TeO2-ZnO Glasses Incorporating Li2O, Na2O, TiO2, MoO3, And BaO for Optimization In Radiation Shielding

dc.contributor.advisor-co1Muniz, Robson Ferrari
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dc.contributor.advisor1Novatski, Andressa
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dc.contributor.referee1Sato, Francielle
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dc.contributor.referee2Pedrochi, Franciana
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dc.contributor.referee3Steimacher, Alysson
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dc.contributor.referee4Zanuto, Vitor Santaella
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dc.creatorGunha, Jaqueline Valeski
dc.creator.Latteshttps://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K8165414Y9&tokenCaptchar=03AFcWeA6sKxQm9eWwuqfhvIUXG4PFiXYDO4YJknEUSSGs_cXSdwNsfvWt8o7pUaFGhh3o1uekxrksHOwl4B3Lzmz61NukXVRSiNB_RfhytN-hG53Y5Ta0IYU6oV6hq9Mpn5Rp6wMEdmDPdN-lik0usJNf2ctIe_gxI6EM4i2SrHM9qA9vBT0P5wNmiB9za3WUfxCDfB02cUg73rbCgP-ihczj2CHOnSRklo2tRNU9k6vWFKSVhfUcEpr08U-7Lgi1sdcAfuLT7efdrnufVJhyT6fpWsDxXG1U2IxwLG0B9XkZcB2k6osADUNkb9MZTYuo2DEiHT3vIB2F9tSODoQVJVGTTHfPUIt5fNuFXwSBITA3FH-iGYsxDES3VNnqtQSxQORN1pXLGPtFzSnFragJZGpGX9di8f8PU-3xDipi22sP9l_CC4D2fiTAmo4-pCiPq_vSndCKwH5cs5pdoi7EeBaJQWhacqLm3YVAmFlj0R31YIkran3He-3812EXWbpvJvtb5VGzQbcxzJBAcNC9q8AM-_aVfxi9TkVr2R2UjYZClMsZ5Ld4hSTrtzD1xEesvA0___myzRQwH5cdZ7qI7WPjKhm3plQmKS36PqVXfFOVvG0FHKv6q0QfYC2rx-P6rLZ8JdX0-FeLvIqLNsTPioGMcrRtlBla6Ai8EHioIyjZJbMAgagnzI7mV8Rptdds1c86GnISg116BuGG7Vpfkbt6aOjHvexXpSUgLyv3rRMpH8woKVAdGZ_J09Xq_WUjRPvX6mZqlIZKPIVteZyRXAD-dMxBfSNLYaOxizfX42cWl4Fsqieqn7jH7S65Lb-MZPbJGl2iHVzVMlW2O2Z1n6xX78tXRDscLwPoVg0LZHofHVhi1rEy-f8uQ-nZLKpeY8---EeWhQUfBnoJERagwCaWM96bjB9zIjzLQCtQhz4ekDc-snfDfwudKoQzDle7Vkn7TTBrhPVK89wt-lxzHFMMyJBWaZQ07hnx_X6kGaGJ28FipRlSeWNpwKVqEDG1-bXTaPfm5knpswLLEgDD6yjsSNvESwwCCApt_BR
dc.date.accessioned2025-02-21T21:32:31Z
dc.date.accessioned2026-07-01T12:15:30Z
dc.date.available2025-02-21T00:00:00Z
dc.date.available2025-02-21T21:32:31Z
dc.date.issued2024-09-27
dc.description.abstractThis dissertation focuses on the development and characterization of tellurite glasses with enhanced radiation shielding capabilities, with the aim of providing efficient materials for protection against ionizing radiation. The glasses were studied in a ternary system to optimize their structural, thermal, optical, and shielding properties. XRD confirmed the amorphous nature of the samples, while scanning electron microscopy (SEM) and energy-dispersive spectroscopy (EDS) demonstrated homogeneous surfaces and a uniform chemical composition. Raman and FTIR spectroscopic analyzes identified key structural units, highlighting the influence of modifiers such as TiO2 and MoO3. These oxides were shown to increase non-bridging oxygen (NBO) concentrations, improve structural arrange- ment, and enhance radiation absorption. The density and oxygen packing density (OPD) analyzes revealed significant changes with the introduction of modifiers. BaO notably increased density and improved structural stability, while Na2O reduced compactness, resulting in a less cohesive network. Differential scanning calorimetry (DSC) indicated that TiO2 and BaO enhanced thermal stability, increasing the glass transition tempera- ture (Tg) and the crystallization onset temperature (Tx). In contrast, Na2O showed lower thermal stability. UV-Vis spectroscopy confirmed the glasses high efficiency in absorbing UV and visible radiation. The calculated optical band gap (2.18–3.74 eV) and Urbach energy provided information on the electronic structure, revealing the role of modifiers in the tuning of optical properties. Mechanical characterization through Vickers hard- ness tests demonstrated superior mechanical strength in glasses modified with TiO2 and reduced hardness with Na2O, correlating with the observed structural compactness. Op- tical microscopy corroborated the homogeneity of the materials, confirming the absence of structural defects. Radiation shielding studies showed that the incorporation of BaO and MoO3 significantly improved gamma and neutron attenuation. BaO increased density and cross-linking, optimizing gamma radiation absorption, particularly at lower photon energies. MoO3 improved fast neutron shielding due to its higher density and structural rearrangement induced by molybdenum oxides. The mass attenuation coefficients (MAC) demonstrated that the tellurite glasses surpassed conventional shielding materials, such as lead and barite concrete, particularly at low photon energies. Half-value layer (HVL) measurements further underscored their effectiveness, achieving substantial protection with thinner layers, advantageous for lightweight and transparent shielding applications. These findings highlight the versatility of tellurite glasses as advanced materials for ra- diological environments, offering a combination of transparency, mechanical robustness, and superior radiation attenuation for various technological and industrial applications.pt_BR
