氧化剂
金属有机骨架
电导率
分子
相对湿度
化学
检出限
金属
湿度
电阻率和电导率
纳米技术
材料科学
无机化学
物理化学
有机化学
吸附
热力学
色谱法
物理
量子力学
作者
Weihua Deng,Qiaohong Li,Jie Chen,Chuanzhe Wang,Zhihua Fu,Xiao‐Liang Ye,Guan‐E Wang,Gang Xu
标识
DOI:10.1002/anie.202305977
摘要
The electronic conductivity (EC) of metal-organic frameworks (MOFs) is sensitive to strongly oxidizing guest molecules. Water is a relatively mild species, however, the effect of H2 O on the EC of MOFs is rarely reported. We explored the effect of H2 O on the EC in the MOFs (NH2 )2 -MIL-125 and its derivatives with experimental and theoretical investigations. Unexpectedly, a large EC increase of 107 on H2 SO4 @(NH2 )2 -MIL-125 by H2 O was observed. Brønsted acid-base pairs formed with the -NH2 groups, and H2 SO4 played an important role in promoting the charge transfer from H2 O to the MOF. Based on H2 SO4 @(NH2 )2 -MIL-125, a high-performance chemiresistive humidity sensor was developed with the highest sensitivity, broadest detection range, and lowest limit of detection amongst all reported sensing materials to date. This work not only demonstrated that H2 O can remarkably influence the EC of MOFs, but it also revealed that post-modification of the structure of MOFs could enhance the influence of the guest molecule on their EC to design high-performance sensing materials.
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