Highly Sensitive Ethanol Chemical Sensor Based on Novel Ag-Doped Mesoporous α-Fe2O3 Prepared by Modified Sol-Gel Process

被引:27
|
作者
Alqahtani, Moteb M. [1 ]
Ali, Atif M. [1 ,2 ]
Harraz, Farid A. [3 ,4 ]
Faisal, M. [3 ]
Ismail, Adel A. [4 ]
Sayed, Mahmoud A. [1 ]
Al-Assiri, M. S. [3 ,5 ]
机构
[1] King Khalid Univ, Fac Sci, Dept Phys, Abha, Saudi Arabia
[2] Assiut Univ, Fac Sci, Dept Phys, Assiut, Egypt
[3] Najran Univ, PCSED, Adv Mat & Nanores Ctr, POB 1988, Najran 11001, Saudi Arabia
[4] CMRDI, Nanomat & Nanotechnol Dept, PO 87, Cairo 11421, Egypt
[5] Najran Univ, Fac Sci & Arts, Dept Phys, Najran, Saudi Arabia
来源
关键词
Mesoporous Ag/alpha-Fe2O3; Sol-gel; Electrochemical; Chemical sensors; Ethanol; FACILE SYNTHESIS; HYDROTHERMAL SYNTHESIS; POROUS SILICON; ZNO NANOWIRES; IRON-OXIDES; NANOCOMPOSITES; PERFORMANCE; COMPOSITE; FILM; NANOCRYSTALS;
D O I
10.1186/s11671-018-2572-8
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Mesoporous Ag/alpha-Fe2O3 has been synthesized via a simple sol-gel procedure in the presence of Pluronic (F-127) triblock copolymer as structure directing agent. Silver (Ag) nanoparticles were deposited onto Ag/alpha-Fe2O3 matrix by the photochemical reduction approach. Morphological analysis revealed the formation of Ag nanoparticles with small sizes < 20 nm onto the mesoporous structure of Ag/alpha-Fe2O3 possessing < 50 nm semi-spherical shape. The XRD, FTIR, Raman, UV-vis, PL, and N-2 sorption isotherm studies confirmed the high crystallinity, mesoporosity, and optical characteristics of the synthesized product The electrochemical sensing toward liquid ethanol has been performed using the current devolved Ag/alpha-Fe2O3-modified glassy carbon electrode (GCE) by cyclic voltammetry (CV) and current potential (I-V) techniques, and the obtained results were compared with bare GCE or pure Ag/alpha-Fe2O3. Mesoporous Ag/alpha-Fe2O3 was found to largely enhance the sensor sensitivity and it exhibited excellent sensing characteristics during the precision detection of low concentrations of ethanol. High and reproducible sensitivity of 41.27 mu AmM-1 cm(-2) at lower ethanol concentration region (0.05 to 0.8 mM) and 2.93 mu AmM-1 cm(-2) at higher concentration zone (0.8 to 15 mM), with a limit of detection (LOD) of 15.4 mu M have been achieved. Investigation on reaction kinetics revealed a characteristic behavior of mixed surface and diffusion-controlled processes. Detailed sensing studies revealed also that the sensitivity toward ethanol was higher than that of methanol or isopropanol. With further effort in developing the synthesis and fabrication approaches, a proper utility for the current proposed protocol for fabricating a better sensor device performance is possible.
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页数:13
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