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首页> 外文期刊>Nanoscale Research Letters >Combined Use of Anisotropic Silver Nanoprisms with Different Aspect Ratios for Multi-Mode Plasmon-Exciton Coupling
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Combined Use of Anisotropic Silver Nanoprisms with Different Aspect Ratios for Multi-Mode Plasmon-Exciton Coupling

机译:不同纵向比的各向异性银纳米棱镜的组合使用多模例 - 激子耦合的不同纵横比

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Absorption enhancement based on interaction between the localized surface plasmon (LSP) and molecular exciton is one of the most important phenomena for the development of high-performance solar devices. In this study, hybrids of plasmonic metal nanoparticles and dye molecules have been developed, which exhibit enhanced absorption at precisely tuned wavelengths in a visible region. The hybrids consist of a porphyrin derivative, which has four absorption peaks (Q-bands) in a range of 500–700 nm, and triangular silver nanoprisms (AgPRs), which are developed by us to exhibit precisely tuned LSP resonance wavelengths. Absorption enhancement over the whole Q-band range is induced by the combined use of three kinds of AgPRs of different aspect ratios. Furthermore, the quantitative evaluation of absorption enhancement based on the LSP-based fluorescence enhancement phenomenon has demonstrated that efficient absorption enhancement can be effected at multiple wavelengths.
机译:基于局部表面等离子体(LSP)和分子激子之间的相互作用的吸收增强是高性能太阳能器件开发的最重要现象之一。在该研究中,已经开发了血浆金属纳米颗粒和染料分子的杂种,其在可见区域中具有精确调谐波长的增强吸收。杂交物由卟啉衍生物组成,其具有500-700nm的四个吸收峰(Q频带),并且由我们开发的三角银纳米载体(AGPRS)具有精确调谐的LSP共振波长。通过组合使用不同纵横比的三种AGPRS,诱导整个Q波段范围内的吸收增强。此外,基于LSP的荧光增强现象的吸收增强的定量评估已经证明,可以在多个波长下进行有效的吸收增强。

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