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MARC Record from Library of Congress

Record ID marc_loc_updates/v40.i06.records.utf8:7968517:2200
Source Library of Congress
Download Link /show-records/marc_loc_updates/v40.i06.records.utf8:7968517:2200?format=raw

LEADER: 02200cam a22003374a 4500
001 2011034377
003 DLC
005 20120206095123.0
008 110921s2012 flua b 001 0 eng
010 $a 2011034377
016 7 $a015826263$2Uk
020 $a9781439863404 (hardback)
020 $a1439863407 (hardback)
035 $a(OCoLC)ocn703208573
040 $aDLC$cDLC$dYDX$dBTCTA$dUKMGB$dUV0$dYDXCP$dBWX$dDLC
042 $apcc
050 00 $aTP159.C46$bE73 2012
082 00 $a621.381$223
084 $aSCI055000$aTEC021000$aTEC064000$2bisacsh
100 1 $aEranna, G.
245 10 $aMetal oxide nanostructures as gas sensing devices /$cG. Eranna.
260 $aBoca Raton, FL :$bCRC Press,$cc2012.
300 $axvi, 316 p. :$bill. ;$c25 cm.
490 1 $aSeries in sensors
520 $a"With an emphasis on gas (vapor) detection techniques using metal oxide nanomaterials, this book presents the complete list of nanostructured metal oxides and their syntheses. From aluminum to zinc, it analyzes metal oxides and their response to different gaseous (vapor) species. It also analyzes gaseous species from acetic acid to toluene. Numerous tables highlight the synthesis, operating range, responding gases, and response time of various metal oxides. The author details their nanostructures and shapes and explores active devices that use these materials, including future devices and gas sensing arrays such as e-nose. (1) Presents important information on gas sensing devices with an emphasis on future devices (2) Lists the different nanostructured metal oxides useful for gas sensing applications (3) Describes ways of synthesizing these metal oxide nanostructures and identifying the suitable nanostructured material for specific gases and gas mixtures (4) Provides a matrix for nanostructured material versus different pollutant gases and volatile organic compounds (VOCs) suitable for e-nose applications"--$cProvided by publisher.
504 $aIncludes bibliographical references (p. 291-308) and index.
650 0 $aGas detectors.
650 0 $aMetallic oxides$xMicrostructure.
650 0 $aMetallic oxides$xSynthesis.
650 0 $aNanostructures.
830 0 $aSensors series.