4.7 Article

Rational in situ construction of Fe-modified MXene-derived MOFs as high-performance acetone sensor

期刊

CHEMICAL ENGINEERING JOURNAL
卷 444, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2022.136526

关键词

Acetone gas; Ti 3 C 2 T x nanosheets; MIL-125(Ti); Fe x Ti y O z nanoparticles; Band gap

资金

  1. National Natural Science Foundation of China [61974057, 50272026]
  2. Applied Research and Devel-opment Project of Gansu Academy of Sciences [2018JK-02, 2019RCCX0007]

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This study successfully prepared [MIL-125(Ti)/ FexTiyOz]T-X (MFTT-X) gas-sensitive materials, and demonstrated their significantly enhanced sensitivity and fast response and recovery time towards acetone.
Acetone, with diverse applications in multiple areas, may pose a risk to industrial safety and human health. For the purpose of detecting the leakage and concentration of acetone, we have successfully prepared [MIL-125(Ti)/ FexTiyOz]T-X (MFTT-X) gas-sensitive materials by in-situ solvothermal and calcination methods. Herein, the porous MIL-125(Ti) and FexTiyOz nanoparticles with intimate interfaces are grown on the template of exfoliated Ti3C2Tx nanosheets that simultaneously serve as the Ti source. The narrower bandgap, numerous surface defects, increased specific surface area, and mesoporous structure of MFTT-X composites are conducive to the diffusion and contact among acetone gas and active sites. The optimum MFT450-8 composite endows significantly enhanced sensitivity (R = 351.1) towards 100 ppm acetone at 222 degrees C, ultrafast response and recovery time (16 s / 5 s), good repeatability, and excellent selectivity. These results provide new insight into the design of highperformance sensing materials, modified with MXene derived MOFs, and analyzed the reaction mechanism of acetone that is relevant to MFT450-8 composite.

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