Articles producció científicaEnginyeria Electrònica, Elèctrica i Automàtica

Highly Selective Hybrid InSe-Graphene for NO2 Gas Sensing with High Humidity Tolerance

  • Dades identificatives

    Identificador:  imarina:9461567
    Autors:  Sharma, J; Güell, F; Rizu, MI; Fadil, D; Llobet, E
    Resum:
    p-type pristine InSe, pristine graphene, and the corresponding hybrid InSe-graphene gas sensor that is highly selective to NO2 have been developed. These materials are produced at an environmentally friendly temperature of 35 degrees C by the Liquid Phase Exfoliation (LPE) technique. Then their deposition was performed on alumina transducers for achieving chemoresistive gas sensors. X-ray diffraction (XRD), field-emission scanning electron microscopy (FESEM), high-resolution transmission electron microscopy (HRTEM), photoluminescence (PL), and Raman spectroscopy were used to analyze the materials. The multilayered crystalline structure is revealed by HRTEM. Studies on gas-sensing properties showed that the response of the hybrid InSe-graphene sensor to 1 ppm of NO2 is three times higher than the one of the pristine graphene sensor, whereas the pristine InSe sensor was not responsive. While under dry conditions, the response to NO2 (1 ppb) was 3.41%, under humid conditions (RH 50%), the responsiveness was significantly increased to 6.16% and to 14.42% for sensors operated at 150 and 250 degrees C, respectively.
  • Altres:

    Autor segons l'article: Sharma, J; Güell, F; Rizu, MI; Fadil, D; Llobet, E
    Departament: Enginyeria Electrònica, Elèctrica i Automàtica
    Autor/s de la URV: Fadil, Dalal / Llobet Valero, Eduard / SHARMA, JYAYASI
    Paraules clau: Gas senso; Gas sensor; Gases; Graphene; Graphite; Humidity; Indium selenide; Inse; Liquid phase exfoliation; Mobility; Nitrogen dioxide; Operating temperature; Oxide sheets; Rama; Transistors
    Resum: p-type pristine InSe, pristine graphene, and the corresponding hybrid InSe-graphene gas sensor that is highly selective to NO2 have been developed. These materials are produced at an environmentally friendly temperature of 35 degrees C by the Liquid Phase Exfoliation (LPE) technique. Then their deposition was performed on alumina transducers for achieving chemoresistive gas sensors. X-ray diffraction (XRD), field-emission scanning electron microscopy (FESEM), high-resolution transmission electron microscopy (HRTEM), photoluminescence (PL), and Raman spectroscopy were used to analyze the materials. The multilayered crystalline structure is revealed by HRTEM. Studies on gas-sensing properties showed that the response of the hybrid InSe-graphene sensor to 1 ppm of NO2 is three times higher than the one of the pristine graphene sensor, whereas the pristine InSe sensor was not responsive. While under dry conditions, the response to NO2 (1 ppb) was 3.41%, under humid conditions (RH 50%), the responsiveness was significantly increased to 6.16% and to 14.42% for sensors operated at 150 and 250 degrees C, respectively.
    Àrees temàtiques: Bioengineering; Chemistry, analytical; Chemistry, multidisciplinary; Engenharias iii; Fluid flow and transfer processes; Instrumentation; Nanoscience & nanotechnology; Process chemistry and technology
    Accès a la llicència d'ús: https://creativecommons.org/licenses/by/3.0/es/
    Adreça de correu electrònic de l'autor: eduard.llobet@urv.cat; dalal.fadil@urv.cat; jyayasi.sharma@urv.cat
    Data d'alta del registre: 2026-02-09
    Versió de l'article dipositat: info:eu-repo/semantics/publishedVersion
    Enllaç font original: https://pubs.acs.org/doi/10.1021/acssensors.4c03521
    Referència a l'article segons font original: Acs Sensors. 10 (7): 4862-4872
    Referència de l'ítem segons les normes APA: Sharma, J; Güell, F; Rizu, MI; Fadil, D; Llobet, E (2025). Highly Selective Hybrid InSe-Graphene for NO2 Gas Sensing with High Humidity Tolerance. Acs Sensors, 10(7), 4862-4872. DOI: 10.1021/acssensors.4c03521
    URL Document de llicència: https://repositori.urv.cat/ca/proteccio-de-dades/
    DOI de l'article: 10.1021/acssensors.4c03521
    Entitat: Universitat Rovira i Virgili
    Any de publicació de la revista: 2025-07-25
    Tipus de publicació: Journal Publications
  • Paraules clau:

    Bioengineering,Chemistry, Analytical,Chemistry, Multidisciplinary,Fluid Flow and Transfer Processes,Instrumentation,Nanoscience & Nanotechnology,Process Chemistry and Technology
    Gas senso
    Gas sensor
    Gases
    Graphene
    Graphite
    Humidity
    Indium selenide
    Inse
    Liquid phase exfoliation
    Mobility
    Nitrogen dioxide
    Operating temperature
    Oxide sheets
    Rama
    Transistors
    Bioengineering
    Chemistry, analytical
    Chemistry, multidisciplinary
    Engenharias iii
    Fluid flow and transfer processes
    Instrumentation
    Nanoscience & nanotechnology
    Process chemistry and technology
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