Vibrational and structural properties of linear carbon chains

Detalhes bibliográficos
Autor(a) principal: NÃdia Ferreira de Andrade
Data de Publicação: 2014
Tipo de documento: Tese
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da UFC
Texto Completo: http://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=14861
Resumo: We present a study of linear carbon chains encapsulated in multi-wall carbon nanotubes (Cn@MWCNT) using electron microscopy and Raman spectroscopy in ambient and extreme conditions. The linear chains were characterized by resonance Raman, thermal analysis, ion bombardment and using high resolution and scanning transmission electron microscopy. The HRTEM images obtained here shown the chain within the innermost MWCNT and in this work we obtain the first image of ``cross-section$"$ described for this system Cn@MWCNT. A Raman experiment was carried out in high pressure conditions (from 0 to 9.54 GPa) using a paraffin oil as pressure transmitting medium.The G band frequency of nanotube increase as pressure increase while the C-C stretching mode of linear carbon chain decreases. Theoretical results based on atomistic simulations allowed an understanding of vibrational behavior of the chains. Furthermore, we conducted works that involved instrumentation in order to set in the Department of Physics of the Federal University of Ceara, the instrumentation needed for the development of a device that enables to perform Raman spectroscopy and AFM measurements. For this purpose is necessary to integrate a scan-head, a controller system that controls the probe scan-head and an optical system that communicates with an APD (avalanche photodiode device), responsible for carrying the images with a spectrometer dedicated for obtaining Raman spectra. The system is functional as regards the ability to perform confocal measurements and ready for setting the near field measurements.
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spelling info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/doctoralThesisVibrational and structural properties of linear carbon chainsPropriedades vibracionais e estruturais de cadeias lineares de carbono2014-08-26Antonio Gomes de Souza Filho54151287353http://lattes.cnpq.br/022399749522328386681341NÃdia Ferreira de AndradeUniversidade Federal do CearÃPrograma de PÃs-GraduaÃÃo em FÃsicaUFCBREspectroscopia Raman Cadeias de carbono Cn@MWCNT InstrumentaÃÃo para TERS Campo prÃximo.Raman spectroscopy Carbon chains Cn@MWCNT Instrumentation TERS Near Field.FISICAWe present a study of linear carbon chains encapsulated in multi-wall carbon nanotubes (Cn@MWCNT) using electron microscopy and Raman spectroscopy in ambient and extreme conditions. The linear chains were characterized by resonance Raman, thermal analysis, ion bombardment and using high resolution and scanning transmission electron microscopy. The HRTEM images obtained here shown the chain within the innermost MWCNT and in this work we obtain the first image of ``cross-section$"$ described for this system Cn@MWCNT. A Raman experiment was carried out in high pressure conditions (from 0 to 9.54 GPa) using a paraffin oil as pressure transmitting medium.The G band frequency of nanotube increase as pressure increase while the C-C stretching mode of linear carbon chain decreases. Theoretical results based on atomistic simulations allowed an understanding of vibrational behavior of the chains. Furthermore, we conducted works that involved instrumentation in order to set in the Department of Physics of the Federal University of Ceara, the instrumentation needed for the development of a device that enables to perform Raman spectroscopy and AFM measurements. For this purpose is necessary to integrate a scan-head, a controller system that controls the probe scan-head and an optical system that communicates with an APD (avalanche photodiode device), responsible for carrying the images with a spectrometer dedicated for obtaining Raman spectra. The system is functional as regards the ability to perform confocal measurements and ready for setting the near field measurements.Apresentamos um estudo de cadeias lineares de carbono encapsuladas em nanotubos de carbono de paredes mÃltiplas (Cn@MWCNT) utilizando microscopia eletrÃnica e espectroscopia Raman em condiÃÃes ambientes e extremas. As cadeias lineares foram caracterizadas por espectroscopia Raman ressonante, anÃlise tÃrmica, bombardeamento de Ãons e com microscopia eletrÃnica de transmissÃo. As imagens de alta resoluÃÃo aqui obtidas mostraram a presenÃa das cadeias dentro do tubo mais interno do MWCNT e neste trabalho obtivemos a primeira imagem de "seÃÃo transversal" descrita na literatura para um sistema deste tipo. Um experimento Raman foi conduzido em condiÃÃes de altas pressÃes (0 - 9,54 GPa), utilizando um Ãleo de parafina