific databases offer remarkable potential for solving complex questions in materials science, such as global optimization of materials and designing unknown materials for novel properties. ThermoElectric materials eXplorer (TEXplorer) is a web-based platform designed to collect and share all types of thermoelectric materials data, including synthesis information, materials characterization, transport measurements, and electronic structures obtained from experiments and computations. TEXplorer also provides valuable tools, such as an easy upload and download system, retrieval, automatic post-processing calculations, visualization of datasets, and toolkits for predicting thermoelectric properties through machine learning models. Using the platform, we collected and managed the thermoelectric dataset of SnSe and Bi2Te3 with various doping/alloying elements in this study in order to investigate the complex relationship between doping/alloying elements and the thermoelectric properties of host materials. The web-based interactive data platform enables efficient management and utilization of experimental and computational datasets, supporting the acceleration of data-driven materials research and autonomous material synthesis.
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spelling doaj.art-17bbd437c70f4a4a81957fb117b82dfb2023-07-26T14:42:04ZengAIP Publishing LLCAPL Materials2166-532X2023-04-01114041111041111-1410.1063/5.0137642TEXplorer.org: Thermoelectric material properties data platform for experimental and first-principles calculation resultsYea-Lee Lee0Hyungseok Lee1Seunghun Jang2Jeongho Shin3Taeshik Kim4Sejin Byun5In Chung6Jino Im7Hyunju Chang8Korea Research Institute of Chemical Technology (KRICT), Daejeon 34114, Republic of KoreaSchool of Chemical and Biological Engineering, and Institute of Chemical Processes, Seoul National University, Seoul 08826, Republic of KoreaKorea Research Institute of Chemical Technology (KRICT), Daejeon 34114, Republic of KoreaKorea Research Institute of Chemical Technology (KRICT), Daejeon 34114, Republic of KoreaSchool of Chemical and Biological Engineering, and Institute of Chemical Processes, Seoul National University, Seoul 08826, Republic of KoreaSchool of Chemical and Biological Engineering, and Institute of Chemical Processes, Seoul National University, Seoul 08826, Republic of KoreaSchool of Chemical and Biological Engineering, and Institute of Chemical Processes, Seoul National University, Seoul 08826, Republic of KoreaKorea Research Institute of Chemical Technology (KRICT), Daejeon 34114, Republic of KoreaKorea Research Institute of Chemical Technology (KRICT), Daejeon 34114, Republic of KoreaScientific databases offer remarkable potential for solving complex questions in materials science, such as global optimization of materials and designing unknown materials for novel properties. ThermoElectric materials eXplorer (TEXplorer) is a web-based platform designed to collect and share all types of thermoelectric materials data, including synthesis information, materials characterization, transport measurements, and electronic structures obtained from experiments and computations. TEXplorer also provides valuable tools, such as an easy upload and download system, retrieval, automatic post-processing calculations, visualization of datasets, and toolkits for predicting thermoelectric properties through machine learning models. Using the platform, we collected and managed the thermoelectric dataset of SnSe and Bi2Te3 with various doping/alloying elements in this study in order to investigate the complex relationship between doping/alloying elements and the thermoelectric properties of host materials. The web-based interactive data platform enables efficient management and utilization of experimental and computational datasets, supporting the acceleration of data-driven materials research and autonomous material synthesis.http://dx.doi.org/10.1063/5.0137642
spellingShingle Yea-Lee Lee
Hyungseok Lee
Seunghun Jang
Jeongho Shin
Taeshik Kim
Sejin Byun
In Chung
Jino Im
Hyunju Chang
TEXplorer.org: Thermoelectric material properties data platform for experimental and first-principles calculation results
APL Materials
title TEXplorer.org: Thermoelectric material properties data platform for experimental and first-principles calculation results
title_full TEXplorer.org: Thermoelectric material properties data platform for experimental and first-principles calculation results
title_fullStr TEXplorer.org: Thermoelectric material properties data platform for experimental and first-principles calculation results
title_full_unstemmed TEXplorer.org: Thermoelectric material properties data platform for experimental and first-principles calculation results
title_short TEXplorer.org: Thermoelectric material properties data platform for experimental and first-principles calculation results
title_sort texplorer org thermoelectric material properties data platform for experimental and first principles calculation results
url http://dx.doi.org/10.1063/5.0137642
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