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Ligand Control over the Electronic Properties within the Metallic Core of Gold Nanoparticles

机译:金纳米粒子金属核内电子特性的配体控制

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The behavior of electrons within the metallic core of gold nanoparticles (AuNPs) can be controlled by the nature of the surface chemistry of the AuNPs. Specifically, the conduction electron spin resonance (CESR) spectra of AuNPs of diameter 1.8-1.9 nm are sensitive to ligand exchange of hexanethiol for 4-bromothiophenol on the surface of the nanoparticle. Chemisorption of the aromatic ligand leads to a shift in the metallic electron's g-factor toward the value expected for pure gold systems, suggesting an increase in metallic character for the electrons within the gold core. Analysis by UV/Vis absorption spectroscopy reveals a concomitant bathochromic shift of the surface plasmon resonance band of the AuNP, indicating that other electronic properties of AuNPs are also affected by the ligand exchange. In total, our results demonstrate that the chemical nature of the ligand controls the valence band structure of AuNPs.
机译:金纳米颗粒(AuNPs)的金属核内电子的行为可以通过AuNPs的表面化学性质来控制。具体而言,直径为1.8-1.9 nm的AuNPs的传导电子自旋共振(CESR)光谱对纳米表面上的4-巯基苯酚的己硫醇配体交换敏感。芳香族配体的化学吸附会导致金属电子的g因子向纯金系统的预期值移动,这表明金核中电子的金属特性增加。通过UV / Vis吸收光谱分析发现AuNP的表面等离振子共振带伴随着红移,表明AuNP的其他电子性质也受到配体交换的影响。总之,我们的结果表明,配体的化学性质控制了AuNPs的价带结构。

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