Photoconduction Dynamics in Two-Layer Organic Photoconductors

Bibliographic Information

Other Title
  • 積層有機光伝導体における光キャリアの挙動
  • — キャリアトラッピングと光疲労 —
  • — Charge Carrier Trapping and Reversible Light-Induced Fatigue —

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Description

Photocarrier generation, transport, and trapping in two-1ayer organic photoconductors consisting of a carrier generation layer (CGL) and a transparent carrier transport layer (CTL) were studied by photoacoustic spectroscopy, time-of-flight (TOF) photoconductivity measurements, xerographic discharge measurements, and thermally stimulated current (TSC) measurements. The injection and trapping processes of holes at the CGL/CTL interface were evaluated from photoacoustic spectroscopy and xerographic discharge measurments. The drift mobility of holes in the CTL and the activation energy for charge transport were obtained from TOF photoconductivity and TSC measurements. The trapping lifetimes of holes in the CGL and the CTL were measured by the delayed-field and the interrupted-field TOF methods, respectively. From experimental results, we systematically discuss the photoconduction dynamics in two-layer organic photoconductors; (1) the photocarrier generation in the CGL and the trapping of holes at the CGL/CTL interface and (2) the mechanism of the buildup and the decay of the residual potential.

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Details 詳細情報について

  • CRID
    1390282679075148416
  • NII Article ID
    130004484552
  • DOI
    10.11370/isjepj.30.2
  • ISSN
    18805108
    0387916X
  • Text Lang
    ja
  • Data Source
    • JaLC
    • CiNii Articles
  • Abstract License Flag
    Disallowed

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