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Absorption and transport enhancement by Ag nanoparticle plasmonics for organic optoelectronics

机译:Ag纳米颗粒等离子体对有机光电子的吸收和传输增强

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摘要

The organic films such as P3HT/PCBM incorporating Ag metal nanoparticles are fabricated and experimentally characterized. Due to the excited surface plasma induced by Ag metal nanoparticles, the absorption of the active organic material layer is increased by around 30%. The broadened absorption spectrum to the 260-650nm wavelength range is also observed from our measurements because of the enhanced scattering cross section by Ag metal nanoparticles. Furthermore, by incorporating Ag nanoparticles into the active layer, the mobility have also been improved. Finite Difference Time Domain (FDTD) simulations confirm the increase in transmission of electromagnetic radiation at visible wavelength. The hopping model is proposed to explain the transport mechanism for the device operations. These observations suggest a variety of approaches for improving the performance of general organic optoelectronic devices.
机译:制备并通过实验表征了掺有Ag金属纳米颗粒的有机膜,例如P3HT / PCBM。由于由Ag金属纳米颗粒引起的激发的表面等离子体,活性有机材料层的吸收增加了约30%。从我们的测量中还可以观察到吸收光谱扩展到260-650nm波长范围,这是因为Ag金属纳米颗粒的散射截面增强了。此外,通过将Ag纳米颗粒结合到活性层中,迁移率也得到了改善。时域有限差分(FDTD)模拟证实了可见光波长下电磁辐射的传输增加。提出了跳跃模型来解释设备操作的传输机制。这些观察结果提出了多种改善常规有机光电器件性能的方法。

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