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dc.contributor.authorTermehYousefi, Amin. ;en_US
dc.date.accessioned2013en_US
dc.date.accessioned2020-04-28T08:50:48Z-
dc.date.available2020-04-28T08:50:48Z-
dc.date.issued2018en_US
dc.identifier.isbn9783319668482 ;en_US
dc.identifier.isbn9783319668475 (print) ;en_US
dc.identifier.urihttp://localhost/handle/Hannan/244-
dc.descriptionSpringerLink (Online service) ;en_US
dc.descriptionen_US
dc.descriptionen_US
dc.descriptionPrinted edition: ; 9783319668475. ;en_US
dc.descriptionen_US
dc.descriptionen_US
dc.description.abstractThis book describes the fabrication of a frequency-based electronic tongue using a modified glassy carbon electrode (GCE), opening a new field of applying organic precursors to achieve nanostructure growth. It also presents a new approach to optimizing nanostructures by means of statistical analysis.e The chemical vapor deposition (CVD) method was utilized to grow vertically aligned carbon nanotubes (CNTs) with various aspect ratios. To increase the graphitic ratio of synthesized CNTs, sequential experimental strategies based on response surface methodology were employed to investigate the crystallinity of CNTs. In the next step, glucose oxidase (GOx) was immobilized on the optimized multiwall carbon nanotubes/gelatin (MWCNTs/Gl) composite using the entrapment technique to achieve enzyme-catalyzed oxidation of glucose at anodic potentials, which was drop-casted onto the GCE. The modified GCEees performance indicates that a GOx/MWCNTs/Gl/GC electrode ca n be utilized as a glucose biosensor with a high direct electron transfer rate between GOx and MWCNTs/Gl. It was possible to use the fabricated biosensor as an electronic tongue thanks to a frequency-based circuit attached to the electrochemical cell. The results indicate that the modified GCE (with GOx/MWCNTs/Gl) holds promising potential for application in voltammetric electronic tongues. ;en_US
dc.description.statementofresponsibilityby Amin TermehYousefi.en_US
dc.description.tableofcontentsIntroduction -- Literature Review -- Experimental Procedures and Materials -- Results and Discussions -- Conclusions. ;en_US
dc.format.extentXIII, 101 p. 45 illus., 35 illus. in color. ; online resource. ;en_US
dc.publisherSpringer International Publishing :en_US
dc.publisherImprint: Springer,en_US
dc.relation.ispartofseriesSpringer Series in Materials Science, ; 0933-033X ; ; 259. ;en_US
dc.relation.ispartofseriesSpringer Series in Materials Science, ; 0933-033X ; ; 259. ;en_US
dc.relation.haspart9783319668482.pdfen_US
dc.subjectMaterials Scienceen_US
dc.subjectPhysical chemistry. ;en_US
dc.subjectNanoscale science. ;en_US
dc.subjectNanoscience. ;en_US
dc.subjectNanostructures. ;en_US
dc.subjectBiomedical engineering. ;en_US
dc.subjectOptical materials. ;en_US
dc.subjectElectronic materials. ;en_US
dc.subjectMaterials Scienceen_US
dc.subjectOptical and Electronic Materials. ;en_US
dc.subjectBiomedical Engineering. ;en_US
dc.subjectBiological and Medical Physics, Biophysics. ;en_US
dc.subjectNanoscale Science and Technology. ;en_US
dc.subjectPhysical Chemistry. ;en_US
dc.titleNanocomposite-Based Electronic Tongueen_US
dc.title.alternativeCarbon Nanotube Growth by Chemical Vapor Deposition and Its Application /en_US
dc.typeBooken_US
dc.publisher.placeCham :en_US
dc.classification.lcTA1750-1750.22 ;en_US
dc.classification.dc620.11295 ; 23 ;en_US
dc.classification.dc620.11297 ; 23 ;en_US
Appears in Collections:مهندسی مدیریت ساخت

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9783319668482.pdf3.68 MBAdobe PDFThumbnail
