1998
DOI: 10.1063/1.122706
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Charge injection and transport in single-layer organic light-emitting diodes

Abstract: We present experimental and device model results for the current–voltage characteristics of a series of organic diodes. We consider three general types of structures: electron only, hole only, and bipolar devices. Electron and hole mobility parameters are extracted from the corresponding single carrier structures and then used to describe the bipolar devices. The device model successfully describes the experimental results for: electron only devices as thickness is varied, hole only devices as the contact meta… Show more

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Cited by 78 publications
(44 citation statements)
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“…Diodes made with several metals of varying work function ͓Al͑4.2 eV͒, Ag͑4.3 eV͒, Cu͑4.5 eV͔͒ were tested. In all cases, the current flow of holes that was contact limited 8 changed to bulk limited when PEDOT͑PSS͒ was used in between the anode metal and MEH-PPV. We choose to study copper metal due to the good stability and ease of patterning.…”
Section: © 1999 American Institute Of Physics ͓S0003-6951͑99͒04748-8͔mentioning
confidence: 99%
“…Diodes made with several metals of varying work function ͓Al͑4.2 eV͒, Ag͑4.3 eV͒, Cu͑4.5 eV͔͒ were tested. In all cases, the current flow of holes that was contact limited 8 changed to bulk limited when PEDOT͑PSS͒ was used in between the anode metal and MEH-PPV. We choose to study copper metal due to the good stability and ease of patterning.…”
Section: © 1999 American Institute Of Physics ͓S0003-6951͑99͒04748-8͔mentioning
confidence: 99%
“…[25,26] In addition, these four layers are able to block a diffusion of active metal atoms, such as Cs or Ca, into PFO to form quenching centers during device fabrication. [17,18] Note that we also prepared a device with the structure, ITO/ PEDOT/PFO/Cs 2 CO 3 (spin coating)/Cs 2 CO 3 /Ca/Al, in which the Cs 2 CO 3 was spin-coated from its dilute solution in 2-ethoxyethanol is the same way as that in the previous report.…”
mentioning
confidence: 97%
“…In addition to the modifications of electrodes, many efforts have been attempted to reduce an imbalance in hole and electron fluxes and a possible quenching by cathode by introducing a hole blocking layer (which was also claimed as an electron transport layer), [12,13] since in conjugated polymers hole mobility is often larger than electron mobility leading to a recombination zone very close to the cathode. [17,18] Hirayama et al [12] and Tseng et al [13] inserted a layer of polyfluorenebased copolymer between MEH-PPV and Ca cathode and a layer of 1,3,5-tris(N-phenylbenzimidazol-2-yl) benzene (TPBI) between PFO and Ca cathode as hole blocking layer leading to the improved current efficiency from 1.0 to 3.6 cd A À1 and 0.61 to 1.45 cd A…”
mentioning
confidence: 99%
“…On taking this first effect into account and also considering a current flow due to thermionic emission (j th ), the overall current flow through (J D ) of ITO/MEH-PPV/Al devices, which was assumed to be dominated by holes, was well described by Davids et al [81,84]:…”
Section: Field-induced Injectionmentioning
confidence: 99%