Electrical properties of TCNQ evaporated thin films

K. Kojima, A. Maeda, M. Ieda
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引用次数: 1

Abstract

Electroluminescence and electrical conduction in TCNQ (tetracyanoquinodimethane) thin films prepared by the vacuum-evaporation technique were investigated. The electrical properties depended strongly on the thin film deposition conditions, such as deposition rate and/or temperature and substrate temperature. The conduction currents were also affected by the electrode materials. Higher conductivity was observed in the specimen with a Cu anode than in that with Au or Al. The thermally stimulated current showed two peaks, at -120 and -20 degrees C. The trap depths were estimated as 0.10 and 0.22 eV, respectively. X-ray diffraction studies showed that the specimen prepared at 280 degrees C was crystalline, but the one prepared at 180 degrees C was amorphous. An infrared absorption analysis showed that the main chemical composition of TCNQ has been largely preserved in the vacuum-evaporated films.<>
TCNQ蒸发薄膜的电学性能
研究了真空蒸发法制备的四氰喹诺二甲烷薄膜的电致发光和电导率。电性能在很大程度上取决于薄膜的沉积条件,如沉积速率和/或温度和衬底温度。电极材料对导电电流也有影响。用Cu阳极的样品的电导率比用Au或Al阳极的样品高。热刺激电流在-120和-20℃处出现两个峰值,陷阱深度分别为0.10和0.22 eV。x射线衍射研究表明,在280℃下制备的样品是结晶的,而在180℃下制备的样品是无定形的。红外吸收分析表明,TCNQ的主要化学成分在真空蒸发膜中得到了很大程度的保留。
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