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HALIM, Adila Binti Abdul et al. The Pierre Auger Observatory open data. European Physical Journal C, v. 85, n. Ja 2025, p. 70-1-70-24, 2025Tradução . . Disponível em: https://doi.org/10.1140/epjc/s10052-024-13560-5. Acesso em: 04 nov. 2025.
APA
Halim, A. B. A., Catalani, F., Peixoto, C. J. T., Souza, V. de, Oliveira, C. de, & Santos, E. M. (2025). The Pierre Auger Observatory open data. European Physical Journal C, 85( Ja 2025), 70-1-70-24. doi:10.1140/epjc/s10052-024-13560-5
NLM
Halim ABA, Catalani F, Peixoto CJT, Souza V de, Oliveira C de, Santos EM. The Pierre Auger Observatory open data [Internet]. European Physical Journal C. 2025 ; 85( Ja 2025): 70-1-70-24.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1140/epjc/s10052-024-13560-5
Vancouver
Halim ABA, Catalani F, Peixoto CJT, Souza V de, Oliveira C de, Santos EM. The Pierre Auger Observatory open data [Internet]. European Physical Journal C. 2025 ; 85( Ja 2025): 70-1-70-24.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1140/epjc/s10052-024-13560-5
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HALIM, Adila Binti Abdul et al. Measurement of the depth of maximum of air-shower profiles with energies between 10^18.5 and 10^20 eV using the surface detector of the Pierre Auger Observatory and deep learning. Physical Review D, v. 111, n. Ja 2025, p. 022003-1-022003-30, 2025Tradução . . Disponível em: https://doi.org/10.1103/PhysRevD.111.022003. Acesso em: 04 nov. 2025.
APA
Halim, A. B. A., Catalani, F., Souza, V. de, Santos, E. M., Oliveira, C. de, & Peixoto, C. J. T. (2025). Measurement of the depth of maximum of air-shower profiles with energies between 10^18.5 and 10^20 eV using the surface detector of the Pierre Auger Observatory and deep learning. Physical Review D, 111( Ja 2025), 022003-1-022003-30. doi:10.1103/PhysRevD.111.022003
NLM
Halim ABA, Catalani F, Souza V de, Santos EM, Oliveira C de, Peixoto CJT. Measurement of the depth of maximum of air-shower profiles with energies between 10^18.5 and 10^20 eV using the surface detector of the Pierre Auger Observatory and deep learning [Internet]. Physical Review D. 2025 ; 111( Ja 2025): 022003-1-022003-30.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.111.022003
Vancouver
Halim ABA, Catalani F, Souza V de, Santos EM, Oliveira C de, Peixoto CJT. Measurement of the depth of maximum of air-shower profiles with energies between 10^18.5 and 10^20 eV using the surface detector of the Pierre Auger Observatory and deep learning [Internet]. Physical Review D. 2025 ; 111( Ja 2025): 022003-1-022003-30.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.111.022003
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ALBERCA, Lucas Nicolás et al. LIDEB's useful decoys (LUDe): a freely available decoy-generation tool. Benchmarking and scope. Artificial Intelligence in the Life Sciences, v. 7, p. 100129-1-100129-10 + supplementary materials, 2025Tradução . . Disponível em: https://doi.org/10.1016/j.ailsci.2025.100129. Acesso em: 04 nov. 2025.
APA
Alberca, L. N., Prada Gori, D. N., Fallico, M. J., Fassio, A. V., Talevi, A., & Bellera, C. L. (2025). LIDEB's useful decoys (LUDe): a freely available decoy-generation tool. Benchmarking and scope. Artificial Intelligence in the Life Sciences, 7, 100129-1-100129-10 + supplementary materials. doi:10.1016/j.ailsci.2025.100129
NLM
Alberca LN, Prada Gori DN, Fallico MJ, Fassio AV, Talevi A, Bellera CL. LIDEB's useful decoys (LUDe): a freely available decoy-generation tool. Benchmarking and scope [Internet]. Artificial Intelligence in the Life Sciences. 2025 ; 7 100129-1-100129-10 + supplementary materials.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.ailsci.2025.100129
Vancouver
Alberca LN, Prada Gori DN, Fallico MJ, Fassio AV, Talevi A, Bellera CL. LIDEB's useful decoys (LUDe): a freely available decoy-generation tool. Benchmarking and scope [Internet]. Artificial Intelligence in the Life Sciences. 2025 ; 7 100129-1-100129-10 + supplementary materials.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.ailsci.2025.100129
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HALIM, Adila Binti Abdul et al. The distribution of ultrahigh-energy cosmic rays along the supergalactic plane measured at the Pierre Auger Observatory. Astrophysical Journal, v. 984, n. 2, 2025Tradução . . Disponível em: https://doi.org/10.3847/1538-4357/adbdc5. Acesso em: 04 nov. 2025.
