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COSTA, Pedro Felipe Garcia Martins da et al. Real-time monitoring of CdTe quantum dots growth in aqueous solution. Scientific Reports, v. 14, 2024Tradução . . Disponível em: https://doi.org/10.1038/s41598-024-57810-8. Acesso em: 26 abr. 2024.
APA
Costa, P. F. G. M. da, Merízio, L. G., Wolff, N., Terraschke, H., & de Camargo, A. S. S. (2024). Real-time monitoring of CdTe quantum dots growth in aqueous solution. Scientific Reports, 14. doi:10.1038/s41598-024-57810-8
NLM
Costa PFGM da, Merízio LG, Wolff N, Terraschke H, de Camargo ASS. Real-time monitoring of CdTe quantum dots growth in aqueous solution [Internet]. Scientific Reports. 2024 ; 14[citado 2024 abr. 26 ] Available from: https://doi.org/10.1038/s41598-024-57810-8
Vancouver
Costa PFGM da, Merízio LG, Wolff N, Terraschke H, de Camargo ASS. Real-time monitoring of CdTe quantum dots growth in aqueous solution [Internet]. Scientific Reports. 2024 ; 14[citado 2024 abr. 26 ] Available from: https://doi.org/10.1038/s41598-024-57810-8
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GALLEANI, Gustavo et al. Photoluminescence and X-ray induced scintillation in Gd3+-Tb3+ co-doped fluoride-phosphate glasses, and derived glass-ceramics containing NaGdF4 nanocrystals. Optical Materials X, v. 21, p. 100288-1-100288-9, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.omx.2023.100288. Acesso em: 26 abr. 2024.
APA
Galleani, G., Lodi, T. A., Conner, R. L., Jacobsohn, L. G., & de Camargo, A. S. S. (2024). Photoluminescence and X-ray induced scintillation in Gd3+-Tb3+ co-doped fluoride-phosphate glasses, and derived glass-ceramics containing NaGdF4 nanocrystals. Optical Materials X, 21, 100288-1-100288-9. doi:10.1016/j.omx.2023.100288
NLM
Galleani G, Lodi TA, Conner RL, Jacobsohn LG, de Camargo ASS. Photoluminescence and X-ray induced scintillation in Gd3+-Tb3+ co-doped fluoride-phosphate glasses, and derived glass-ceramics containing NaGdF4 nanocrystals [Internet]. Optical Materials X. 2024 ; 21 100288-1-100288-9.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.omx.2023.100288
Vancouver
Galleani G, Lodi TA, Conner RL, Jacobsohn LG, de Camargo ASS. Photoluminescence and X-ray induced scintillation in Gd3+-Tb3+ co-doped fluoride-phosphate glasses, and derived glass-ceramics containing NaGdF4 nanocrystals [Internet]. Optical Materials X. 2024 ; 21 100288-1-100288-9.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.omx.2023.100288
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LODI, Thiago Augusto et al. Tungsten gallium-phosphate glasses as promising intrinsic scintillators. Journal of Non-Crystalline Solids, v. 603, p. 122097-1-122097-7 + supplementary materials, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.jnoncrysol.2022.122097. Acesso em: 26 abr. 2024.
APA
Lodi, T. A., Galleani, G., Merízio, L. G., Jacobsohn, L. G., Mastelaro, V. R., & de Camargo, A. S. S. (2023). Tungsten gallium-phosphate glasses as promising intrinsic scintillators. Journal of Non-Crystalline Solids, 603, 122097-1-122097-7 + supplementary materials. doi:10.1016/j.jnoncrysol.2022.122097
NLM
Lodi TA, Galleani G, Merízio LG, Jacobsohn LG, Mastelaro VR, de Camargo ASS. Tungsten gallium-phosphate glasses as promising intrinsic scintillators [Internet]. Journal of Non-Crystalline Solids. 2023 ; 603 122097-1-122097-7 + supplementary materials.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.jnoncrysol.2022.122097
Vancouver
Lodi TA, Galleani G, Merízio LG, Jacobsohn LG, Mastelaro VR, de Camargo ASS. Tungsten gallium-phosphate glasses as promising intrinsic scintillators [Internet]. Journal of Non-Crystalline Solids. 2023 ; 603 122097-1-122097-7 + supplementary materials.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.jnoncrysol.2022.122097
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ZHANG, Fengchan et al. Plasmonic trapping of a single upconverting nanoparticle: enhanced upconversion fluorescence and trapping stability. 2023, Anais.. Washington, DC: Optical Society of America - OSA, 2023. Disponível em: https://doi.org/10.1364/OMA.2023.AM3D.3. Acesso em: 26 abr. 2024.
