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Synthesis and energetics of gold nanoclusters tailored by interfacial bonding structure.

机译:通过界面键合结构定制的金纳米团簇的合成和能量学。

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摘要

In addition to the well known quantum confinement effects resulted from size and shape, interfacial bond structure is another factor, affecting the properties of the nanomaterial that is rarely studied. Inspired by the "Au-S-Au" staple motif discovered from the crystal structure of monothiol protected Au102 nanocluster (Science, 2007, 318, 430), dithiol molecules (e.g. 1, 2-dithiol, 1, 4-dithiol, etc.) with molecular structural constraint have been employed to create dithiolate protected clusters or mixed monothiolate and dithiolate protected clusters. The structure and properties of the Au clusters are expected to change due to two effects: The entropy gain of dithiol over monothiol protection and the constraint to the formation of the thiol bridging motif. DMPS (1, 2-dithiol molecule) stabilized clusters with characteristic absorption bands have been obtained, and characterized by multiple techniques. Monolayer reaction on gold core surface between the monothiol tiopronin and dithiol DMPS has been performed, and the mechanism has been probed. Mixed phenylethanethiolate and durene-dithiolate (1, 4-dithiol molecule) protected Au130 clusters with rich electrochemical features have been created, and the optical and electrochemical energetics have been successfully correlated based on core and core-ligand energy states. Furthermore, the impact of 1, 4-dithiolate-Au bonding on the near infrared luminescence has been studied.;INDEX WORDS: Au MPCs, Staple motif, DMPS, Au DTCs, Au4, Tiopronin, Monolayer reaction, Durene-DT, Au MTCs, Au130, Optical energetic, Electrochemistry, Near infrared luminescence, 1, 4-Dithiolate-Au bonding.
机译:除了由尺寸和形状引起的众所周知的量子限制效应外,界面键结构是另一个影响纳米材料性能的因素,这一点很少研究。受单硫醇保护的Au102纳米团簇的晶体结构中发现的“ Au-S-Au”钉基序的启发(科学,2007,318,430),二硫醇分子(例如1、2-二硫醇,1、4-二硫醇等)。 )具有分子结构约束的分子已被用于产生二硫醇盐保护的簇或混合的单硫醇盐和二硫醇盐保护的簇。预计金簇的结构和性质将由于两个作用而发生变化:二硫醇在单硫醇保护作用下的熵增和对硫醇桥连基序形成的限制。已获得具有特征吸收带的DMPS(1,2-二硫醇分子)稳定簇,并通过多种技术对其进行了表征。已经进行了单硫醇硫蛋白和二硫醇DMPS在金核表面的单层反应,并探讨了其机理。建立了具有丰富电化学特征的混合苯乙硫醇盐和杜伦二硫醇盐(1,4-二硫醇分子)保护的Au130团簇,并已基于核和核-配体能态成功地关联了光能和电化学能。此外,还研究了1,4-二硫代-金键对近红外发光的影响。 ,Au130,光能,电化学,近红外发光,1,4-二硫代-金键合。

著录项

  • 作者

    Tang, Zhenghua.;

  • 作者单位

    Georgia State University.;

  • 授予单位 Georgia State University.;
  • 学科 Chemistry Inorganic.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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