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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The influence of the space charge on The Ohm's law conservation in CVD diamond layers
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The influence of the space charge on The Ohm's law conservation in CVD diamond layers

机译:空间收取对CVD金刚石层欧姆法律保护的影响

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In present work we report the investigation of charge transport mechanism in thin diamonds layer grown by hot filament chemical vapor deposition (HF CVD) method. The measurements were performed in both, wide temperature and bias voltage ranges as well. In the disordered matter the variable range hopping mechanism can play a crucial role. The obtained results reveal that simultaneously holes and electrons are involved in current flow. They can be easily distinguished by their different dynamics detected by impedance spectroscopy. The diamond crystal is considered as a wide bandgap semiconductor. Hole states originated as point defects inside of the bandgap behave like usual charges in semiconductor and they obey the Ohm's law. However, the CVD diamond polycrystalline films always contains some amount of sp(2) hybridized amorphous carbon phase. This form of carbon can donate electrons to the system. Electrons gathered as space charge on diamond edges create a depletion layer with unlike properties. The Ohm's law is broken for such type of charges and their activation energy are temperature dependent. At temperature of 21 K a sudden change of surface resistivity is observed, when helium atoms are being adsorbed on slowly moving holes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在目前的工作中,我们报告了热长丝化学气相沉积(HF CVD)法生长的薄金刚石层中电荷输送机制的研究。在宽温度和偏置电压范围内进行测量。在无序的物质中,可变范围跳跃机制可以起到至关重要的作用。所获得的结果表明,同时孔和电子涉及电流。它们可以很容易地通过阻抗光谱检测到的不同动力学。金刚石晶体被认为是宽的带隙半导体。孔的状态源于带隙内部的点缺陷,就像半导体一样的惯常费用,他们服从欧姆的法律。然而,CVD金刚石多晶膜总是含有一定量的SP(2)杂交的无定形碳阶段。这种形式的碳可以将电子捐赠给系统。作为钻石边缘的空间电荷收集的电子产生了与属性不同的耗尽层。欧姆的法律为这种类型的电荷打破,它们的激活能量是温度依赖性。在21k的温度下,观察到表面电阻率的突然变化,当氦原子被吸附在缓慢移动的孔上时。 (c)2018年elestvier有限公司保留所有权利。

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