• Chinese Optics Letters
  • Vol. 14, Issue 8, 081403 (2016)
Chong Zhang, Jiaqi Ma, Dongdong Zhu, Liang Liu, Dameng Wang, Xiangdong Liu, and Ming Chen*
Author Affiliations
  • School of Physics, Shandong University, Jinan 250100, China
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    DOI: 10.3788/COL201614.081403 Cite this Article Set citation alerts
    Chong Zhang, Jiaqi Ma, Dongdong Zhu, Liang Liu, Dameng Wang, Xiangdong Liu, Ming Chen. Tadpole-shaped Au nano-particles fabricated by laser fragmentation of Au nano-spheres in liquid[J]. Chinese Optics Letters, 2016, 14(8): 081403 Copy Citation Text show less
    (a) Typical low magnification of the nano-particles by the laser ablation of the pure Au metal in the solution. The inset shows the enlarged TEM image of the individual Au nano-spheres. (b) The HRTEM image of the Au nano-spheres. (c) The representative low-magnification TEM image of the Au nano-particles fabricated by unfocused laser beam irradiation of Au nano-spheres with a power density of 1.5 GW/cm2. The inset in panel (c) shows the typical tadpole-shaped Au NMs. (d) The HRTEM image of the tadpole-shaped Au NMs.
    Fig. 1. (a) Typical low magnification of the nano-particles by the laser ablation of the pure Au metal in the solution. The inset shows the enlarged TEM image of the individual Au nano-spheres. (b) The HRTEM image of the Au nano-spheres. (c) The representative low-magnification TEM image of the Au nano-particles fabricated by unfocused laser beam irradiation of Au nano-spheres with a power density of 1.5GW/cm2. The inset in panel (c) shows the typical tadpole-shaped Au NMs. (d) The HRTEM image of the tadpole-shaped Au NMs.
    (a) Representative low-magnification and (b) enlarged TEM images of the tadpole-shaped Au NMs by laser irradiation of Au nano-spheres with a power density of 3 GW/cm2, respectively.
    Fig. 2. (a) Representative low-magnification and (b) enlarged TEM images of the tadpole-shaped Au NMs by laser irradiation of Au nano-spheres with a power density of 3GW/cm2, respectively.
    Schematic growth of the tadpole-shaped Au NMs via the laser fragmentation of the individual Au nano-sphere in liquid.
    Fig. 3. Schematic growth of the tadpole-shaped Au NMs via the laser fragmentation of the individual Au nano-sphere in liquid.
    (a) Curve of the mean length of the tail in tadpole-shaped Au NMs versus the laser power density. (b) The LSPR absorbance spectrums of the Au nano-spheres and tadpole-shaped Au NMs.
    Fig. 4. (a) Curve of the mean length of the tail in tadpole-shaped Au NMs versus the laser power density. (b) The LSPR absorbance spectrums of the Au nano-spheres and tadpole-shaped Au NMs.
    Chong Zhang, Jiaqi Ma, Dongdong Zhu, Liang Liu, Dameng Wang, Xiangdong Liu, Ming Chen. Tadpole-shaped Au nano-particles fabricated by laser fragmentation of Au nano-spheres in liquid[J]. Chinese Optics Letters, 2016, 14(8): 081403
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