分析物
材料科学
选择性
导电体
化学传感器
金属有机骨架
金属
硫黄
无机化学
纳米技术
电极
有机化学
化学
色谱法
吸附
催化作用
物理化学
冶金
复合材料
作者
Li Li,Shiqi Zhang,Yang Lu,Junyao Zhang,Xuan Zhang,Ruizhi Wang,Jia Huang
标识
DOI:10.1002/adma.202104120
摘要
Abstract High selectivity to specific analyte is essential for chemical sensors but difficult to achieve. For most chemical sensors, although the response to the target analyte can be more significant than interference analytes, they still show obvious responses to the interference analytes. Here, highly selective chemical sensors are developed with negligible responses to other interference vapors. Instead of the widely investigated electronically conductive metal–organic frameworks (EC‐MOFs), ionically conductive MOFs (IC‐MOFs) are used as the sensing materials, and the unique interaction between the ion charge carrier and the analyte is utilized to achieve high sensing selectivity. Through the modulation of the metal nodes (Cu, Co, Ni, Zn, Mg) and organic ligands (H 2 TCPP, H 2 THPP, H 4 BTEC), sensor arrays based on a set of IC‐MOFs are fabricated and achieve highly selective detection toward volatile sulfur compounds (VSCs). H 2 S and CH 3 SH can be selectively detected at concentrations down to 1 ppb and 1 ppm, respectively. The facile preparation and low cost endow the device with disposability. These results suggest new approaches for the development of highly selective chemical sensors.
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