Huang Chuntian, Ye Nini, Luo Haijun, Shao Hezhu, Qian Weijin, Fang Chaolong, Dong Changkun
Wenzhou Key Lab of Micro-Nano Optoelectronic Devices, Wenzhou University, Wenzhou 325035, China.
Materials (Basel). 2025 Mar 7;18(6):1202. doi: 10.3390/ma18061202.
Carbon nanotube (CNT)-metal Schottky contacts are widely employed in different types of electronic devices, including field effect transistors (FET) and gas sensors. CNTs are normally considered stable on electronic properties with gas adsorptions. In this work, performance changes of the multi-walled carbon nanotube (MWCNT)-metal junctions related to hydrogen adsorptions were illustrated. MWCNT/Pd and MWCNT/Au Schottky junctions based resistive sensors were constructed to investigate the low-pressure gas sensing performances for hydrogen in the range of 10~10 Pa. Two types of sensors presented opposite behaviors with hydrogen adsorptions, i.e., the sensor resistance rose for the MWCNT/Pd sensor but dropped for the MWCNT/Au sensor with increasing hydrogen pressure. The work function reductions of Pd and CNT are considered the key cause, which could change the Schottky barrier properties dramatically. This behavior may play crucial roles for the accurate utilization of CNT-based Schottky devices.
碳纳米管(CNT)-金属肖特基接触被广泛应用于不同类型的电子器件中,包括场效应晶体管(FET)和气体传感器。碳纳米管通常被认为在气体吸附时电子性能稳定。在这项工作中,阐述了多壁碳纳米管(MWCNT)-金属结与氢吸附相关的性能变化。构建了基于MWCNT/Pd和MWCNT/Au肖特基结的电阻式传感器,以研究10~10 Pa范围内氢气的低压气敏性能。两种类型的传感器在氢吸附时表现出相反的行为,即随着氢气压力增加,MWCNT/Pd传感器的电阻上升,而MWCNT/Au传感器的电阻下降。Pd和碳纳米管的功函数降低被认为是关键原因,这可能会显著改变肖特基势垒特性。这种行为对于基于碳纳米管的肖特基器件的准确应用可能起着至关重要的作用。