APA
Zhang, F., Oiticica, P. R. A., Arai, M. S., Oliveira Junior, O. N. de, de Camargo, A. S. S., García, D. J., & González, P. H. (2023). Plasmonic trapping of a single upconverting nanoparticle: enhanced upconversion fluorescence and trapping stability. In Conference Papers. Washington, DC: Optical Society of America - OSA. doi:10.1364/OMA.2023.AM3D.3
NLM
Zhang F, Oiticica PRA, Arai MS, Oliveira Junior ON de, de Camargo ASS, García DJ, González PH. Plasmonic trapping of a single upconverting nanoparticle: enhanced upconversion fluorescence and trapping stability [Internet]. Conference Papers. 2023 ;[citado 2024 abr. 26 ] Available from: https://doi.org/10.1364/OMA.2023.AM3D.3
Vancouver
Zhang F, Oiticica PRA, Arai MS, Oliveira Junior ON de, de Camargo ASS, García DJ, González PH. Plasmonic trapping of a single upconverting nanoparticle: enhanced upconversion fluorescence and trapping stability [Internet]. Conference Papers. 2023 ;[citado 2024 abr. 26 ] Available from: https://doi.org/10.1364/OMA.2023.AM3D.3
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GALLEANI, Gustavo et al. Fluorine and sodium depletion followed by refractive index modification imprinted on fluorophosphate glass surface by thermal poling. Journal of Non-Crystalline Solids, v. 601, p. 122054-1-122054-8 + supplementary materials, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.jnoncrysol.2022.122054. Acesso em: 26 abr. 2024.
APA
Galleani, G., Khalil, A. A., Canioni, L., Dussauze, M., Fargin, E., Cardinal, T., & de Camargo, A. S. S. (2023). Fluorine and sodium depletion followed by refractive index modification imprinted on fluorophosphate glass surface by thermal poling. Journal of Non-Crystalline Solids, 601, 122054-1-122054-8 + supplementary materials. doi:10.1016/j.jnoncrysol.2022.122054
NLM
Galleani G, Khalil AA, Canioni L, Dussauze M, Fargin E, Cardinal T, de Camargo ASS. Fluorine and sodium depletion followed by refractive index modification imprinted on fluorophosphate glass surface by thermal poling [Internet]. Journal of Non-Crystalline Solids. 2023 ; 601 122054-1-122054-8 + supplementary materials.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.jnoncrysol.2022.122054
Vancouver
Galleani G, Khalil AA, Canioni L, Dussauze M, Fargin E, Cardinal T, de Camargo ASS. Fluorine and sodium depletion followed by refractive index modification imprinted on fluorophosphate glass surface by thermal poling [Internet]. Journal of Non-Crystalline Solids. 2023 ; 601 122054-1-122054-8 + supplementary materials.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.jnoncrysol.2022.122054
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SHASMAL, Nilanjana e DE CAMARGO, Andrea Simone Stucchi e RODRIGUES, Ana Candida Martins. Effect of thermal treatment on ZnSe quantum dots and energy transfer in borosilicate glasses doped with ZnSe and Er3+/ZnSe. Journal of Non-Crystalline Solids, v. 612, p. 122337-1-122337-11 + supplementary materials, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.jnoncrysol.2023.122337. Acesso em: 26 abr. 2024.
