Vaddadi Venkata Satya Chidambara Swamy, Parne Saidi Reddy, Pothukanuri Nagaraju, Sriram Srinivasa Rao, Yelsani Vijayakumar
Department of Applied Sciences, National Institute of Technology-Goa, Ponda 403401, India.
Department of Physics, Sreenidhi University, Ghatkesar, Hyderabad 501301, India.
ACS Omega. 2023 May 12;8(20):17719-17730. doi: 10.1021/acsomega.3c00268. eCollection 2023 May 23.
Pure and urea-modified zinc oxide thin films are prepared using the spray pyrolysis technique on microscopic glass substrates. We have added different urea concentrations as a modifier to the zinc acetate precursor for obtaining urea-modified ZnO thin films and investigated the effect of the urea concentration on the structural, morphological, optical, and gas-sensing properties. The gas-sensing characterization of pure and urea-modified ZnO thin films is tested in the static liquid distribution technique with 25 ppm of ammonia gas at an operating temperature of 27 °C. The prepared film with a concentration of 2 wt % of urea has shown the best sensing properties toward ammonia vapors due to more active sites for the reaction between chemi-absorbed oxygen and the target vapors.
采用喷雾热解技术在微观玻璃基板上制备了纯氧化锌薄膜和尿素改性氧化锌薄膜。我们向醋酸锌前驱体中添加了不同浓度的尿素作为改性剂来制备尿素改性的ZnO薄膜,并研究了尿素浓度对其结构、形貌、光学和气体传感性能的影响。在静态液体分布技术中,于27℃的操作温度下,对纯氧化锌薄膜和尿素改性氧化锌薄膜进行了25 ppm氨气的气敏特性测试。由于化学吸附氧与目标蒸汽之间反应的活性位点更多,制备的尿素浓度为2 wt%的薄膜对氨气蒸汽表现出最佳的传感性能。