Park Sunghoon, An Soyeon, Ko Hyunsung, Lee Chongmu
J Nanosci Nanotechnol. 2015 Feb;15(2):1605-9. doi: 10.1166/jnn.2015.9304.
Bi2O3 is highly sensitive to low concentrations of NO2 in ambient air and are almost insensitive to most other common gases. However, it still remains a challenge to enhance their sensing performance and detection limit. This study examined the influence of the functionalization of Bi2O3 nanorods with Pt on the NO2 gas sensing properties. Pt-functionalized β-Bi2O3 nanorods were fabricated by the thermal evaporation of Bi powder followed by sputter-deposition of Pt and annealing. The Pt-functionalized nanorods ranged from 100 to 300 nm in diameter and from a few tens to a few hundreds of micrometers in length. Multiple networked Pt-functionalized β-Bi2O3 nanorod sensors showed the responses of ~141 to ~313% at 1-5 ppm NO2 at 300 °C. These response values were 1.23-1.93 times higher than those of pristine Bi2O3 nanorod sensors at 1-5 ppm NO2. The origin of the enhancement of the sensing properties of the Bi2O3 nanorods by Pt functionalization is discussed.
Bi2O3对环境空气中低浓度的NO2高度敏感,而对大多数其他常见气体几乎不敏感。然而,提高其传感性能和检测限仍然是一个挑战。本研究考察了用Pt对Bi2O3纳米棒进行功能化处理对NO2气敏性能的影响。通过Bi粉的热蒸发、随后Pt的溅射沉积和退火制备了Pt功能化的β-Bi2O3纳米棒。Pt功能化纳米棒的直径为100至300nm,长度为几十至几百微米。多个网络化的Pt功能化β-Bi2O3纳米棒传感器在300℃下对1-5ppm NO2的响应为141%至313%。这些响应值比原始Bi2O3纳米棒传感器在1-5ppm NO2时的响应值高1.23-1.93倍。讨论了通过Pt功能化提高Bi2O3纳米棒传感性能的原因。