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首页> 外文期刊>Advanced Functional Materials >A New Paradigm for Materials Discovery: Heuristics- Assisted Combinatorial Chemistry Involving Parameterization of Material Novelty
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A New Paradigm for Materials Discovery: Heuristics- Assisted Combinatorial Chemistry Involving Parameterization of Material Novelty

机译:材料发现的新范式:启发式辅助组合化学,涉及材料新颖性的参数化

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摘要

The combinatorial chemistry (combi-chem) of inorganic functional materials has not yet led to the discovery of commercially interesting materials, in contrast to the many successful discoveries of heterogeneous catalysts leading to commercialization. Novel materials for practical use are likely hidden in the muhicompositional search space that contains an infinite number of possible stoichiometries, as well as a large number of well-known materials. To discover new, inorganic luminescent materials (phosphors) from the SrO-CaO-BaO-La_2O_3-Y_2O_3-Si_3N_4-Eu_2O_3 search space, heuristics optimization strategies, such as the non-dominated-sorting genetic algorithm (NSCA) and particle swarm optimization (PSO) are coupled with high-throughput experimentation (HTE) in such a manner that the experimental evaluation of fitness functions for the NSGA and PSO is accomplished by the HTE. The proposed strategy also involves the parameterization of the material novelty to avoid systematically a futile convergence on well-known, already-established materials. Although the process starts with random compositions, we finally converge on a novel, single-phase, yellow-green-emitting luminescent material, La_(4-x)Ca_xSi_(12)O_(3+x)N_(18-x):Eu~(2+), that has strong potential for practical use in white light-emitting diodes (WLEDs).
机译:无机功能材料的组合化学(组合化学)尚未导致发现具有商业意义的材料,而异质催化剂的许多成功发现却导致了工业化。实用的新型材料可能隐藏在多组成搜索空间中,该空间包含无限数量的可能化学计量,以及大量众所周知的材料。为了从SrO-CaO-BaO-La_2O_3-Y_2O_3-Si_3N_4-Eu_2O_3搜索空间中发现新的无机发光材料(磷),采用了启发式优化策略,例如非支配排序遗传算法(NSCA)和粒子群优化( (PSO)与高通量实验(HTE)结合在一起,使得可以通过HTE对NSGA和PSO的适应度功能进行实验评估。所提出的策略还涉及对材料新颖性进行参数化,以避免系统地避免对已知的,已经确定的材料进行徒劳的收敛。尽管该过程从随机组成开始,但我们最终会聚到一种新型的,发出黄绿色光的单相发光材料La_(4-x)Ca_xSi_(12)O_(3 + x)N_(18-x): Eu〜(2+),具有在白光发光二极管(WLED)中实际应用的强大潜力。

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  • 来源
    《Advanced Functional Materials》 |2012年第11期|p.2258-2266|共9页
  • 作者单位

    Department of Printed Electronics Engineering World Class University (WCU) Program Sunchon National University Maygok dong 315, Sunchon, Chonnam 540-742, Korea;

    Pohang Accelerator Laboratory Pohang University of Science and Technology Pohang, Kyungbuk 790-784, Korea;

    Neutron Science Division Korea Atomic Energy Research Institute Daejeon 305-353, Korea;

    Department of Printed Electronics Engineering World Class University (WCU) Program Sunchon National University Maygok dong 315, Sunchon, Chonnam 540-742, Korea;

    Department of Printed Electronics Engineering World Class University (WCU) Program Sunchon National University Maygok dong 315, Sunchon, Chonnam 540-742, Korea;

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