• Acta Optica Sinica
  • Vol. 38, Issue 5, 0524001 (2018)
Xin Hong* and Chenchen Wang
Author Affiliations
  • Department of Biomedical Engineering, Faculty of Electronic Information and Electrical Engineering, Dalian University of Technology, Dalian, Liaoning 116024, China
  • show less
    DOI: 10.3788/AOS201838.0524001 Cite this Article Set citation alerts
    Xin Hong, Chenchen Wang. Optical Properties of Single Core-Capped Nanoparticles[J]. Acta Optica Sinica, 2018, 38(5): 0524001 Copy Citation Text show less
    Preparation process of SiO2@Au core-capped nanoparticles
    Fig. 1. Preparation process of SiO2@Au core-capped nanoparticles
    Relationship between incident light polarization direction and different SiO2@Au nanoparticles. (a)(b) Core-capped structure; (c)(d) core-shell structure
    Fig. 2. Relationship between incident light polarization direction and different SiO2@Au nanoparticles. (a)(b) Core-capped structure; (c)(d) core-shell structure
    Calculation results related to optical properties. (a) Core-capped structure, polarization direction parallel to symmetry axis; (b) core-capped structure, polarization direction perpendicular to symmetry axis; (c) core-shell structure, polarization direction parallel to symmetry axis; (d) core-shell structure, polarization direction perpendicular to symmetry axis
    Fig. 3. Calculation results related to optical properties. (a) Core-capped structure, polarization direction parallel to symmetry axis; (b) core-capped structure, polarization direction perpendicular to symmetry axis; (c) core-shell structure, polarization direction parallel to symmetry axis; (d) core-shell structure, polarization direction perpendicular to symmetry axis
    Variance of absorption spectrum of single SiO2@Au core-capped nanoparticle with polarization direction
    Fig. 4. Variance of absorption spectrum of single SiO2@Au core-capped nanoparticle with polarization direction
    Electric field distributions. (a) x-y cross section, polarization direction parallel to symmetry axis of core-capped nanoparticles; (b) x-y cross section, polarization direction perpendicular to symmetry axis of core-capped nanoparticles; (c) y-z cross section, polarization direction parallel to symmetry axis of core-shell nanoparticles; (d) x-y cross section, polarization direction perpendicular to symmetry axis of core-shell nanoparticles
    Fig. 5. Electric field distributions. (a) x-y cross section, polarization direction parallel to symmetry axis of core-capped nanoparticles; (b) x-y cross section, polarization direction perpendicular to symmetry axis of core-capped nanoparticles; (c) y-z cross section, polarization direction parallel to symmetry axis of core-shell nanoparticles; (d) x-y cross section, polarization direction perpendicular to symmetry axis of core-shell nanoparticles
    Variance of absorption spectra of nanoparticles with gold shell thickness (a) Single SiO2@Au core-capped structure; (b) single SiO2@Au core-shell structure
    Fig. 6. Variance of absorption spectra of nanoparticles with gold shell thickness (a) Single SiO2@Au core-capped structure; (b) single SiO2@Au core-shell structure
    Variance of absorption spectra of nanoparticles with core-shell ratio. (a) Single SiO2@Au core-capped structure; (b) single SiO2@Au core-shell structure
    Fig. 7. Variance of absorption spectra of nanoparticles with core-shell ratio. (a) Single SiO2@Au core-capped structure; (b) single SiO2@Au core-shell structure
    Variance of absorption spectra of nanoparticles with core diameter. (a) Single SiO2@Au core-capped structure; (b) single SiO2@Au core-shell structure
    Fig. 8. Variance of absorption spectra of nanoparticles with core diameter. (a) Single SiO2@Au core-capped structure; (b) single SiO2@Au core-shell structure
    Variance of absorption spectra of core-capped nanoparticles with gold shell surface coverage
    Fig. 9. Variance of absorption spectra of core-capped nanoparticles with gold shell surface coverage
    TEM images of SiO2@Au core-capped nanoparticles and distribution of gold shell thickness. (a) Various morphologies; (b) enlargement of single particle; (c) distribution histogram of gold shell thickness
    Fig. 10. TEM images of SiO2@Au core-capped nanoparticles and distribution of gold shell thickness. (a) Various morphologies; (b) enlargement of single particle; (c) distribution histogram of gold shell thickness
    UV-visible absorption spectra of SiO2@Au core-capped nanoparticles
    Fig. 11. UV-visible absorption spectra of SiO2@Au core-capped nanoparticles
    Xin Hong, Chenchen Wang. Optical Properties of Single Core-Capped Nanoparticles[J]. Acta Optica Sinica, 2018, 38(5): 0524001
    Download Citation