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Full metadata record
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dc.contributor.authorTermehYousefi, Amin. ;en_US
dc.date.accessioned2013en_US
dc.date.accessioned2020-04-28T08:50:48Z-
dc.date.available2020-04-28T08:50:48Z-
dc.date.issued2018en_US
dc.identifier.isbn9783319668482 ;en_US
dc.identifier.isbn9783319668475 (print) ;en_US
dc.identifier.urihttp://localhost/handle/Hannan/244-
dc.descriptionSpringerLink (Online service) ;en_US
dc.descriptionen_US
dc.descriptionen_US
dc.descriptionPrinted edition: ; 9783319668475. ;en_US
dc.descriptionen_US
dc.descriptionen_US
dc.description.abstractThis book describes the fabrication of a frequency-based electronic tongue using a modified glassy carbon electrode (GCE), opening a new field of applying organic precursors to achieve nanostructure growth. It also presents a new approach to optimizing nanostructures by means of statistical analysis.e The chemical vapor deposition (CVD) method was utilized to grow vertically aligned carbon nanotubes (CNTs) with various aspect ratios. To increase the graphitic ratio of synthesized CNTs, sequential experimental strategies based on response surface methodology were employed to investigate the crystallinity of CNTs. In the next step, glucose oxidase (GOx) was immobilized on the optimized multiwall carbon nanotubes/gelatin (MWCNTs/Gl) composite using the entrapment technique to achieve enzyme-catalyzed oxidation of glucose at anodic potentials, which was drop-casted onto the GCE. The modified GCEees performance indicates that a GOx/MWCNTs/Gl/GC electrode ca n be utilized as a glucose biosensor with a high direct electron transfer rate between GOx and MWCNTs/Gl. It was possible to use the fabricated biosensor as an electronic tongue thanks to a frequency-based circuit attached to the electrochemical cell. The results indicate that the modified GCE (with GOx/MWCNTs/Gl) holds promising potential for application in voltammetric electronic tongues. ;en_US
dc.description.statementofresponsibilityby Amin TermehYousefi.en_US
dc.description.tableofcontentsIntroduction -- Literature Review -- Experimental Procedures and Materials -- Results and Discussions -- Conclusions. ;en_US
dc.format.extentXIII, 101 p. 45 illus., 35 illus. in color. ; online resource. ;en_US
dc.publisherSpringer International Publishing :en_US
dc.publisherImprint: Springer,en_US
dc.relation.ispartofseriesSpringer Series in Materials Science, ; 0933-033X ; ; 259. ;en_US
dc.relation.ispartofseriesSpringer Series in Materials Science, ; 0933-033X ; ; 259. ;en_US
dc.relation.haspart9783319668482.pdfen_US
dc.subjectMaterials Scienceen_US
dc.subjectPhysical chemistry. ;en_US
dc.subjectNanoscale science. ;en_US
dc.subjectNanoscience. ;en_US
dc.subjectNanostructures. ;en_US
dc.subjectBiomedical engineering. ;en_US
dc.subjectOptical materials. ;en_US
dc.subjectElectronic materials. ;en_US
dc.subjectMaterials Scienceen_US
dc.subjectOptical and Electronic Materials. ;en_US
dc.subjectBiomedical Engineering. ;en_US
dc.subjectBiological and Medical Physics, Biophysics. ;en_US
dc.subjectNanoscale Science and Technology. ;en_US
dc.subjectPhysical Chemistry. ;en_US
dc.titleNanocomposite-Based Electronic Tongueen_US
dc.title.alternativeCarbon Nanotube Growth by Chemical Vapor Deposition and Its Application /en_US
dc.typeBooken_US
dc.publisher.placeCham :en_US
dc.classification.lcTA1750-1750.22 ;en_US
dc.classification.dc620.11295 ; 23 ;en_US
dc.classification.dc620.11297 ; 23 ;en_US
Appears in Collections:مهندسی مدیریت ساخت

Files in This Item:
File Description SizeFormat 
9783319668482.pdf3.68 MBAdobe PDFThumbnail
