Nanogap-controlled Pd coating for hydrogen sensitive switches and hydrogen sensors

作者:Shim Young Seok; Jang Byungjin; Suh Jun Min; Noh Myoung Sub; Kim Sangtae; Han Soo Deok; Song Young Geun; Kim Do Hong; Kang Chong Yun; Jang Ho Won*; Lee Wooyoung*
来源:Sensors and Actuators B: Chemical , 2018, 255: 1841-1848.
DOI:10.1016/j.snb.2017.08.198

摘要

We present a simple and facile method for producing high-performance hydrogen (H-2) sensors based on vertically ordered metal-oxide nanorods with a Pd films on a 4-inch SiO2/Si substrate by a glancing angle deposition. Firstly, optimal density of nanorods was formed by changing an incident angle of vapor flux. Secondly, nanogaps between each nanorod were precisely controlled by manipulating thickness of Pd films. At room temperature in ambient air, 15-nm-thick Pd-coated SiO2 nanorods showed the rapid on-off switches. The average response time was approximately 2.8 s (the longest response time: 5 s), and the recovery time was less than 1 s for 2%-0.8% H-2. For 20-nm-thick Pd-coated SiO2 nanorods, detection of limit was reduced to 10 ppm due to semi-on-off operation. The reproducibility of our approaches was investigated by fabricating the Pd-coated SnO2 nanorods. They also exhibited the high H-2 sensing performance as Pd-coated SiO2 nanorods. We strongly believe that high H-2 sensing performance of Pd nanogap controlled metal oxide nanorods provides a new perspective for room-temperature H-2 switches and sensors based on H-2-induced lattice expansion.

  • 出版日期2018-2