Effect of Aspect Ratio Distribution on Localized Surface Plasmon Resonance Extinction Spectrum of Gold Nanorods
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Abstract
Gold nanorods with different aspect ratios are prepared in micells using a seeded growth method. Their extinction spectra are observed with an UV-visible spectrophotometer and analysed theoretically. It is known that there are two plasmon resonance peaks for gold nanorod corresponding to transverse and longitudinal plasmon resonance respectively. Moreover, the longitudinal plasmon resonance peak shifts to long wavelength when we increase the aspect ratio determined from TEM. Especially, we model the extinction spectrum using Gans' theory and compare it with our experimental result. Considering the aspect radios distribution of gold nanorods, it is found that longitudinal plasmon resonance peak will be wider than the nanorods with single aspect ratio, which is consistent with our experimental result. In addition, the effect of dielectric constant of surrounding medium is considered.
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TAO Jun, LU Yong-Hua, ZHENG Rong-Sheng, LIN Kai-Qun, XIE Zhi-Guo, LUO Zhao-Feng, LI Sheng-Li, WANG Pei, MING Hai. Effect of Aspect Ratio Distribution on Localized Surface Plasmon Resonance Extinction Spectrum of Gold Nanorods[J]. Chin. Phys. Lett., 2008, 25(12): 4459-4462.
TAO Jun, LU Yong-Hua, ZHENG Rong-Sheng, LIN Kai-Qun, XIE Zhi-Guo, LUO Zhao-Feng, LI Sheng-Li, WANG Pei, MING Hai. Effect of Aspect Ratio Distribution on Localized Surface Plasmon Resonance Extinction Spectrum of Gold Nanorods[J]. Chin. Phys. Lett., 2008, 25(12): 4459-4462.
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TAO Jun, LU Yong-Hua, ZHENG Rong-Sheng, LIN Kai-Qun, XIE Zhi-Guo, LUO Zhao-Feng, LI Sheng-Li, WANG Pei, MING Hai. Effect of Aspect Ratio Distribution on Localized Surface Plasmon Resonance Extinction Spectrum of Gold Nanorods[J]. Chin. Phys. Lett., 2008, 25(12): 4459-4462.
TAO Jun, LU Yong-Hua, ZHENG Rong-Sheng, LIN Kai-Qun, XIE Zhi-Guo, LUO Zhao-Feng, LI Sheng-Li, WANG Pei, MING Hai. Effect of Aspect Ratio Distribution on Localized Surface Plasmon Resonance Extinction Spectrum of Gold Nanorods[J]. Chin. Phys. Lett., 2008, 25(12): 4459-4462.
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