APA
Halim, A. B. A., Catalani, F., Souza, V. de, Oliveira, C. de, Pérez Armand, J., Santos, E. M., & Peixoto, C. J. T. (2025). The distribution of ultrahigh-energy cosmic rays along the supergalactic plane measured at the Pierre Auger Observatory. Astrophysical Journal, 984( 2). doi:10.3847/1538-4357/adbdc5
NLM
Halim ABA, Catalani F, Souza V de, Oliveira C de, Pérez Armand J, Santos EM, Peixoto CJT. The distribution of ultrahigh-energy cosmic rays along the supergalactic plane measured at the Pierre Auger Observatory [Internet]. Astrophysical Journal. 2025 ; 984( 2):[citado 2025 nov. 04 ] Available from: https://doi.org/10.3847/1538-4357/adbdc5
Vancouver
Halim ABA, Catalani F, Souza V de, Oliveira C de, Pérez Armand J, Santos EM, Peixoto CJT. The distribution of ultrahigh-energy cosmic rays along the supergalactic plane measured at the Pierre Auger Observatory [Internet]. Astrophysical Journal. 2025 ; 984( 2):[citado 2025 nov. 04 ] Available from: https://doi.org/10.3847/1538-4357/adbdc5
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GUTIÉRREZ, Eduardo Luciano et al. Supramolecular assembly of mebendazolium and dihydrogen phosphate ions in a new anthelmintic salt. Acta Crystallographica E, v. 81, p. E81-1-E81-5, 2025Tradução . . Disponível em: https://doi.org/10.1107/S2056989025000714. Acesso em: 04 nov. 2025.
APA
Gutiérrez, E. L., Russo, M. G., Narda, G. E., Brusau, E. V., Ayala, A. P., & Ellena, J. (2025). Supramolecular assembly of mebendazolium and dihydrogen phosphate ions in a new anthelmintic salt. Acta Crystallographica E, 81, E81-1-E81-5. doi:10.1107/S2056989025000714
NLM
Gutiérrez EL, Russo MG, Narda GE, Brusau EV, Ayala AP, Ellena J. Supramolecular assembly of mebendazolium and dihydrogen phosphate ions in a new anthelmintic salt [Internet]. Acta Crystallographica E. 2025 ; 81 E81-1-E81-5.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1107/S2056989025000714
Vancouver
Gutiérrez EL, Russo MG, Narda GE, Brusau EV, Ayala AP, Ellena J. Supramolecular assembly of mebendazolium and dihydrogen phosphate ions in a new anthelmintic salt [Internet]. Acta Crystallographica E. 2025 ; 81 E81-1-E81-5.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1107/S2056989025000714
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MOLLO, María Cruz et al. Synthesis and in vitro leishmanicidal activity of novel n-arylspermidine derivatives. Bioorganic Chemistry, v. 154, n. Ja 2025, p. 108083-1-108083-8 + supplementary data, 2025Tradução . . Disponível em: https://doi.org/10.1016/j.bioorg.2024.108083. Acesso em: 04 nov. 2025.
