2021
DOI: 10.1021/acs.langmuir.1c01706
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Opposite Sensing Response of Heterojunction Gas Sensors Based on SnO2–Cr2O3 Nanocomposites to H2 against CO and Its Selectivity Mechanism

Abstract: Metal oxide semiconductor (MOS) gas sensors show poor selectivity when exposed to mixed gases. This is a challenge in gas sensors and limits their wide applications. There is no efficient way to detect a specific gas when two homogeneous gases are concurrently exposed to sensing materials. The p–n nanojunction of xSnO2–yCr2O3 nanocomposites (NCs) are prepared and used as sensing materials (x/y shows the Sn/Cr molar ratio in the SnO2–Cr2O3 composite and is marked as Sn x Cr y for simplicity). The gas sensing p… Show more

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Cited by 47 publications
(21 citation statements)
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References 65 publications
(80 reference statements)
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“…Iron-doped strontium titanate with B-site deciencies [Sr(Ti 0.6 Fe 0.4 ) 1−x O 3−d (with the 'x' values of 0.01, 0.02, and 0.03)] were synthesized by a sol-gel route from Sr(CH 3 COO) 2 -$2H 2 O (AR), Ti(CH 3 CH 2 CH 2 CH 2 O) 4 (AR), and Fe 2 O 3 (AR). [43][44][45][46][47] Here, strontium acetate interplayed with butyl titanate to develop the sol and concurrently Fe 2 O 3 dispersed homogeneously on the sol during moderate magnetic stirring. The product was obtained in the form of a powder via sol-drying at the temperature of 50 °C.…”
Section: Methodsmentioning
confidence: 99%
“…Iron-doped strontium titanate with B-site deciencies [Sr(Ti 0.6 Fe 0.4 ) 1−x O 3−d (with the 'x' values of 0.01, 0.02, and 0.03)] were synthesized by a sol-gel route from Sr(CH 3 COO) 2 -$2H 2 O (AR), Ti(CH 3 CH 2 CH 2 CH 2 O) 4 (AR), and Fe 2 O 3 (AR). [43][44][45][46][47] Here, strontium acetate interplayed with butyl titanate to develop the sol and concurrently Fe 2 O 3 dispersed homogeneously on the sol during moderate magnetic stirring. The product was obtained in the form of a powder via sol-drying at the temperature of 50 °C.…”
Section: Methodsmentioning
confidence: 99%
“…The gas concentration is presented in all figures. The test instrument and process can be seen in our previous work, as shown in Figure . The test system consists of two gas distribution devices, a test chamber, and an electrochemical workstation.…”
Section: Methodsmentioning
confidence: 99%
“…MOS-based materials have been extensively used for gas sensor application. Their operating mechanism can be simply formulated as follows. Oxidizing gases such as O 2 adsorbed on the surface of SnO 2 can capture free electrons from its conductivity band, which increases the electrical conductivity.…”
Section: Introductionmentioning
confidence: 99%
“…The increased effectiveness of its practical applications may be due to the improved properties, such as increased surface area, chemical and thermal stability, increased surface activities or number of active surface sites, enhanced charge transfer processes, mechanical strength, reduced electron-hole recombination, etc. [21][22][23][24][25][26][27][28][29][30].…”
Section: Sno2 Nanoparticles (Sno2 Nps) and Sno2-based Nanocompositesmentioning
confidence: 99%