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Influence of ambient humidity on the surface conductivity of hydrogenated diamond

机译:环境湿度对氢化金刚石表面电导率的影响

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The enhancement of the electrical conductivity of hydrogen-terminated diamond surfaces due to the adsorption of various chemical species represents a challenging problem and has a high application potential as well. In the transfer doping model of Maier ct al, the presence of a water layer that forms spontaneously in moist atmospheres on any surface plays a crucial role. Hence, in the present contribution we have focused our attention on the influence of the relative humidity (RH) on the surface conductivity. In order to perform conductivity measurements in a wet atmosphere an original technique eliminating leakage effects due to adsorbed water was developed. The conductivity was measured at room temperature for RH between 2 percent and 100 percent. Despite a rather weak dependence on RH, three well distinguished regions can be identified in the conductivity as a function of RH. Not pretending to offer a first-principles account for this behaviour, a phenomenological explanation of the data is given.
机译:由于各种化学物质的吸附而使氢封端的金刚石表面的电导率提高是一个具有挑战性的问题,并且具有很高的应用潜力。在Maier等人的转移掺杂模型中,在潮湿表面上任何表面上自发形成的水层的存在起着至关重要的作用。因此,在本论文中,我们将注意力集中在相对湿度(RH)对表面电导率的影响上。为了在潮湿的气氛中进行电导率测量,开发了一种消除由于吸附的水引起的泄漏影响的原始技术。在室温下,相对湿度在2%至100%之间测量了电导率。尽管对RH的依赖性很弱,但可以确定电导率是RH的函数,这三个区域非常清晰。不假装对此行为提供第一原理的解释,而是对数据进行了现象学的解释。

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