Preview File
Full metadata record
DC FieldValueLanguage
dc.contributor.authorTermehYousefi, Amin. ;en_US
dc.date.accessioned2013en_US
dc.date.accessioned2020-04-28T08:50:48Z-
dc.date.available2020-04-28T08:50:48Z-
dc.date.issued2018en_US
dc.identifier.isbn9783319668482 ;en_US
dc.identifier.isbn9783319668475 (print) ;en_US
dc.identifier.urihttp://localhost/handle/Hannan/244-
dc.descriptionSpringerLink (Online service) ;en_US
dc.descriptionen_US
dc.descriptionen_US
dc.descriptionPrinted edition: ; 9783319668475. ;en_US
dc.descriptionen_US
dc.descriptionen_US
dc.description.abstractThis book describes the fabrication of a frequency-based electronic tongue using a modified glassy carbon electrode (GCE), opening a new field of applying organic precursors to achieve nanostructure growth. It also presents a new approach to optimizing nanostructures by means of statistical analysis.e The chemical vapor deposition (CVD) method was utilized to grow vertically aligned carbon nanotubes (CNTs) with various aspect ratios. To increase the graphitic ratio of synthesized CNTs, sequential experimental strategies based on response surface methodology were employed to investigate the crystallinity of CNTs. In the next step, glucose oxidase (GOx) was immobilized on the optimized multiwall carbon nanotubes/gelatin (MWCNTs/Gl) composite using the entrapment technique to achieve enzyme-catalyzed oxidation of glucose at anodic potentials, which was drop-casted onto the GCE. The modified GCEees performance indicates that a GOx/MWCNTs/Gl/GC electrode ca n be utilized as a glucose biosensor with a high direct electron transfer rate between GOx and MWCNTs/Gl. It was possible to use the fabricated biosensor as an electronic tongue thanks to a frequency-based circuit attached to the electrochemical cell. The results indicate that the modified GCE (with GOx/MWCNTs/Gl) holds promising potential for application in voltammetric electronic tongues. ;en_US
dc.description.statementofresponsibilityby Amin TermehYousefi.en_US
dc.description.tableofcontentsIntroduction -- Literature Review -- Experimental Procedures and Materials -- Results and Discussions -- Conclusions. ;en_US
dc.format.extentXIII, 101 p. 45 illus., 35 illus. in color. ; online resource. ;en_US
dc.publisherSpringer International Publishing :en_US
dc.publisherImprint: Springer,en_US
dc.relation.ispartofseriesSpringer Series in Materials Science, ; 0933-033X ; ; 259. ;en_US
dc.relation.ispartofseriesSpringer Series in Materials Science, ; 0933-033X ; ; 259. ;en_US
dc.relation.haspart9783319668482.pdfen_US
dc.subjectMaterials Scienceen_US
dc.subjectPhysical chemistry. ;en_US
dc.subjectNanoscale science. ;en_US
dc.subjectNanoscience. ;en_US
dc.subjectNanostructures. ;en_US
dc.subjectBiomedical engineering. ;en_US
dc.subjectOptical materials. ;en_US
dc.subjectElectronic materials. ;en_US
dc.subjectMaterials Scienceen_US
dc.subjectOptical and Electronic Materials. ;en_US
dc.subjectBiomedical Engineering. ;en_US
dc.subjectBiological and Medical Physics, Biophysics. ;en_US
dc.subjectNanoscale Science and Technology. ;en_US
dc.subjectPhysical Chemistry. ;en_US
dc.titleNanocomposite-Based Electronic Tongueen_US
dc.title.alternativeCarbon Nanotube Growth by Chemical Vapor Deposition and Its Application /en_US
dc.typeBooken_US
dc.publisher.placeCham :en_US
dc.classification.lcTA1750-1750.22 ;en_US
dc.classification.dc620.11295 ; 23 ;en_US
dc.classification.dc620.11297 ; 23 ;en_US
Appears in Collections:مهندسی مدیریت ساخت

Files in This Item:
File Description SizeFormat 
9783319668482.pdf3.68 MBAdobe PDFThumbnail
Preview File