APA
Shasmal, N., de Camargo, A. S. S., & Rodrigues, A. C. M. (2023). Effect of thermal treatment on ZnSe quantum dots and energy transfer in borosilicate glasses doped with ZnSe and Er3+/ZnSe. Journal of Non-Crystalline Solids, 612, 122337-1-122337-11 + supplementary materials. doi:10.1016/j.jnoncrysol.2023.122337
NLM
Shasmal N, de Camargo ASS, Rodrigues ACM. Effect of thermal treatment on ZnSe quantum dots and energy transfer in borosilicate glasses doped with ZnSe and Er3+/ZnSe [Internet]. Journal of Non-Crystalline Solids. 2023 ; 612 122337-1-122337-11 + supplementary materials.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.jnoncrysol.2023.122337
Vancouver
Shasmal N, de Camargo ASS, Rodrigues ACM. Effect of thermal treatment on ZnSe quantum dots and energy transfer in borosilicate glasses doped with ZnSe and Er3+/ZnSe [Internet]. Journal of Non-Crystalline Solids. 2023 ; 612 122337-1-122337-11 + supplementary materials.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.jnoncrysol.2023.122337
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GALLEANI, Gustavo et al. BiF3 incorporation in RE doped fluoride-phosphate glasses for high energy radiation detectors. 2023, Anais.. Westerville: American Ceramic Society - ACerS, 2023. Disponível em: https://eppro02.ativ.me/web/page.php?page=IntHtml&project=MCARE2023&id=3517472. Acesso em: 26 abr. 2024.
APA
Galleani, G., Gaddam, A., Yoshimura, E. M., Trindade, N. M., Eckert, H., & de Camargo, A. S. S. (2023). BiF3 incorporation in RE doped fluoride-phosphate glasses for high energy radiation detectors. In Abstracts. Westerville: American Ceramic Society - ACerS. Recuperado de https://eppro02.ativ.me/web/page.php?page=IntHtml&project=MCARE2023&id=3517472
NLM
Galleani G, Gaddam A, Yoshimura EM, Trindade NM, Eckert H, de Camargo ASS. BiF3 incorporation in RE doped fluoride-phosphate glasses for high energy radiation detectors [Internet]. Abstracts. 2023 ;[citado 2024 abr. 26 ] Available from: https://eppro02.ativ.me/web/page.php?page=IntHtml&project=MCARE2023&id=3517472
Vancouver
Galleani G, Gaddam A, Yoshimura EM, Trindade NM, Eckert H, de Camargo ASS. BiF3 incorporation in RE doped fluoride-phosphate glasses for high energy radiation detectors [Internet]. Abstracts. 2023 ;[citado 2024 abr. 26 ] Available from: https://eppro02.ativ.me/web/page.php?page=IntHtml&project=MCARE2023&id=3517472
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LODI, Thiago Augusto et al. Undoped and Tb3+ doped tungsten gallium-phosphate glasses for UV/X-ray sensing. 2023, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2023. Disponível em: https://repositorio.usp.br/directbitstream/9149e07d-d09d-4c41-83bc-51749f4ce4a6/3161242.pdf. Acesso em: 26 abr. 2024.
APA
Lodi, T. A., Galleani, G., Jacobsohn, L., & de Camargo, A. S. S. (2023). Undoped and Tb3+ doped tungsten gallium-phosphate glasses for UV/X-ray sensing. In Program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://repositorio.usp.br/directbitstream/9149e07d-d09d-4c41-83bc-51749f4ce4a6/3161242.pdf
NLM
Lodi TA, Galleani G, Jacobsohn L, de Camargo ASS. Undoped and Tb3+ doped tungsten gallium-phosphate glasses for UV/X-ray sensing [Internet]. Program. 2023 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/9149e07d-d09d-4c41-83bc-51749f4ce4a6/3161242.pdf
Vancouver
Lodi TA, Galleani G, Jacobsohn L, de Camargo ASS. Undoped and Tb3+ doped tungsten gallium-phosphate glasses for UV/X-ray sensing [Internet]. Program. 2023 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/9149e07d-d09d-4c41-83bc-51749f4ce4a6/3161242.pdf
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ZHANG, Fengchan et al. Improving optical trapping of a single upconverting nanoparticle by plasmonic structure. EPJ Web of Conferences. Les Ulis: Instituto de Física de São Carlos, Universidade de São Paulo. Disponível em: https://doi.org/10.1051/epjconf/202328704015. Acesso em: 26 abr. 2024. , 2023
APA
Zhang, F., Oiticica, P. R. A., Arai, M. S., Oliveira Junior, O. N. de, de Camargo, A. S. S., García, D. J., & González, P. H. (2023). Improving optical trapping of a single upconverting nanoparticle by plasmonic structure. EPJ Web of Conferences. Les Ulis: Instituto de Física de São Carlos, Universidade de São Paulo. doi:10.1051/epjconf/202328704015
