Acetaminophen and acetone sensing capabilities of nickel ferrite nanostructures
Author:
Funder
Board of Research in Nuclear Sciences
Publisher
Springer Science and Business Media LLC
Subject
General Materials Science,General Chemistry
Link
http://link.springer.com/article/10.1007/s00339-017-1107-y/fulltext.html
Reference40 articles.
1. N. Yamazoe, New approaches for improving semiconductor gas sensors. Sens. Actuat. B Chem. 5, 7–19 (1991)
2. R.K. Dutta, P.K. Shrama, A.C. Pandey, DNA base (cytosine) modified/capped ultrasmall Gd2S3:Eu3+ gadofluoroprobes for platelet isolation. Appl. Phys. Lett. 97, 253702–253705 (2010)
3. P.K. Shrama, C. Rudowicz, A.C. Pandey, G. Zolnierkiewicz, N. Guskos, Relationship between oxygen defects and the photoluminescence property of ZnO nanoparticles: a spectroscopic view. J. Appl. Phys. 106, 094314–094319 (2009)
4. A. Sutka, R. Pärna, G. Mezinskis, V. Kisand, Effects of Co ion addition and annealing conditions on nickel ferrite gas response. Sens. Actuators B Chem. 192, 173–180 (2014)
5. A. Hosseinpour, H. Sadeghi, A. Morisako, Simulation of DC-hopping conduction in spinel ferrites using free electron gas model. J. Magn. Magn. Mater. 316, 283–286 (2007)
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