Journal Article FZJ-2021-01419

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A data fusion approach to optimize compositional stability of halide perovskites

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2021
Elsevier [New York, NY]

Matter 4(4), 1305-1322 () [10.1016/j.matt.2021.01.008]

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Abstract: Despite recent intensive efforts to improve the environmental stability of halide perovskite materials for energy harvesting and conversion, traditional trial-and-error explorations face bottlenecks in the navigation of vast chemical and compositional spaces. We develop a closed-loop optimization framework that seamlessly marries data from first-principle calculations and high-throughput experimentation into a single machine learning algorithm. This framework enables us to achieve rapid optimization of compositional stability for CsxMAyFA1−x−yPbI3 perovskites while taking the human out of the decision-making loop. We envision that this data fusion approach is generalizable to directly tackle challenges in designing multinary materials, and we hope that our successful showcase on perovskites will encourage researchers in other fields to incorporate knowledge of physics into the search algorithms, applying hybrid machine learning models to guide discovery of materials in high-dimensional spaces.

Classification:

Contributing Institute(s):
  1. Helmholtz-Institut Erlangen-Nürnberg Erneuerbare Energien (IEK-11)
Research Program(s):
  1. 121 - Photovoltaik und Windenergie (POF4-121) (POF4-121)

Appears in the scientific report 2021
Database coverage:
Medline ; Creative Commons Attribution-NonCommercial-NoDerivs CC BY-NC-ND 4.0 ; Embargoed OpenAccess ; Clarivate Analytics Master Journal List ; Emerging Sources Citation Index ; SCOPUS ; Web of Science Core Collection
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IEK > IEK-11
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Open Access

 Record created 2021-03-22, last modified 2024-07-09


Published on 2021-02-01. Available in OpenAccess from 2022-02-01.:
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