NLM
Zhang F, Oiticica PRA, Arai MS, Oliveira Junior ON de, de Camargo ASS, García DJ, González PH. Improving optical trapping of a single upconverting nanoparticle by plasmonic structure [Internet]. EPJ Web of Conferences. 2023 ; 287 04015-1-04015-2.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1051/epjconf/202328704015
Vancouver
Zhang F, Oiticica PRA, Arai MS, Oliveira Junior ON de, de Camargo ASS, García DJ, González PH. Improving optical trapping of a single upconverting nanoparticle by plasmonic structure [Internet]. EPJ Web of Conferences. 2023 ; 287 04015-1-04015-2.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1051/epjconf/202328704015
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LODI, Thiago Augusto et al. Preparation, characterization, and structural studies of new sodium gallium tungstate phosphate glasses. Journal of Non-Crystalline Solids, v. 603, p. 122100-1-122100-9 + supplementary materials, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.jnoncrysol.2022.122100. Acesso em: 26 abr. 2024.
APA
Lodi, T. A., Galleani, G., Oliveira Junior, M. de, Santagneli, S. H., Eckert, H., & de Camargo, A. S. S. (2023). Preparation, characterization, and structural studies of new sodium gallium tungstate phosphate glasses. Journal of Non-Crystalline Solids, 603, 122100-1-122100-9 + supplementary materials. doi:10.1016/j.jnoncrysol.2022.122100
NLM
Lodi TA, Galleani G, Oliveira Junior M de, Santagneli SH, Eckert H, de Camargo ASS. Preparation, characterization, and structural studies of new sodium gallium tungstate phosphate glasses [Internet]. Journal of Non-Crystalline Solids. 2023 ; 603 122100-1-122100-9 + supplementary materials.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.jnoncrysol.2022.122100
Vancouver
Lodi TA, Galleani G, Oliveira Junior M de, Santagneli SH, Eckert H, de Camargo ASS. Preparation, characterization, and structural studies of new sodium gallium tungstate phosphate glasses [Internet]. Journal of Non-Crystalline Solids. 2023 ; 603 122100-1-122100-9 + supplementary materials.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.jnoncrysol.2022.122100
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SILVA, Victor Murilo Poltronieri da et al. Mini museum of glass: marrying chemistry and glass as a case of study for science, outreach, and awareness about glass material. 2023, Anais.. São Paulo: Sociedade Brasileira de Química - SBQ, 2023. Disponível em: https://www.eventweb.com.br/46rasbq/specific-files/manuscripts/46rasbq/818_1676227650.pdf. Acesso em: 26 abr. 2024.
APA
Silva, V. M. P. da, Boas, N. V., Carvalho, L. M., Lenz, G. F., Baltieri, R. S., Garcia, F. D. R., et al. (2023). Mini museum of glass: marrying chemistry and glass as a case of study for science, outreach, and awareness about glass material. In Anais. São Paulo: Sociedade Brasileira de Química - SBQ. Recuperado de https://www.eventweb.com.br/46rasbq/specific-files/manuscripts/46rasbq/818_1676227650.pdf
NLM
Silva VMP da, Boas NV, Carvalho LM, Lenz GF, Baltieri RS, Garcia FDR, Capelo RG, Soares JH da S, Lodi TA, Galleani G, Merízio LG, de Camargo ASS, Manzani D. Mini museum of glass: marrying chemistry and glass as a case of study for science, outreach, and awareness about glass material [Internet]. Anais. 2023 ;[citado 2024 abr. 26 ] Available from: https://www.eventweb.com.br/46rasbq/specific-files/manuscripts/46rasbq/818_1676227650.pdf
Vancouver
Silva VMP da, Boas NV, Carvalho LM, Lenz GF, Baltieri RS, Garcia FDR, Capelo RG, Soares JH da S, Lodi TA, Galleani G, Merízio LG, de Camargo ASS, Manzani D. Mini museum of glass: marrying chemistry and glass as a case of study for science, outreach, and awareness about glass material [Internet]. Anais. 2023 ;[citado 2024 abr. 26 ] Available from: https://www.eventweb.com.br/46rasbq/specific-files/manuscripts/46rasbq/818_1676227650.pdf
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SÁNCHEZ, Yolimar Gil et al. Dual visible and near-infrared luminescence in mononuclear macrocyclic erbium(III) complexes via ligand and metal centred excitation. Dalton Transactions, v. 52, n. 10, p. 3158-3168 + supplementary information, 2023Tradução . . Disponível em: https://doi.org/10.1039/D2DT03447F. Acesso em: 26 abr. 2024.
