合理设计
偶然性
材料科学
聚合物
纳米技术
电介质
储能
生化工程
计算机科学
工艺工程
复合材料
工程类
认识论
物理
哲学
功率(物理)
量子力学
光电子学
作者
Arun Mannodi‐Kanakkithodi,Gregory M. Treich,Tran Doan Huan,Rui Ma,Mattewos Tefferi,Yang Cao,Gregory A. Sotzing,Rampi Ramprasad
标识
DOI:10.1002/adma.201600377
摘要
Although traditional materials discovery has historically benefited from intuition-driven experimental approaches and serendipity, computational strategies have risen in prominence and proven to be a powerful complement to experiments in the modern materials research environment. It is illustrated here how one may harness a rational co-design approach-involving synergies between high-throughput computational screening and experimental synthesis and testing-with the example of polymer dielectrics design for electrostatic energy storage applications. Recent co-design efforts that can potentially enable going beyond present-day "standard" polymer dielectrics (such as biaxially oriented polypropylene) are highlighted. These efforts have led to the identification of several new organic polymer dielectrics within known generic polymer subclasses (e.g., polyurea, polythiourea, polyimide), and the recognition of the untapped potential inherent in entirely new and unanticipated chemical subspaces offered by organometallic polymers. The challenges that remain and the need for additional methodological developments necessary to further strengthen the co-design concept are then presented.
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