Rational design of all organic polymer dielectrics

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作者
Vinit Sharma
Chenchen Wang
Robert G. Lorenzini
Rui Ma
Qiang Zhu
Daniel W. Sinkovits
Ghanshyam Pilania
Artem R. Oganov
Sanat Kumar
Gregory A. Sotzing
Steven A. Boggs
Rampi Ramprasad
机构
[1] University of Connecticut,Department of Materials Science and Engineering
[2] Institute of Materials Science,Department of Chemistry
[3] University of Connecticut,Department of Geosciences and Center for Materials by Design
[4] Institute of Materials Science,Department of Chemical Engineering
[5] University of Connecticut,Materials Science and Technology Division (MST
[6] Stony Brook University,8)
[7] Columbia University,undefined
[8] Los Alamos National Laboratory,undefined
[9] Moscow Institute of Physics and Technology,undefined
[10] Northwestern Polytechnical University,undefined
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摘要
To date, trial and error strategies guided by intuition have dominated the identification of materials suitable for a specific application. We are entering a data-rich, modelling-driven era where such Edisonian approaches are gradually being replaced by rational strategies, which couple predictions from advanced computational screening with targeted experimental synthesis and validation. Here, consistent with this emerging paradigm, we propose a strategy of hierarchical modelling with successive downselection stages to accelerate the identification of polymer dielectrics that have the potential to surpass ‘standard’ materials for a given application. Successful synthesis and testing of some of the most promising identified polymers and the measured attractive dielectric properties (which are in quantitative agreement with predictions) strongly supports the proposed approach to material selection.
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