Interfacial Electronic Modulation in MXene-COF Nanostructures for Reversible Room-Temperature Hydrogen Sensing

  • Nallamalla, Sujith Benarzee
  • Pradeep, Natarajan
  • Akshinthala, Parameswari
  • Maity, Chandan Kumar
  • Chaudhuri, Sayan
  • 외 2명
Citations

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초록

Real-time hydrogen detection under ambient and portable conditions is often hindered by the inherent trade-off between strong adsorption for sensitivity and weak interaction for rapid reversibility in porous semiconductor materials. In this work, a redox-active anthraquinone-based covalent-organic framework (DAAQ-COF) interfaced with conductive Ti3C2 MXene enables enhanced interfacial charge transfer, simultaneously modulating hydrogen adsorption across the large accessible surface area. The optimized DAAQ@Ti3C2-50 flexible sensor detects hydrogen (1 ppm) at room temperature, exhibiting response (T-res) and recovery times (T-rec) of 29 and 18 s, respectively, with similar to 99.9% signal reversibility. Stable sensing behavior is preserved under high bending deformation (97.45 degrees; 85/87 s; 99.9%) and at 150 degrees C (74/88 s; 99.5% recovery), indicating structural integrity and sustained electronic interactions under mechanical and thermal stress. Density functional theory calculations reveal weak H-2 physisorption on pristine DAAQ-COF (-0.051 eV) and strong chemisorption on Ti3C2 (-1.91 eV), whereas the heterointerface promotes optimized hydrogen adsorption accompanied by charge redistribution. These results establish interfacial-modulation adsorption as a viable route toward high-sensitivity yet fully reversible hydrogen sensing platforms

키워드

Covalent-organic frameworksTi3C2Hydrogen sensingAmbient temperatureInterfacial electronic modulationDensity functionaltheory (VASP)
제목
Interfacial Electronic Modulation in MXene-COF Nanostructures for Reversible Room-Temperature Hydrogen Sensing
저자
Nallamalla, Sujith BenarzeePradeep, NatarajanAkshinthala, ParameswariMaity, Chandan KumarChaudhuri, SayanMudimela, Prasantha R.Surya, Surendra Babu Manabolu
DOI
10.1021/acsaenm.6c00385
발행일
2026-06
유형
Article
저널명
ACS APPLIED ENGINEERING MATERIALS
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6
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3321 ~ 3338