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Dong Ick Son - One of the best experts on this subject based on the ideXlab platform.

  • current bistability and carrier transport mechanisms of organic bistable devices based on hybrid ag nanoparticle Polymethyl Methacrylate Polymer nanocomposites
    Applied Physics Letters, 2010
    Co-Authors: Wontae Kim, Jae Hun Jung, Tae Whan Kim, Dong Ick Son
    Abstract:

    The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.

  • current bistability and carrier transport mechanisms of organic bistable devices based on hybrid ag nanoparticle Polymethyl Methacrylate Polymer nanocomposites
    Applied Physics Letters, 2010
    Co-Authors: Wontae Kim, Jae Hun Jung, Tae Whan Kim, Dong Ick Son
    Abstract:

    The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.

Wontae Kim - One of the best experts on this subject based on the ideXlab platform.

  • current bistability and carrier transport mechanisms of organic bistable devices based on hybrid ag nanoparticle Polymethyl Methacrylate Polymer nanocomposites
    Applied Physics Letters, 2010
    Co-Authors: Wontae Kim, Jae Hun Jung, Tae Whan Kim, Dong Ick Son
    Abstract:

    The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.

  • current bistability and carrier transport mechanisms of organic bistable devices based on hybrid ag nanoparticle Polymethyl Methacrylate Polymer nanocomposites
    Applied Physics Letters, 2010
    Co-Authors: Wontae Kim, Jae Hun Jung, Tae Whan Kim, Dong Ick Son
    Abstract:

    The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.

Tae Whan Kim - One of the best experts on this subject based on the ideXlab platform.

  • current bistability and carrier transport mechanisms of organic bistable devices based on hybrid ag nanoparticle Polymethyl Methacrylate Polymer nanocomposites
    Applied Physics Letters, 2010
    Co-Authors: Wontae Kim, Jae Hun Jung, Tae Whan Kim, Dong Ick Son
    Abstract:

    The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.

  • current bistability and carrier transport mechanisms of organic bistable devices based on hybrid ag nanoparticle Polymethyl Methacrylate Polymer nanocomposites
    Applied Physics Letters, 2010
    Co-Authors: Wontae Kim, Jae Hun Jung, Tae Whan Kim, Dong Ick Son
    Abstract:

    The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.

Jae Hun Jung - One of the best experts on this subject based on the ideXlab platform.

  • current bistability and carrier transport mechanisms of organic bistable devices based on hybrid ag nanoparticle Polymethyl Methacrylate Polymer nanocomposites
    Applied Physics Letters, 2010
    Co-Authors: Wontae Kim, Jae Hun Jung, Tae Whan Kim, Dong Ick Son
    Abstract:

    The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.

  • current bistability and carrier transport mechanisms of organic bistable devices based on hybrid ag nanoparticle Polymethyl Methacrylate Polymer nanocomposites
    Applied Physics Letters, 2010
    Co-Authors: Wontae Kim, Jae Hun Jung, Tae Whan Kim, Dong Ick Son
    Abstract:

    The current bistability and the carrier transport mechanisms of organic bistable devices (OBDs) using Ag nanoparticle-Polymethyl Methacrylate (PMMA) nanocomposites have been investigated. Current-voltage measurements at 300 K on the Al/Ag nanoparticles embedded in the PMMA layer/indium-tin-oxide devices exhibit a current bistability with an ON/OFF ratio of 103. Write-read-erase-read sequence results demonstrate the switching characteristics of the OBD. The cycling endurance number of the ON/OFF switching for the OBD is above 7×104. The current bistability and carrier transport mechanisms of the OBD fabricated utilizing hybrid Ag nanoparticle-PMMA Polymer nanocomposites are described on the basis of the experimental data.

S Z Deng - One of the best experts on this subject based on the ideXlab platform.

  • field emission characteristics of Polymethyl Methacrylate Polymer thin film
    Journal of Vacuum Science & Technology B, 2007
    Co-Authors: W Y Huang, Chenning Liu, Jun Chen, S Z Deng
    Abstract:

    Polymethyl Methacrylate (PMMA) thin films were prepared by spin coating using chloroform solvent. The field emission current versus applied field characteristics were tested. Stable field emission was observed after a switch-on process. The field emission properties of PMMA film exhibit vacuum gap dependence characteristics. The scanning electron microscope inspection reveals that after emission process microwhiskers were formed at the surface. The gap dependence of the field emission properties was explained. It is proposed that the high field during the switch-on process leads to the formation of the microwhiskers.

  • field emission characteristics of Polymethyl Methacrylate Polymer thin film
    International Vacuum Nanoelectronics Conference, 2006
    Co-Authors: W Y Huang, Chenning Liu, Jun Chen, S Z Deng
    Abstract:

    Field emission display (FED) as one of the next generation display technologies, has attracted the attentions of many researchers. Preparation of low cost cold cathode material for FED application is the topic that attracts much attention in this area. In this paper, the vacuum gap dependence of field emission characteristics of Polymethyl Methacrylate (PMMA) Polymer thin film were observed. The observed phenomena were attributed to the formation of microwhiskers during the switch-on process. Scanning electron microscopy of Polymer surface confirmed the inclusions of microwhiskers