Hybrid MoS2/PEDOT:PSS Sensor for Volatile Organic Compounds Detection at Room Temperature: Experimental and DFT Insights

被引:0
作者
Kumar, Atul [1 ]
Tripathi, Divya [1 ]
Rawat, Ravindra Kumar [1 ]
Chauhan, Pratima [1 ]
机构
[1] Univ Allahabad, Dept Phys, Adv Nanomat Res Lab, UGC Ctr Adv Studies, Prayagraj 211002, India
关键词
TMDs; PEDOT:PSS; MoS2/PEDOT:PSS; Ethanol; Sensor; DFT; SENSING MECHANISM; GAS; NANOCOMPOSITE; NANOSHEETS; GRAPHENE; POLY(3,4-ETHYLENEDIOXYTHIOPHENE)-POLY(STYRENESULFONATE); PERFORMANCE; PEDOTPSS; CO2;
D O I
10.1021/acsanm.4c05614
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
This work emphasizes the gas sensing capabilities of MoS2/PEDOT:PSS nanohybrid-based sensors, offering a prominent candidate for detecting volatile organic compounds (VOCs) at room temperature. The MoS2/PEDOT:PSS composite material is synthesized by combining commercial PEDOT:PSS with MoS2 produced via hydrothermal synthesis using ultrasonication for mechanical mixing. Further, the pristine PEDOT:PSS, MoS2, and MoS2/PEDOT:PSS samples were extensively characterized using various techniques to obtain detailed information about their structural, compositional, and morphological properties. The study reveals that the MoS2/PEDOT:PSS composite exhibited the highest sensitivity among the tested materials with a 56.29% response at 500 ppm of ethanol. The response of the MoS2/PEDOT:PSS sensor increases from 12.24% to 56.29% as the concentration of analyte gas increases from 25 to 500 ppm. Also, repeatability-, sensitivity-, and humidity-based analyses were performed for the evaluation of the sensor. The response and recovery times of the MoS2/PEDOT:PSS nanohybrid sensor are 8.2 and 2.5 s, respectively. The repeatability analysis demonstrated stable performance across multiple tests with percent deviations of +/- 0.04 for PEDOT:PSS, +/- 0.35 for MoS2, and +/- 0.08 for MoS2/PEDOT:PSS under ambient conditions. The computational study reveals that the EDOT:SS/MoS2 (002) composite exhibits strong oxygen adsorption energies of -11.61 eV, indicating enhanced adsorption capabilities. In contrast, MoS2 (002) and PEDOT:PSS show lower energies of -9.22 and -11.08 eV, respectively. Additionally, VOC adsorption on oxygen preadsorbed EDOT:SS/MoS2 (002) shows methanol and ethanol with strong affinities, while toluene and hexane exhibit weaker interactions. These computational findings highlight and support the potential of the MoS2/PEDOT:PSS composite for gas sensing applications.
引用
收藏
页码:27599 / 27611
页数:13
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