como meio transmissor de pressÃo. A frequÃncia da banda G dos nanotubos aumentou com o aumento da pressÃo enquanto o modo de estiramento C-C das cadeias de carbono lineares diminuiu. Resultados teÃricos baseados em simulaÃÃes atomÃsticas permitiram uma compreensÃo do comportamento vibracional da cadeia. AlÃm disso, realizamos trabalhos que envolveram instrumentaÃÃo afim de instalar no Departamento de FÃsica da Universidade Federal do Cearà toda a instrumentaÃÃo necessÃria para o desenvolvimento de um equipamento que permite realizar espectroscopia Raman e medidas de microscopia de forÃa atÃmica (AFM). Para isto, à necessÃrio integrar uma "scan-head", um sistema controlador que controla a sonda da "scan-head" e um sistema Ãptico que se comunica com uma APD (dispositivo fotodiodo avalanche) responsÃvel pela aquisiÃÃo das imagens, com um espectrÃmetro dedicado à obtenÃÃo dos espectros Raman. O sistema ficou funcional no que diz respeito a capacidade de executar medidas confocal e està pronto para a realizaÃÃo de medidas de campo prÃximo.Conselho Nacional de Desenvolvimento CientÃfico e TecnolÃgicohttp://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=14861application/pdfinfo:eu-repo/semantics/openAccessporreponame:Biblioteca Digital de Teses e Dissertações da UFCinstname:Universidade Federal do Cearáinstacron:UFC2019-01-21T11:28:30Zmail@mail.com -
dc.title.en.fl_str_mv Vibrational and structural properties of linear carbon chains
dc.title.alternative.pt.fl_str_mv Propriedades vibracionais e estruturais de cadeias lineares de carbono
title Vibrational and structural properties of linear carbon chains
spellingShingle Vibrational and structural properties of linear carbon chains
NÃdia Ferreira de Andrade
Espectroscopia Raman
Cadeias de carbono
Cn@MWCNT
InstrumentaÃÃo para TERS
Campo prÃximo.
Raman spectroscopy
Carbon chains
Cn@MWCNT
Instrumentation
TERS
Near Field.
FISICA
title_short Vibrational and structural properties of linear carbon chains
title_full Vibrational and structural properties of linear carbon chains
title_fullStr Vibrational and structural properties of linear carbon chains
title_full_unstemmed Vibrational and structural properties of linear carbon chains
title_sort Vibrational and structural properties of linear carbon chains
author NÃdia Ferreira de Andrade
author_facet NÃdia Ferreira de Andrade
author_role author
dc.contributor.advisor1.fl_str_mv Antonio Gomes de Souza Filho
dc.contributor.advisor1ID.fl_str_mv 54151287353
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/0223997495223283
dc.contributor.authorID.fl_str_mv 86681341
dc.contributor.author.fl_str_mv NÃdia Ferreira de Andrade
contributor_str_mv Antonio Gomes de Souza Filho
dc.subject.por.fl_str_mv Espectroscopia Raman
Cadeias de carbono
Cn@MWCNT
InstrumentaÃÃo para TERS
Campo prÃximo.
topic Espectroscopia Raman
Cadeias de carbono
Cn@MWCNT
InstrumentaÃÃo para TERS
Campo prÃximo.
Raman spectroscopy
Carbon chains
Cn@MWCNT
Instrumentation
TERS
Near Field.
FISICA
dc.subject.eng.fl_str_mv Raman spectroscopy
Carbon chains
Cn@MWCNT
Instrumentation
TERS
Near Field.
dc.subject.cnpq.fl_str_mv FISICA
dc.description.sponsorship.fl_txt_mv Conselho Nacional de Desenvolvimento CientÃfico e TecnolÃgico
dc.description.abstract.por.fl_txt_mv We present a study of linear carbon chains encapsulated in multi-wall carbon nanotubes (Cn@MWCNT) using electron microscopy and Raman spectroscopy in ambient and extreme conditions. The linear chains were characterized by resonance Raman, thermal analysis, ion bombardment and using high resolution and scanning transmission electron microscopy. The HRTEM images obtained here shown the chain within the innermost MWCNT and in this work we obtain the first image of ``cross-section$"$ described for this system Cn@MWCNT. A Raman experiment was carried out in high pressure conditions (from 0 to 9.54 GPa) using a paraffin oil as pressure transmitting medium.The G band frequency of nanotube increase as pressure increase while the C-C stretching mode of linear carbon chain decreases. Theoretical results based on atomistic simulations allowed an understanding of vibrational behavior of the chains. Furthermore, we conducted works that involved instrumentation in order to set in the Department of Physics of the Federal University of Ceara, the instrumentation needed for the development of a device that enables to perform Raman spectroscopy and AFM measurements. For this purpose is necessary to integrate a scan-head, a controller system that controls the probe scan-head and an optical system that communicates with an APD (avalanche photodiode device), responsible for carrying the images with a spectrometer dedicated for obtaining Raman spectra. The system is functional as regards the ability to perform confocal measurements and ready for setting the near field measurements.
