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Electroluminescence in organic single-layer light-emitting diodes at high fields 被引量:1

Electroluminescence in organic single-layer light-emitting diodes at high fields
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摘要 By considering the interaction between Fowler-Nordheim tunneling injection theory and charge carriers transporting through the bulk, an electroluminescence model for organic single-layer diodes is presented. The expressions of the recombination current density, recombination efficiency and conductivity of the diodes are provided, which elucidate the controlling role of the electric field on mobility and recombination zone. The equilibrium of two opposite charge carriers injection and the cen-tral position of recombination zone are two important preconditions for reducing the leakage current. Space-charge-limited current occurs only over a certain high bias, meanwhile, the quantity of injection carriers increases over the transport capacity of the bulk. By considering the interaction between Fowler-Nordheim tunneling injection theory and charge carriers transporting through the bulk, an electroluminescence model for organic single-layer diodes is presented. The expressions of the recombination current density, recombination efficiency and conductivity of the diodes are provided, which elucidate the controlling role of the electric field on mobility and recombination zone. The equilibrium of two opposite charge carriers injection and the cen-tral position of recombination zone are two important preconditions for reducing the leakage current. Space-charge-limited current occurs only over a certain high bias, meanwhile, the quantity of injection carriers increases over the transport capacity of the bulk.
出处 《Science in China(Series F)》 2001年第3期168-175,共8页 中国科学(F辑英文版)
基金 This work was financed by the National Natural Science Foundation of China (Grant Nos. 29992530 and 19974002) the Paper Foundation of Northern Jiaotong University.
关键词 organic electrolununescence single-layer devices interface barrier space-charge-limited current. organic electrolununescence, single-layer devices, interface barrier, space-charge-limited current.
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