丙酮
单宁酸
制作
异质结
蚀刻(微加工)
材料科学
介孔材料
模板方法模式
化学工程
检出限
选择性
比表面积
各向同性腐蚀
湿度
纳米技术
工作温度
相对湿度
水蒸气
金属
多孔性
离子
水溶液中的金属离子
核化学
化学稳定性
胺气处理
无机化学
化学
作者
Qiaolin Li,Tiantian Cao,Gang Chen,Hongtao Guan,Chengjun Dong,Z. Yin
标识
DOI:10.1016/j.snb.2026.139823
摘要
Reliable detection of volatile organic compounds (VOCs), such as acetone, is essential for environmental monitoring and non-invasive disease diagnosis. However, conventional In 2 O 3 -based gas sensors suffer from high operating temperatures, humidity interference, and limited selectivity. Herein, we report one-dimensional (1D) hollow In 2 O 3 @Fe 2 O 3 core-shell heterojunction tubes fabricated via a tannic acid (TA)-assisted transformation of MIL-68(In). TA plays dual roles in etching the MIL-68(In) template and coordinating with Fe 3+ ions to form a mesoporous tubular structure with an enhanced specific surface area of 89.57 m 2 g -1 for In 2 O 3 @Fe 2 O 3 -0.75. Benefiting from the synergistic n-n heterojunction effect and abundant active sites, the optimized In 2 O 3 @Fe 2 O 3 -0.75 sensor exhibits a markedly improved response of 263.6 to 100 ppm acetone at 200 °C, approximately 3.6 times that of pristine In 2 O 3 , and enables detection down to 100 ppb with a response of 1.87. Furthermore, the sensor demonstrates rapid response/recovery (8/9 s), excellent long-term stability over 30 days, and remarkable humidity tolerance across 29-82% RH at 25 °C. This work provides an effective MOF-derived strategy for constructing hollow metal-oxide core-shell heterojunctions toward high-performance and humidity-tolerant gas sensing applications. • 1D In 2 O 3 @Fe 2 O 3 core-shell tubes were fabricated with the assistance of TA. • TA acts as both an etchant for MIL-68(In) template and a complexing agent. • In 2 O 3 @Fe 2 O 3 -0.75 sensor demonstrates response of 263.6 to 100 ppm acetone. • The In 2 O 3 @Fe 2 O 3 -0.75 sensor achieves outstanding humidity resistance. • The enhanced performance is ascribed to two components and synergistic effects.
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