Illustrating an Effective Workflow for Accelerated Materials Discovery

Fuente: arXiv
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Autori principali: Mulukutla, Mrinalini, Person, A. Nicole, Voigt, Sven, Kuettner, Lindsey, Kappes, Branden, Khatamsaz, Danial, Robinson, Robert, Salas, Daniel, Xu, Wenle, Lewis, Daniel, Eoh, Hongkyu, Xiao, Kailu, Wang, Haoren, Saini, Jaskaran Singh, Mahat, Raj, Hastings, Trevor, Skokan, Matthew, Attari, Vahid, Elverud, Michael, Paramore, James D., Butler, Brady, Vecchio, Kenneth, Kalidindi, Surya R., Allaire, Douglas, Karaman, Ibrahim, Thomas, Edwin L., Pharr, George, Srivastava, Ankit, Arróyave, Raymundo
Natura: Preprint
Pubblicazione: 2024
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author Mulukutla, Mrinalini
Person, A. Nicole
Voigt, Sven
Kuettner, Lindsey
Kappes, Branden
Khatamsaz, Danial
Robinson, Robert
Salas, Daniel
Xu, Wenle
Lewis, Daniel
Eoh, Hongkyu
Xiao, Kailu
Wang, Haoren
Saini, Jaskaran Singh
Mahat, Raj
Hastings, Trevor
Skokan, Matthew
Attari, Vahid
Elverud, Michael
Paramore, James D.
Butler, Brady
Vecchio, Kenneth
Kalidindi, Surya R.
Allaire, Douglas
Karaman, Ibrahim
Thomas, Edwin L.
Pharr, George
Srivastava, Ankit
Arróyave, Raymundo
author_facet Mulukutla, Mrinalini
Person, A. Nicole
Voigt, Sven
Kuettner, Lindsey
Kappes, Branden
Khatamsaz, Danial
Robinson, Robert
Salas, Daniel
Xu, Wenle
Lewis, Daniel
Eoh, Hongkyu
Xiao, Kailu
Wang, Haoren
Saini, Jaskaran Singh
Mahat, Raj
Hastings, Trevor
Skokan, Matthew
Attari, Vahid
Elverud, Michael
Paramore, James D.
Butler, Brady
Vecchio, Kenneth
Kalidindi, Surya R.
Allaire, Douglas
Karaman, Ibrahim
Thomas, Edwin L.
Pharr, George
Srivastava, Ankit
Arróyave, Raymundo
contents Algorithmic materials discovery is a multi-disciplinary domain that integrates insights from specialists in alloy design, synthesis, characterization, experimental methodologies, computational modeling, and optimization. Central to this effort is a robust data management system paired with an interactive work platform. This platform should empower users to not only access others data but also integrate their analyses, paving the way for sophisticated data pipelines. To realize this vision, there is a need for an integrative collaboration platform, streamlined data sharing and analysis tools, and efficient communication channels. Such a collaborative mechanism should transcend geographical barriers, facilitating remote interaction and fostering a challenge-response dynamic. In this paper, we present our ongoing efforts in addressing the critical challenges related to an accelerated Materials Discovery Framework as a part of the High-Throughput Materials Discovery for Extreme Conditions Initiative. Our BIRDSHOT Center has successfully harnessed various tools and strategies, including the utilization of cloud-based storage, a standardized sample naming convention, a structured file system, the implementation of sample travelers, a robust sample tracking method, and the incorporation of knowledge graphs for efficient data management. Additionally, we present the development of a data collection platform, reinforcing seamless collaboration among our team members. In summary, this paper provides an illustration and insight into the various elements of an efficient and effective workflow within an accelerated materials discovery framework while highlighting the dynamic and adaptable nature of the data management tools and sharing platforms.
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institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Illustrating an Effective Workflow for Accelerated Materials Discovery
Mulukutla, Mrinalini
Person, A. Nicole
Voigt, Sven
Kuettner, Lindsey
Kappes, Branden
Khatamsaz, Danial
Robinson, Robert
Salas, Daniel
Xu, Wenle
Lewis, Daniel
Eoh, Hongkyu
Xiao, Kailu
Wang, Haoren
Saini, Jaskaran Singh
Mahat, Raj
Hastings, Trevor
Skokan, Matthew
Attari, Vahid
Elverud, Michael
Paramore, James D.
Butler, Brady
Vecchio, Kenneth
Kalidindi, Surya R.
Allaire, Douglas
Karaman, Ibrahim
Thomas, Edwin L.
Pharr, George
Srivastava, Ankit
Arróyave, Raymundo
Materials Science
Algorithmic materials discovery is a multi-disciplinary domain that integrates insights from specialists in alloy design, synthesis, characterization, experimental methodologies, computational modeling, and optimization. Central to this effort is a robust data management system paired with an interactive work platform. This platform should empower users to not only access others data but also integrate their analyses, paving the way for sophisticated data pipelines. To realize this vision, there is a need for an integrative collaboration platform, streamlined data sharing and analysis tools, and efficient communication channels. Such a collaborative mechanism should transcend geographical barriers, facilitating remote interaction and fostering a challenge-response dynamic. In this paper, we present our ongoing efforts in addressing the critical challenges related to an accelerated Materials Discovery Framework as a part of the High-Throughput Materials Discovery for Extreme Conditions Initiative. Our BIRDSHOT Center has successfully harnessed various tools and strategies, including the utilization of cloud-based storage, a standardized sample naming convention, a structured file system, the implementation of sample travelers, a robust sample tracking method, and the incorporation of knowledge graphs for efficient data management. Additionally, we present the development of a data collection platform, reinforcing seamless collaboration among our team members. In summary, this paper provides an illustration and insight into the various elements of an efficient and effective workflow within an accelerated materials discovery framework while highlighting the dynamic and adaptable nature of the data management tools and sharing platforms.
title Illustrating an Effective Workflow for Accelerated Materials Discovery
topic Materials Science
url https://arxiv.org/abs/2405.13132