Liu Jin, Yang Mengdi, Lv Yuanyuan, Gao Yixin, Bai Danyang, Li Neng, Guo Haoru, Wang Anyi
School of Communication and Information Engineering, Xi'an University of Science and Technology, Xi'an 710054, China.
Nanomaterials (Basel). 2025 Jan 16;15(2):127. doi: 10.3390/nano15020127.
In this study, square-star-shaped leaf-like BiVO nanomaterials were successfully synthesized using a conventional hydrothermal method. The microstructure, elemental composition, and gas-sensing performance of the materials were thoroughly investigated. Morphological analysis revealed that BiVO prepared at different reaction temperatures exhibited square-star-shaped leaf-like structures, with the most regular and dense structures formed at 150 °C, exhibiting a large specific surface area of 2.84 m/g. The response performance of the BiVO gas sensors to different target gases was evaluated, and the results showed that the prepared BiVO gas sensor exhibited a strong response to NH. At the optimal operating temperature of 300 °C, its sensitivity to 5 ppm NH reached 13.3, with a response time of 28 s and a recovery time of 16 s. Moreover, the gas sensor exhibited excellent repeatability and anti-interference performance. These findings indicate that square-star-shaped leaf-like BiVO holds great potential in environmental monitoring and industrial safety detection, offering new insights for the development of high-performance gas sensors.
在本研究中,采用传统水热法成功合成了方星状叶状BiVO纳米材料。对材料的微观结构、元素组成和气敏性能进行了深入研究。形态分析表明,在不同反应温度下制备的BiVO呈现出方星状叶状结构,在150℃时形成的结构最规则、最致密,比表面积为2.84 m/g。评估了BiVO气敏传感器对不同目标气体的响应性能,结果表明,制备的BiVO气敏传感器对NH表现出强烈响应。在300℃的最佳工作温度下,其对5 ppm NH的灵敏度达到13.3,响应时间为28 s,恢复时间为16 s。此外,该气敏传感器还具有优异的重复性和抗干扰性能。这些发现表明,方星状叶状BiVO在环境监测和工业安全检测方面具有巨大潜力,为高性能气敏传感器的开发提供了新的思路。