Apresentamos um estudo de cadeias lineares de carbono encapsuladas em nanotubos de carbono de paredes mÃltiplas (Cn@MWCNT) utilizando microscopia eletrÃnica e espectroscopia Raman em condiÃÃes ambientes e extremas. As cadeias lineares foram caracterizadas por espectroscopia Raman ressonante, anÃlise tÃrmica, bombardeamento de Ãons e com microscopia eletrÃnica de transmissÃo. As imagens de alta resoluÃÃo aqui obtidas mostraram a presenÃa das cadeias dentro do tubo mais interno do MWCNT e neste trabalho obtivemos a primeira imagem de "seÃÃo transversal" descrita na literatura para um sistema deste tipo. Um experimento Raman foi conduzido em condiÃÃes de altas pressÃes (0 - 9,54 GPa), utilizando um Ãleo de parafina como meio transmissor de pressÃo. A frequÃncia da banda G dos nanotubos aumentou com o aumento da pressÃo enquanto o modo de estiramento C-C das cadeias de carbono lineares diminuiu. Resultados teÃricos baseados em simulaÃÃes atomÃsticas permitiram uma compreensÃo do comportamento vibracional da cadeia. AlÃm disso, realizamos trabalhos que envolveram instrumentaÃÃo afim de instalar no Departamento de FÃsica da Universidade Federal do Cearà toda a instrumentaÃÃo necessÃria para o desenvolvimento de um equipamento que permite realizar espectroscopia Raman e medidas de microscopia de forÃa atÃmica (AFM). Para isto, à necessÃrio integrar uma "scan-head", um sistema controlador que controla a sonda da "scan-head" e um sistema Ãptico que se comunica com uma APD (dispositivo fotodiodo avalanche) responsÃvel pela aquisiÃÃo das imagens, com um espectrÃmetro dedicado à obtenÃÃo dos espectros Raman. O sistema ficou funcional no que diz respeito a capacidade de executar medidas confocal e està pronto para a realizaÃÃo de medidas de campo prÃximo.
description We present a study of linear carbon chains encapsulated in multi-wall carbon nanotubes (Cn@MWCNT) using electron microscopy and Raman spectroscopy in ambient and extreme conditions. The linear chains were characterized by resonance Raman, thermal analysis, ion bombardment and using high resolution and scanning transmission electron microscopy. The HRTEM images obtained here shown the chain within the innermost MWCNT and in this work we obtain the first image of ``cross-section$"$ described for this system Cn@MWCNT. A Raman experiment was carried out in high pressure conditions (from 0 to 9.54 GPa) using a paraffin oil as pressure transmitting medium.The G band frequency of nanotube increase as pressure increase while the C-C stretching mode of linear carbon chain decreases. Theoretical results based on atomistic simulations allowed an understanding of vibrational behavior of the chains. Furthermore, we conducted works that involved instrumentation in order to set in the Department of Physics of the Federal University of Ceara, the instrumentation needed for the development of a device that enables to perform Raman spectroscopy and AFM measurements. For this purpose is necessary to integrate a scan-head, a controller system that controls the probe scan-head and an optical system that communicates with an APD (avalanche photodiode device), responsible for carrying the images with a spectrometer dedicated for obtaining Raman spectra. The system is functional as regards the ability to perform confocal measurements and ready for setting the near field measurements.
publishDate 2014
dc.date.issued.fl_str_mv 2014-08-26
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/doctoralThesis
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format doctoralThesis
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url http://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=14861
dc.language.iso.fl_str_mv por
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dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
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dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidade Federal do CearÃ
dc.publisher.program.fl_str_mv Programa de PÃs-GraduaÃÃo em FÃsica
dc.publisher.initials.fl_str_mv UFC
dc.publisher.country.fl_str_mv BR
publisher.none.fl_str_mv Universidade Federal do CearÃ
dc.source.none.fl_str_mv reponame:Biblioteca Digital de Teses e Dissertações da UFC
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