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Conduction in magnesium phthalocyanine thin films with aluminium electrodes

机译:铝电极酞菁镁薄膜中的导电

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摘要

The various electrical properties and the nature of conduction mechanisms of magnesium phthalocyanine thin film devices with top and bottom aluminium electrodes have been investigated. The conduction mechanism was identified as injection limited essentially due to the electrode material. Even with the same electrode materials, the device showed asymmetric conduction behavior in the forward and reverse bias. In general the conduction was interpreted as a Schottky emission with barrier height Phi(s)=1.07 eV for the forward bias and Phi(s)=1.09 eV in the reverse bias. The effect of oxygen on the conductivity of the device has also been investigated. In the oxygen doped samples the conductivity is decreased which may be attributed to an interfacial layer between the electrode and the organic layer. Further in the oxygen doped sample while a Schottky emission is observed at lower voltages Poole-Frenkel conductivity was identified in the higher voltage region.
机译:研究了带有顶部和底部铝电极的镁酞菁薄膜器件的各种电学性质和导电机理。导电机理被确定为主要由于电极材料而受注射限制。即使使用相同的电极材料,该器件在正向和反向偏压下仍显示不对称的导电行为。通常,传导被解释为肖特基发射,正向偏压的势垒高度为Phi(s)= 1.07 eV,反向偏压的势垒高度为Phi(s)= 1.09 eV。还研究了氧气对器件电导率的影响。在掺杂氧的样品中,电导率降低,这可能归因于电极和有机层之间的界面层。进一步地,在氧掺杂的样品中,在较低的电压下观察到肖特基发射,在较高的电压范围内发现了Poole-Frenkel电导率。

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