吞吐量
纳米技术
表征(材料科学)
合理设计
生化工程
计算机科学
电子材料
高通量筛选
组合综合
数据科学
化学
组合化学
材料科学
工程类
电信
无线
生物化学
作者
Radislav A. Potyrailo,Krishna Rajan,Klaus Stoewe,Ichiro Takeuchi,Bret J. Chisholm,Hubert Lam
摘要
Rational materials design based on prior knowledge is attractive because it promises to avoid time-consuming synthesis and testing of numerous materials candidates. However with the increase of complexity of materials, the scientific ability for the rational materials design becomes progressively limited. As a result of this complexity, combinatorial and high-throughput (CHT) experimentation in materials science has been recognized as a new scientific approach to generate new knowledge. This review demonstrates the broad applicability of CHT experimentation technologies in discovery and optimization of new materials. We discuss general principles of CHT materials screening, followed by the detailed discussion of high-throughput materials characterization approaches, advances in data analysis/mining, and new materials developments facilitated by CHT experimentation. We critically analyze results of materials development in the areas most impacted by the CHT approaches, such as catalysis, electronic and functional materials, polymer-based industrial coatings, sensing materials, and biomaterials.
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