Conductometric acetone vapor sensor based on the use of gold-doped three-dimensional hierarchical porous zinc oxide microspheres
Author:
Publisher
Springer Science and Business Media LLC
Subject
Analytical Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00604-019-3457-y.pdf
Reference31 articles.
1. Drueckhammer DG, Gao SQ, Liang XF, Liao JZ (2013) Acetone-heptane as a solvent system for combining chromatography on silica gel with solvent recycling. ACS Sustain Chem Eng 1:87–90
2. Ariyageadsakul P, Vchirawongkwin V, Kritayakornupong C (2016) Determination of toxic carbonyl species including acetone, formaldehyde, and phosgene by polyaniline emeraldine gas sensor using DFT calculation. Sensors Actuators B Chem 232:165–174
3. Zhou XY, Wang JX, Wang Z, Bian YZ, Wang Y, Han N, Chen YF (2018) Transilient response to acetone gas using the interlocking p+n field-effect transistor circuit. Sensors 18:1914
4. Fan GT, Yang CL, Lin CH, Chen CC, Shih CH (2014) Applications of Hadamard transform-gas chromatography/mass spectrometry to the detection of acetone in healthy human and diabetes mellitus patient breath. Talanta 120:386–390
5. Lee JH (2009) Gas sensors using hierarchical and hollow oxide nanostructures: overview. Sensors Actuators B Chem 140:319–336
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