APA
Sánchez, Y. G., Santana, R. C. de, de Camargo, A. S. S., Merízio, L. G., Carreño, P. F., Durand, P. J. F., et al. (2023). Dual visible and near-infrared luminescence in mononuclear macrocyclic erbium(III) complexes via ligand and metal centred excitation. Dalton Transactions, 52( 10), 3158-3168 + supplementary information. doi:10.1039/D2DT03447F
NLM
Sánchez YG, Santana RC de, de Camargo ASS, Merízio LG, Carreño PF, Durand PJF, Manzur J, Spodine E. Dual visible and near-infrared luminescence in mononuclear macrocyclic erbium(III) complexes via ligand and metal centred excitation [Internet]. Dalton Transactions. 2023 ; 52( 10): 3158-3168 + supplementary information.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1039/D2DT03447F
Vancouver
Sánchez YG, Santana RC de, de Camargo ASS, Merízio LG, Carreño PF, Durand PJF, Manzur J, Spodine E. Dual visible and near-infrared luminescence in mononuclear macrocyclic erbium(III) complexes via ligand and metal centred excitation [Internet]. Dalton Transactions. 2023 ; 52( 10): 3158-3168 + supplementary information.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1039/D2DT03447F
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ADESINA, Morenike Oluwabunmi et al. Green chemistry perspective as a driver in the removal of endocrine disruptive chemicals from water. Sustainable agricultural practices and product design. Tradução . Washingnton, DC: American Chemical Society - ACS, 2023. . Disponível em: https://doi.org/10.1021/bk-2023-1449.ch006. Acesso em: 26 abr. 2024.
APA
Adesina, M. O., Alfred, M. O., Olorunnisola, C. G., Olayanju, O. K., Oladoja, N. A., de Camargo, A. S. S., & Unuabonah, E. I. (2023). Green chemistry perspective as a driver in the removal of endocrine disruptive chemicals from water. In Sustainable agricultural practices and product design. Washingnton, DC: American Chemical Society - ACS. doi:10.1021/bk-2023-1449.ch006
NLM
Adesina MO, Alfred MO, Olorunnisola CG, Olayanju OK, Oladoja NA, de Camargo ASS, Unuabonah EI. Green chemistry perspective as a driver in the removal of endocrine disruptive chemicals from water [Internet]. In: Sustainable agricultural practices and product design. Washingnton, DC: American Chemical Society - ACS; 2023. [citado 2024 abr. 26 ] Available from: https://doi.org/10.1021/bk-2023-1449.ch006
Vancouver
Adesina MO, Alfred MO, Olorunnisola CG, Olayanju OK, Oladoja NA, de Camargo ASS, Unuabonah EI. Green chemistry perspective as a driver in the removal of endocrine disruptive chemicals from water [Internet]. In: Sustainable agricultural practices and product design. Washingnton, DC: American Chemical Society - ACS; 2023. [citado 2024 abr. 26 ] Available from: https://doi.org/10.1021/bk-2023-1449.ch006
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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COSTA, Pedro Felipe Garcia Martins da et al. Multifunctional photoluminescent nanosystems based on CdTe quantum dots. 2023, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2023. Disponível em: https://repositorio.usp.br/directbitstream/2bda597e-76f0-43d3-90dd-c36dfdf35a0e/3160313.pdf. Acesso em: 26 abr. 2024.
