An Soyeon, Park Sunghoon, Ko Hyunsung, Jin Changhyun, Lee Chongmu
J Nanosci Nanotechnol. 2015 Jan;15(1):433-8. doi: 10.1166/jnn.2015.8333.
The NO2 gas sensing properties of ZnGa2O4-TiO2 heterostructure nanorods was examined. ZnGa2O4-core/TiO2-shell nanorods were fabricated by the thermal evaporation of a mixture of Zn and GaN powders and the sputter deposition of TiO2. Multiple networked ZnGa2O4-core/TiO2-shell nanorod sensors showed the response of 876% at 10 ppm NO2 at 300 degrees C. This response value at 10 ppm NO2 is approximately 4 times larger than that of bare ZnGa2O4 nanorod sensors. The response values obtained by the ZnGa2O4-core/TiO2-shell nanorods in this study are more than 13 times higher than those obtained previously by the SnO2-core/ZnO-shell nanofibers at 5% NO2. The significant enhancement in the response of ZnGa2O4 nanorods to NO2 gas by coating them with TiO2 can be explained based on the space-charge model.
研究了ZnGa2O4-TiO2异质结构纳米棒的NO2气敏特性。通过热蒸发Zn和GaN粉末的混合物以及溅射沉积TiO2制备了ZnGa2O4核/TiO2壳纳米棒。多个联网的ZnGa2O4核/TiO2壳纳米棒传感器在300℃下对10 ppm NO2的响应为876%。在10 ppm NO2时的该响应值约为裸ZnGa2O4纳米棒传感器响应值的4倍。本研究中ZnGa2O4核/TiO2壳纳米棒获得的响应值比之前SnO2核/ZnO壳纳米纤维在5% NO2时获得的响应值高13倍以上。基于空间电荷模型可以解释通过用TiO2包覆ZnGa2O4纳米棒使其对NO2气体的响应显著增强的现象。