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首页> 外文期刊>ACS nano >Metal-Semiconductor Hybrid Aerogels: Evolution of Optoelectronic Properties in a Low-Dimensional CdSe/Ag Nanoparticle Assembly
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Metal-Semiconductor Hybrid Aerogels: Evolution of Optoelectronic Properties in a Low-Dimensional CdSe/Ag Nanoparticle Assembly

机译:金属半导体混合气凝胶:低维CdSe / Ag纳米粒子组件中光电性能的演变

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Hybrid nanomaterials composed of metal-semiconductor components exhibit unique properties in comparison to their individual counterparts, making them of great interest for optoelectronic applications. Theoretical and experimental studies suggest that interfacial interactions of individual components are of paramount importance to produce hybrid electronic states. The direct cross-linking of nanoparticles (NPs) via controlled removal of the surfactant ligands provides a route to tune interfacial interactions in a manner that has not been thoroughly investigated. Herein, we report the synthesis of CdSe/Ag heteronanostructures (aerogels) via oxidation induced self-assembly of thiol-coated NPs and the evolution of optical properties as a function of composition. Three hybrid systems were investigated, where the first and second excitonic energies of CdSe were matched with plasmonic energy of Au or Ag NPs and Ag hollow NPs. Physical characterization of the aerogels suggests the presence of an interconnected network of hexagonal CdSe and cubic Ag NPs. The optical properties of hybrids were systematically examined through UV-vis, photoluminescence (PL), and time-resolved (TR) PL spectroscopic studies that indicate the generation of alternate radiative decay pathways. A new emission (640 nm) from CdSe/Ag aerogels emerged at Ag loading as low as 0.27%, whereas absorption band tailing and PL quenching effects were observed at higher Ag and Au loading, respectively. The TRPL decay time of the new emission (similar to 600 ns) is markedly different from those of the band-edge (1.83 +/- 0.03 ns) and trap-state (1190 +/- 120 ns) emission maxima of phase pure CdSe, supporting the existence of alternate radiative relaxation pathways in sol-gel derived CdSe/Ag hybrids.
机译:由金属-半导体成分组成的杂化纳米材料与其各自的对应物相比具有独特的性能,这使其在光电应用中引起了极大的兴趣。理论和实验研究表明,单个组件的界面相互作用对于产生混合电子态至关重要。通过控制去除表面活性剂配体的纳米粒子(NPs)的直接交联提供了一种以尚未彻底研究的方式调节界面相互作用的途径。在这里,我们报告了CdSe / Ag异质结构(气凝胶)的合成,该结构是通过氧化诱导的硫醇包覆的NPs的自组装以及作为组成函数的光学性质的演变。研究了三种混合系统,其中CdSe的第一和第二激子能量与Au或Ag NPs和Ag空心NPs的等离子体能匹配。气凝胶的物理特征表明存在六角形CdSe和立方Ag NP的互连网络。通过紫外可见光,光致发光(PL)和时间分辨(TR)PL光谱研究系统地检查了杂种的光学特性,这些研究表明产生了替代的辐射衰变途径。 CdSe / Ag气凝胶在Ag含量低至0.27%时出现了新的发射峰(640 nm),而在Ag和Au含量较高时分别观察到吸收带拖尾和PL猝灭效应。新发射的TRPL衰减时间(约600 ns)与纯CdSe的带边发射最大值(1.83 +/- 0.03 ns)和陷阱态发射最大值(1190 +/- 120 ns)明显不同,支持溶胶-凝胶衍生的CdSe / Ag杂化物中存在其他辐射弛豫途径。

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