Park Sunghoon, Kim Soohyun, Sun Gun-Joo, Lee Chongmu
Department of Materials Science and Engineering, Inha University, Yonghyun-dong, Nam-gu, Incheon 402-751, Republic of Korea.
ACS Appl Mater Interfaces. 2015 Apr 22;7(15):8138-46. doi: 10.1021/acsami.5b00972. Epub 2015 Apr 10.
Bi2O3-decorated In2O3 nanorods were synthesized using a one-step process, and their structure, as well as the effects of decoration of In2O3 nanorods with Bi2O3 on the ethanol gas-sensing properties were examined. The multiple networked Bi2O3-decorated In2O3 nanorod sensor showed responses of 171-1774% at ethanol concentrations of 10-200 ppm at 200 °C. The responses of the Bi2O3-decorated In2O3 nanorod sensor were stronger than those of the pristine-In2O3 nanorod sensors by 1.5-4.9 times at the corresponding concentrations. The two sensors exhibited short response times and long recovery times. The optimal Bi concentration in the Bi2O3-decorated In2O3 nanorod sensor and the optimal operation temperature of the sensor were 20% and 200 °C, respectively. The Bi2O3-decorated In2O3 nanorod sensor showed selectivity for ethanol gas over other gases. The origin of the enhanced response, sensing speed, and selectivity for ethanol gas of the Bi2O3-decorated In2O3 nanorod sensor to ethanol gas is discussed.
采用一步法合成了Bi2O3修饰的In2O3纳米棒,并对其结构以及Bi2O3修饰In2O3纳米棒对乙醇气敏性能的影响进行了研究。在200℃下,多重网络化的Bi2O3修饰In2O3纳米棒传感器在乙醇浓度为10 - 200 ppm时的响应率为171 - 1774%。在相应浓度下,Bi2O3修饰In2O3纳米棒传感器的响应比原始In2O3纳米棒传感器强1.5 - 4.9倍。这两种传感器均表现出短响应时间和长恢复时间。Bi2O3修饰In2O3纳米棒传感器中的最佳Bi浓度和传感器的最佳工作温度分别为20%和200℃。Bi2O3修饰In2O3纳米棒传感器对乙醇气体具有相对于其他气体的选择性。讨论了Bi2O3修饰In2O3纳米棒传感器对乙醇气体增强响应、传感速度和选择性的来源。