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Postsynthesis Racemization And Place Exchange Reactions.rnanother Step To Unravel The Origin Of Chirality For Chiralrnligand-capped Gold Nanoparticles

机译:合成后外消旋化和位置交换反应。进一步揭示手性配体封端金纳米粒子手性起源的另一步骤

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摘要

We examine how postsynthesis nanoparticle ligand shell modifications as a general approach can help in the understanding of currently proposed mechanisms for gold nanoparticle chirality. We compare the CD response of chirally decorated mixed-monolayer-protected gold nanoparticles synthesized in situ with quasi-identical gold nanoparticles either prepared by place exchange reactions or subjected to an aqueous base, resulting in partial hydrolysis and simultaneous partial racemization. We find that the CD response at wavelengths where the free chiral ligand does not absorb strongly depends on the preparation conditions, i.e., in situ synthesis vs place exchange, and that postsynthesis racemization of the chiral ligand produces racemic nanoparticles with no CD response, i.e., no induction of a chiral bias during reductive nanoparticle formation. Considering all experimental results for the described gold nanoparticle system with a C_(12)H_(24) spacer between the nanoparticle surface and chiral center, the so-called "vicinal effect" with the formation of a supramolecular assembly of the chiral moieties seems to be active. Finally, we argue that postsynthesis nanoparticle ligand shell modifications such as racemization and/or place exchange reactions are very powerful tools to unravel contributions of the different gold nanoparticle chirality mechanisms.
机译:我们检查后合成纳米粒子配体壳修饰作为一种通用方法如何帮助理解当前提出的金纳米粒子手性机制。我们比较了原位合成的手性修饰的混合单层保护的金纳米粒子与通过位置交换反应制备的准相同的金纳米粒子或经历了水性碱的CD反应,从而导致部分水解和同时部分消旋。我们发现,在游离手性配体不吸收的波长下,CD响应强烈依赖于制备条件,即原位合成与位置交换,并且手性配体的合成后外消旋化产生没有CD响应的外消旋纳米颗粒,即,在还原性纳米粒子形成过程中没有手性偏倚的诱导。考虑到所描述的金纳米粒子系统在纳米粒子表面和手性中心之间具有C_(12)H_(24)间隔基的所有实验结果,似乎形成手性部分的超分子组装的所谓“附近效应”似乎是积极点。最后,我们认为合成后的纳米粒子配体壳修饰(例如外消旋和/或位置交换反应)是揭示不同金纳米粒子手性机制贡献的非常强大的工具。

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  • 来源
    《Journal of the American Chemical Society》 |2008年第43期|14201-14206|共6页
  • 作者

    Hao Qi; Torsten Hegmann;

  • 作者单位
  • 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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  • 入库时间 2022-08-18 03:20:05

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