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Combinatorial and high-throughput screening of materials libraries: Review of state of the art

  • Radislav Potyrailo
  • , Krishna Rajan
  • , Klaus Stoewe
  • , Ichiro Takeuchi
  • , Bret Chisholm
  • , Hubert Lam
  • General Electric
  • Saarland University
  • University of Maryland, College Park
  • North Dakota State University

Research output: Contribution to journalReview articlepeer-review

483 Scopus citations

Abstract

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.

Original languageEnglish
Pages (from-to)579-633
Number of pages55
JournalACS Combinatorial Science
Volume13
Issue number6
DOIs
StatePublished - Nov 14 2011

Keywords

  • Materials science
  • biomaterials
  • combinatorial and high-throughput (CHT) experimentation
  • electronic and functional materials
  • polymer-based industrial coatings
  • sensing materials

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