APA
Costa, P. F. G. M. da, Merízio, L. G., de Camargo, A. S. S., & Terraschke, H. (2023). Multifunctional photoluminescent nanosystems based on CdTe quantum dots. In Program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://repositorio.usp.br/directbitstream/2bda597e-76f0-43d3-90dd-c36dfdf35a0e/3160313.pdf
NLM
Costa PFGM da, Merízio LG, de Camargo ASS, Terraschke H. Multifunctional photoluminescent nanosystems based on CdTe quantum dots [Internet]. Program. 2023 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/2bda597e-76f0-43d3-90dd-c36dfdf35a0e/3160313.pdf
Vancouver
Costa PFGM da, Merízio LG, de Camargo ASS, Terraschke H. Multifunctional photoluminescent nanosystems based on CdTe quantum dots [Internet]. Program. 2023 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/2bda597e-76f0-43d3-90dd-c36dfdf35a0e/3160313.pdf
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LODI, Thiago Augusto et al. Intrinsic and extrinsic emission by undoped and Tb3+ doped gallium tungsten-phosphate glass scintillator. 2022, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2022. Disponível em: https://repositorio.usp.br/directbitstream/8b4d3526-bbd5-4a5f-a18d-a3c997120a05/3097517.pdf. Acesso em: 26 abr. 2024.
APA
Lodi, T. A., Galleani, G., Jacobsohn, L., & de Camargo, A. S. S. (2022). Intrinsic and extrinsic emission by undoped and Tb3+ doped gallium tungsten-phosphate glass scintillator. In Program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://repositorio.usp.br/directbitstream/8b4d3526-bbd5-4a5f-a18d-a3c997120a05/3097517.pdf
NLM
Lodi TA, Galleani G, Jacobsohn L, de Camargo ASS. Intrinsic and extrinsic emission by undoped and Tb3+ doped gallium tungsten-phosphate glass scintillator [Internet]. Program. 2022 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/8b4d3526-bbd5-4a5f-a18d-a3c997120a05/3097517.pdf
Vancouver
Lodi TA, Galleani G, Jacobsohn L, de Camargo ASS. Intrinsic and extrinsic emission by undoped and Tb3+ doped gallium tungsten-phosphate glass scintillator [Internet]. Program. 2022 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/8b4d3526-bbd5-4a5f-a18d-a3c997120a05/3097517.pdf
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JESUS, Vinicius Duarte et al. Luminescence of silver centers in gallium-phosphooxyfluoride glasses. 2022, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2022. Disponível em: https://repositorio.usp.br/directbitstream/14593588-b821-493c-83e0-6c02fb87880f/3097564.pdf. Acesso em: 26 abr. 2024.
APA
Jesus, V. D., Galleani, G., Merízio, L. G., & de Camargo, A. S. S. (2022). Luminescence of silver centers in gallium-phosphooxyfluoride glasses. In Program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://repositorio.usp.br/directbitstream/14593588-b821-493c-83e0-6c02fb87880f/3097564.pdf
NLM
Jesus VD, Galleani G, Merízio LG, de Camargo ASS. Luminescence of silver centers in gallium-phosphooxyfluoride glasses [Internet]. Program. 2022 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/14593588-b821-493c-83e0-6c02fb87880f/3097564.pdf
Vancouver
Jesus VD, Galleani G, Merízio LG, de Camargo ASS. Luminescence of silver centers in gallium-phosphooxyfluoride glasses [Internet]. Program. 2022 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/14593588-b821-493c-83e0-6c02fb87880f/3097564.pdf
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REIS, Vitor de Lima et al. Luminescence properties of rare-earth ion doped gallium based fluorophosphate glasses as possible candidates for high-energy radiation detectors. 2022, Anais.. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat, 2022. Disponível em: https://repositorio.usp.br/directbitstream/57af2a6f-fdb5-4093-b7c2-652cabe6c237/3097439.pdf. Acesso em: 26 abr. 2024.
