National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan.
Sensors (Basel). 2011;11(1):674-95. doi: 10.3390/s110100674. Epub 2011 Jan 11.
In this paper, I review my recent results in investigating hydrogen sensors using nitride-based semiconductor diodes, focusing on the interaction mechanism of hydrogen with the devices. Firstly, effects of interfacial modification in the devices on hydrogen detection sensitivity are discussed. Surface defects of GaN under Schottky electrodes do not play a critical role in hydrogen sensing characteristics. However, dielectric layers inserted in metal/semiconductor interfaces are found to cause dramatic changes in hydrogen sensing performance, implying that chemical selectivity to hydrogen could be realized. The capacitance-voltage (C-V) characteristics reveal that the work function change in the Schottky metal is not responsible mechanism for hydrogen sensitivity. The interface between the metal and the semiconductor plays a critical role in the interaction of hydrogen with semiconductor devises. Secondly, low-frequency C-V characterization is employed to investigate the interaction mechanism of hydrogen with diodes. As a result, it is suggested that the formation of a metal/semiconductor interfacial polarization could be attributed to hydrogen-related dipoles. In addition, using low-frequency C-V characterization leads to clear detection of 100 ppm hydrogen even at room temperature where it is hard to detect hydrogen by using conventional current-voltage (I-V) characterization, suggesting that low-frequency C-V method would be effective in detecting very low hydrogen concentrations.
在本文中,我回顾了我最近在使用氮化物基半导体二极管研究氢气传感器方面的研究成果,重点讨论了氢气与器件相互作用的机制。首先,讨论了器件中界面修饰对氢气检测灵敏度的影响。肖特基电极下 GaN 的表面缺陷在氢气传感特性中不起关键作用。然而,在金属/半导体界面插入介电层会导致氢气传感性能发生显著变化,这意味着可以实现对氢气的化学选择性。电容-电压(C-V)特性表明肖特基金属中的功函数变化不是氢气敏感性的机制。金属和半导体之间的界面在氢气与半导体器件的相互作用中起着关键作用。其次,采用低频 C-V 特性研究了氢气与二极管的相互作用机制。结果表明,金属/半导体界面形成的极化可能归因于与氢气相关的偶极子。此外,使用低频 C-V 特性甚至可以在室温下清晰地检测到 100ppm 的氢气,而使用传统的电流-电压(I-V)特性很难检测到氢气,这表明低频 C-V 方法在检测非常低的氢气浓度时非常有效。