dc.description.resumoEsta tese concentra-se no desenvolvimento e caracterização de vidros de telureto com capacidades aprimoradas de blindagem contra radiação, visando fornecer materiais efi- cientes para proteção contra radiação ionizante. Os vidros foram estudados em um sistema ternário para otimizar suas propriedades estruturais, térmicas, ópticas e de blindagem. A DRX confirmou a natureza amorfa das amostras, enquanto a MEV e a EDS demonstraram superfícies homogêneas e composição química uniforme. As análises espectroscópicas Ra- man e FTIR identificaram unidades estruturais-chave, destacando a influência de modi- ficadores como TiO2 e MoO3. Esses óxidos demonstraram aumentar as concentrações de NBO, melhorar o arranjo estrutural e aprimorar a absorção de radiação. As análises de densidade e OPD revelaram mudanças significativas com a introdução de modificadores. O BaO aumentou notavelmente a densidade e melhorou a estabilidade estrutural, enquanto o Na2O reduziu a compactação, resultando em uma rede menos coesa. A DSC indicou que TiO2 e BaO aumentaram a estabilidade térmica, elevando a Tg e a Tx. Em contraste, o Na2O apresentou menor estabilidade térmica. A espectroscopia UV-Vis confirmou a alta eficiência dos vidros na absorção de radiação UV e visível. O intervalo calculado para a largura da banda proibida óptica (2,18–3,74 eV) e a energia de Urbach forneceram infor- mações sobre a estrutura eletrônica, revelando o papel dos modificadores na modulação das propriedades ópticas. A caracterização mecânica, por meio de testes de dureza Vick- ers, demonstrou maior resistência mecânica em vidros modificados com TiO2 e menor dureza com Na2O, correlacionando-se com a compactação estrutural observada. A mi- croscopia óptica corroborou a homogeneidade dos materiais, confirmando a ausência de defeitos estruturais. Estudos de blindagem contra radiação mostraram que a incorporação de BaO e MoO3 melhorou significativamente a atenuação de raios gama e nêutrons. O BaO aumentou a densidade e a conectividade estrutural, otimizando a absorção de radiação gama, particularmente em baixas energias de fótons. O MoO3 aprimorou a blindagem contra nêutrons rápidos devido à sua maior densidade e ao rearranjo estrutural induzido pelos óxidos de molibdênio. Os MAC demonstraram que os vidros de telureto superaram materiais de blindagem convencionais, como chumbo e concreto baritado, especialmente em baixas energias de fótons. As medições da HVL reforçaram ainda mais sua eficácia, alcançando proteção substancial com camadas mais finas, o que é vantajoso para apli- cações de blindagem leves e transparentes. Esses resultados destacam a versatilidade dos vidros de telureto como materiais avançados para ambientes radiológicos, oferecendo uma combinação de transparência, robustez mecânica e superior atenuação de radiação para diversas aplicações tecnológicas e industriais.pt_BR
dc.description.sponsorshipCoordenação de Aperfeiçoamento de Pessoal de Nível Superiorpt_BR
dc.identifier.citationGUNHA, Jaqueline Valeski. TeO2-ZnO Glasses Incorporating Li2O, Na2O, TiO2, MoO3, And BaO for Optimization In Radiation Shielding. 2024. Tese (Doutorado em Ciências) - Universidade Estadual de Ponta Grossa, Ponta Grossa, 2024.pt_BR
dc.identifier.urihttps://ri.uepg.br/handle/123456789/4200
dc.languageengpt_BR
dc.publisherUniversidade Estadual de Ponta Grossapt_BR
dc.publisher.countryBrasilpt_BR
dc.publisher.departmentSetor de Ciências Exatas e Naturaispt_BR
dc.publisher.initialsUEPGpt_BR
dc.publisher.programPrograma de Pós-Graduação em Ciênciaspt_BR
dc.relationFINEP, Conselho Nacional de Desenvolvimento Científico e Tecnológico, Fundação Araucáriapt_BR
dc.rightsAcesso Abertopt_BR
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Brazil
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/br/
dc.subjectVidros de Teluretopt_BR
dc.subjectBlindagem contra Radiaçãopt_BR
dc.subjectPropriedades Ópticaspt_BR
dc.subjectCoeficiente de Atenuação de Massapt_BR
dc.subjectCaracterização Estruturalpt_BR
dc.subjectTellurite Glassespt_BR
dc.subjectRadiation Shieldingpt_BR
dc.subjectOptical Propertiespt_BR
dc.subjectMass Attenuation Coefficientpt_BR
dc.subjectStructural analysispt_BR
dc.subject.cnpqCNPQ::CIENCIAS EXATAS E DA TERRApt_BR
dc.titleTeO2-ZnO Glasses Incorporating Li2O, Na2O, TiO2, MoO3, And BaO for Optimization In Radiation Shieldingpt_BR
dc.typeTesept_BR

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