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首页> 外文期刊>Journal of the American Chemical Society >Chemically Modified Gold/Silver Superatoms as Artificial Elements at Nanoscale: Design Principles and Synthesis Challenges
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Chemically Modified Gold/Silver Superatoms as Artificial Elements at Nanoscale: Design Principles and Synthesis Challenges

机译:化学改性的金/银超图片作为纳米级的人工元素:设计原则和综合挑战

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摘要

Pure and doped gold/silver clusters protected by monolayers of organic ligands have attracted much interest as novel functional materials owing to their nonbulk-like, size-specific properties. They can be viewed as chemically modified superatoms because their stabilities and properties are governed by the electron shell configurations of the Au/Ag cores. Chemically modified superatoms are unique from conventional atoms in that they have additional control parameters such as surface modification, compositions, atomic packing, and size, although both of them follow similar Aufbau principles. Atomically precise synthesis and structure determination by X-ray crystallography have deepened our understanding of the correlation between the structures and fundamental properties of the superatoms. However, remaining challenges for the exploration of novel materials using superatoms as artificial elements at the nanoscale include (1) establishment of guiding principles of the electronic structures and (2) development of efficient, targeted synthesis according to rational design guidelines for functionalities. To address the first task, we herein propose and rationalize empirical guiding principles of electronic structures using icosahedral Au_(13)/Ag_(13) superatoms with the closed electron configuration as platforms. The second task is addressed by proposing design guidelines for functionalities and hydride-mediated transformation processes for efficient, targeted synthesis. These efforts will lead to the construction of a new periodic table of chemically modified superatoms and open up a materials world of quasi-molecules made of superatoms. We hope that this Perspective will contribute to the creation of a new paradigm based on superatoms, which parallels the matured world of molecular science.
机译:受到有机配体的单层保护的纯净和掺杂的金/银簇由于它们的非泡状,尺寸的特异性特性而吸引了许多兴趣的新型功能材料。它们可以被视为化学修饰的超级因素,因为它们的稳定性和性质由Au / Ag核心的电子壳配置管辖。化学修饰的超级来自常规原子中的独特原子,因为它们具有额外的控制参数,例如表面改性,组合物,原子包装和尺寸,尽管它们都遵循类似的Aufbau原理。通过X射线晶体学的原子精确合成和结构测定加深了我们对超级结构结构与基本性质之间的相关性的理解。然而,使用超自眼作为人工元素作为纳米级的人工元素的勘探勘探的挑战包括(1)根据函数的合理设计准则,建立电子结构的指导原理和(2)的发展,有效的综合的发展。为了解决第一项任务,我们在本文中提出并使用ICOSaheDral AU_(13)/ AG_(13)超级材料与闭合电子配置为平台来合理化电子结构的经验指导原理。通过提出有效,患有靶向合成的功能和氢化物介导的转化方法的设计指南来解决第二个任务。这些努力将导致建造化学修饰的超级的新周期表,并开辟了由超级制成的准分子的材料世界。我们希望这种观点将有助于创建基于超超图片的新范式,这使得分子科学的成熟世界相似。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第4期|1683-1698|共16页
  • 作者单位

    Department of Chemistry Graduate School of Science The University of Tokyo Bunkyo-ku Tokyo 113-0033 Japan;

    Department of Chemistry Graduate School of Science The University of Tokyo Bunkyo-ku Tokyo 113-0033 Japan Elements Strategy Initiative for Catalysts and Batteries (ESICB) Kyoto University Kyoto 615-8520 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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