胶体金
范德瓦尔斯力
硫黄
纳米颗粒
化学
共价键
单层
纳米技术
激发态
密度泛函理论
连接器
化学物理
分子
计算化学
材料科学
有机化学
原子物理学
物理
操作系统
生物化学
计算机科学
作者
Jeffrey R. Reimers,Michael J. Ford,Arnab Halder,Jens Ulstrup,Noel S. Hush
标识
DOI:10.1073/pnas.1600472113
摘要
The synthetic chemistry and spectroscopy of sulfur-protected gold surfaces and nanoparticles is analyzed, indicating that the electronic structure of the interface is Au(0)-thiyl, with Au(I)-thiolates identified as high-energy excited surface states. Density-functional theory indicates that it is the noble character of gold and nanoparticle surfaces that destabilizes Au(I)-thiolates. Bonding results from large van der Waals forces, influenced by covalent bonding induced through s-d hybridization and charge polarization effects that perturbatively mix in some Au(I)-thiolate character. A simple method for quantifying these contributions is presented, revealing that a driving force for nanoparticle growth is nobleization, minimizing Au(I)-thiolate involvement. Predictions that Brust-Schiffrin reactions involve thiolate anion intermediates are verified spectroscopically, establishing a key feature needed to understand nanoparticle growth. Mixing of preprepared Au(I) and thiolate reactants always produces Au(I)-thiolate thin films or compounds rather than monolayers. Smooth links to O, Se, Te, C, and N linker chemistry are established.
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