• Acta Optica Sinica
  • Vol. 42, Issue 9, 0916001 (2022)
Saihu Pan1, hang Yu1, Yunping Zhao2, Suhao Hu1, Weixia Lan2、*, and Bin Wei2、**
Author Affiliations
  • 1School of Microelectronics and Control Engineering, Changzhou University, Changzhou 213164, Jiangsu, China
  • 2Key Laboratory of Advanced Display and System Applications Ministry of Education, School of Mechatronic Engineering and Automation, Shanghai University, Shanghai 200072, China
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    DOI: 10.3788/AOS202242.0916001 Cite this Article Set citation alerts
    Saihu Pan, hang Yu, Yunping Zhao, Suhao Hu, Weixia Lan, Bin Wei. FDTD Simulation and Study on Effect of Metal Nanoparticle Introduction on Light Extraction of Top-Emitting OLED[J]. Acta Optica Sinica, 2022, 42(9): 0916001 Copy Citation Text show less
    Device structure diagrams. (a) Reference device structure; (b) metal nanoparticles on cathode surface (Device1); (c) metal nanoparticles in ETL (Device2); (d) metal nanoparticles on anode surface (Device3)
    Fig. 1. Device structure diagrams. (a) Reference device structure; (b) metal nanoparticles on cathode surface (Device1); (c) metal nanoparticles in ETL (Device2); (d) metal nanoparticles on anode surface (Device3)
    Refraction coefficient and extinction coefficient of material. (a) Refraction coefficient; (b) Extinction coefficient
    Fig. 2. Refraction coefficient and extinction coefficient of material. (a) Refraction coefficient; (b) Extinction coefficient
    Normalized spectra and transmittances. (a) Normalized output spectra of Au and Ag when wavelength of input light source is 468 nm; (b) normalized output spectra of Au and Ag when wavelength of input light source is 534 nm; (c) normalized output spectra of Au and Ag when wavelength of input light source is 618 nm; (d) transmittances of Au and Ag when wavelength of input light source is 468 nm; (e) transmittances of Au and Ag when wavelength of input light source is 534 nm; (f) transmittances of Au and Ag when wavelength of input light source is 618 nm
    Fig. 3. Normalized spectra and transmittances. (a) Normalized output spectra of Au and Ag when wavelength of input light source is 468 nm; (b) normalized output spectra of Au and Ag when wavelength of input light source is 534 nm; (c) normalized output spectra of Au and Ag when wavelength of input light source is 618 nm; (d) transmittances of Au and Ag when wavelength of input light source is 468 nm; (e) transmittances of Au and Ag when wavelength of input light source is 534 nm; (f) transmittances of Au and Ag when wavelength of input light source is 618 nm
    Transmittances of different nanoparticles under three wavelengths. (a) Ag; (b) Au
    Fig. 4. Transmittances of different nanoparticles under three wavelengths. (a) Ag; (b) Au
    Simulation results of inserting Ag NPs in different positions. (a) without inserting Ag NPs; (b) on cathode surface; (c) in middle of ETL; (d) on anode surface
    Fig. 5. Simulation results of inserting Ag NPs in different positions. (a) without inserting Ag NPs; (b) on cathode surface; (c) in middle of ETL; (d) on anode surface
    Saihu Pan, hang Yu, Yunping Zhao, Suhao Hu, Weixia Lan, Bin Wei. FDTD Simulation and Study on Effect of Metal Nanoparticle Introduction on Light Extraction of Top-Emitting OLED[J]. Acta Optica Sinica, 2022, 42(9): 0916001
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