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Combinatorial and High-Throughput Materials Science

机译:组合和高通量材料科学

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摘要

There is increasing acceptance of high-throughput technologies for the discovery,development,and optimization of materials and catalysts in industry.Over the years,the relative synchronous development of technologies for parallel synthesis and characterization has been accompanied by developments in associated software and information technologies.This Review aims to provide a comprehensive overview on the state of the art of the field by selected examples.Technologies developed to aid research on complex materials are covered as well as databases,design of experiment,data-mining technologies,modeling approaches,and evolutionary strategies for development.Different methods for parallel synthesis provide single sample libraries,gradient libraries for electronic or optical materials,similar to polymers and catalysts,and products produced through formulation strategies.Many examples illustrate the variety of isolated solutions and document the barely recognized variety of new methods for the synthesis and analysis of almost any material.The Review ends with a summary of success stories and statements on still-present problems and future tasks.
机译:高通量技术对工业中材料和催化剂的发现,开发和优化的接受度越来越高。多年来,并行合成和表征技术的相对同步发展伴随着相关软件和信息技术的发展。这篇综述旨在通过一些实例对本领域的现状进行全面概述。本文涵盖了为协助复杂材料研究而开发的技术,以及数据库,实验设计,数据挖掘技术,建模方法和不同的并行合成方法提供了单个样品库,电子或光学材料的梯度库(类似于聚合物和催化剂)以及通过配制策略生产的产品。许多示例说明了分离溶液的多样性并记录了几乎未被认可的变化的新方法总结最后总结了成功案例以及关于仍然存在的问题和未来任务的陈述。

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