APA
Reis, V. de L., Galleani, G., Lodi, T. A., & de Camargo, A. S. S. (2022). Luminescence properties of rare-earth ion doped gallium based fluorophosphate glasses as possible candidates for high-energy radiation detectors. In Program. Rio de Janeiro: Sociedade Brasileira de Pesquisa em Materiais - SBPMat. Recuperado de https://repositorio.usp.br/directbitstream/57af2a6f-fdb5-4093-b7c2-652cabe6c237/3097439.pdf
NLM
Reis V de L, Galleani G, Lodi TA, de Camargo ASS. Luminescence properties of rare-earth ion doped gallium based fluorophosphate glasses as possible candidates for high-energy radiation detectors [Internet]. Program. 2022 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/57af2a6f-fdb5-4093-b7c2-652cabe6c237/3097439.pdf
Vancouver
Reis V de L, Galleani G, Lodi TA, de Camargo ASS. Luminescence properties of rare-earth ion doped gallium based fluorophosphate glasses as possible candidates for high-energy radiation detectors [Internet]. Program. 2022 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/57af2a6f-fdb5-4093-b7c2-652cabe6c237/3097439.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
QUADROS, Thales e DE CAMARGO, Andrea Simone Stucchi. Prospecção teórica para a otimização do método da razão de intensidade de luminescência em termometria óptica. 2022, Anais.. São Carlos: Instituto de Física de São Carlos - IFSC, 2022. Disponível em: https://repositorio.usp.br/directbitstream/517b9211-a5af-4cfc-bc74-c13703bb8d7c/3115692.pdf. Acesso em: 26 abr. 2024.
APA
Quadros, T., & de Camargo, A. S. S. (2022). Prospecção teórica para a otimização do método da razão de intensidade de luminescência em termometria óptica. In Livro de Resumos. São Carlos: Instituto de Física de São Carlos - IFSC. Recuperado de https://repositorio.usp.br/directbitstream/517b9211-a5af-4cfc-bc74-c13703bb8d7c/3115692.pdf
NLM
Quadros T, de Camargo ASS. Prospecção teórica para a otimização do método da razão de intensidade de luminescência em termometria óptica [Internet]. Livro de Resumos. 2022 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/517b9211-a5af-4cfc-bc74-c13703bb8d7c/3115692.pdf
Vancouver
Quadros T, de Camargo ASS. Prospecção teórica para a otimização do método da razão de intensidade de luminescência em termometria óptica [Internet]. Livro de Resumos. 2022 ;[citado 2024 abr. 26 ] Available from: https://repositorio.usp.br/directbitstream/517b9211-a5af-4cfc-bc74-c13703bb8d7c/3115692.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
GALLEANI, Gustavo et al. Photoluminescence and X-ray induced scintillation in Gd3+-modified fluorophosphate glasses doped with Ce3+. Optical Materials, v. No 2022, p. 112934-1-112934-6, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.optmat.2022.112934. Acesso em: 26 abr. 2024.
APA
Galleani, G., Lodi, T. A., Mastelaro, V. R., Jacobsohn, L. G., & de Camargo, A. S. S. (2022). Photoluminescence and X-ray induced scintillation in Gd3+-modified fluorophosphate glasses doped with Ce3+. Optical Materials, No 2022, 112934-1-112934-6. doi:10.1016/j.optmat.2022.112934
NLM
Galleani G, Lodi TA, Mastelaro VR, Jacobsohn LG, de Camargo ASS. Photoluminescence and X-ray induced scintillation in Gd3+-modified fluorophosphate glasses doped with Ce3+ [Internet]. Optical Materials. 2022 ; No 2022 112934-1-112934-6.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.optmat.2022.112934
Vancouver
Galleani G, Lodi TA, Mastelaro VR, Jacobsohn LG, de Camargo ASS. Photoluminescence and X-ray induced scintillation in Gd3+-modified fluorophosphate glasses doped with Ce3+ [Internet]. Optical Materials. 2022 ; No 2022 112934-1-112934-6.[citado 2024 abr. 26 ] Available from: https://doi.org/10.1016/j.optmat.2022.112934