APA
Mollo, M. C., Cambiaso, M. L., Ferreira, L. L. G., Kilimciler, N. B., Bisceglia, J. A., Andricopulo, A. D., & Orelli, L. R. (2025). Synthesis and in vitro leishmanicidal activity of novel n-arylspermidine derivatives. Bioorganic Chemistry, 154( Ja 2025), 108083-1-108083-8 + supplementary data. doi:10.1016/j.bioorg.2024.108083
NLM
Mollo MC, Cambiaso ML, Ferreira LLG, Kilimciler NB, Bisceglia JA, Andricopulo AD, Orelli LR. Synthesis and in vitro leishmanicidal activity of novel n-arylspermidine derivatives [Internet]. Bioorganic Chemistry. 2025 ; 154( Ja 2025): 108083-1-108083-8 + supplementary data.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.bioorg.2024.108083
Vancouver
Mollo MC, Cambiaso ML, Ferreira LLG, Kilimciler NB, Bisceglia JA, Andricopulo AD, Orelli LR. Synthesis and in vitro leishmanicidal activity of novel n-arylspermidine derivatives [Internet]. Bioorganic Chemistry. 2025 ; 154( Ja 2025): 108083-1-108083-8 + supplementary data.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.bioorg.2024.108083
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PARRA, Lucía Santa Maria de la et al. Promising dual anticancer and antimetastatic action by a Cu(II) complex derived from acylhydrazone on human osteosarcoma models. Inorganic Chemistry, v. 63, n. 11, p. 4925-4938 + supporting information: S1-S13, 2024Tradução . . Disponível em: https://doi.org/10.1021/acs.inorgchem.3c04085. Acesso em: 04 nov. 2025.
APA
Parra, L. S. M. de la, Romo, A. I. B., Rodríguez-López, J., Nascimento, O. R., Echeverría, G. A., Piro, O. E., & León, I. E. (2024). Promising dual anticancer and antimetastatic action by a Cu(II) complex derived from acylhydrazone on human osteosarcoma models. Inorganic Chemistry, 63( 11), 4925-4938 + supporting information: S1-S13. doi:10.1021/acs.inorgchem.3c04085
NLM
Parra LSM de la, Romo AIB, Rodríguez-López J, Nascimento OR, Echeverría GA, Piro OE, León IE. Promising dual anticancer and antimetastatic action by a Cu(II) complex derived from acylhydrazone on human osteosarcoma models [Internet]. Inorganic Chemistry. 2024 ; 63( 11): 4925-4938 + supporting information: S1-S13.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1021/acs.inorgchem.3c04085
Vancouver
Parra LSM de la, Romo AIB, Rodríguez-López J, Nascimento OR, Echeverría GA, Piro OE, León IE. Promising dual anticancer and antimetastatic action by a Cu(II) complex derived from acylhydrazone on human osteosarcoma models [Internet]. Inorganic Chemistry. 2024 ; 63( 11): 4925-4938 + supporting information: S1-S13.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1021/acs.inorgchem.3c04085
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HALIM, Adila Binti Abdul et al. Radio measurements of the depth of air-shower maximum at the Pierre Auger Observatory. Physical Review D, v. 109, n. Ja 2024, p. 022002-1-022002-24, 2024Tradução . . Disponível em: https://doi.org/10.1103/PhysRevD.109.022002. Acesso em: 04 nov. 2025.
APA
Halim, A. B. A., Catalani, F., Peixoto, C. J. T., Souza, V. de, Oliveira, C. de, Armand, J. P., & Santos, E. M. (2024). Radio measurements of the depth of air-shower maximum at the Pierre Auger Observatory. Physical Review D, 109( Ja 2024), 022002-1-022002-24. doi:10.1103/PhysRevD.109.022002
NLM
Halim ABA, Catalani F, Peixoto CJT, Souza V de, Oliveira C de, Armand JP, Santos EM. Radio measurements of the depth of air-shower maximum at the Pierre Auger Observatory [Internet]. Physical Review D. 2024 ; 109( Ja 2024): 022002-1-022002-24.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.109.022002
Vancouver
Halim ABA, Catalani F, Peixoto CJT, Souza V de, Oliveira C de, Armand JP, Santos EM. Radio measurements of the depth of air-shower maximum at the Pierre Auger Observatory [Internet]. Physical Review D. 2024 ; 109( Ja 2024): 022002-1-022002-24.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.109.022002
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HALIM, Adila Binti Abdul et al. Testing hadronic-model predictions of depth of maximum of air-shower profiles and ground-particle signals using hybrid data of the Pierre Auger Observatory. Physical Review D, v. 109, n. 10, p. 102001-1-102001-28, 2024Tradução . . Disponível em: https://doi.org/10.1103/PhysRevD.109.102001. Acesso em: 04 nov. 2025.
APA
Halim, A. B. A., Catalani, F., Souza, V. de, Oliveira, C. de, Armand, J. P., Santos, E. M., & Peixoto, C. J. T. (2024). Testing hadronic-model predictions of depth of maximum of air-shower profiles and ground-particle signals using hybrid data of the Pierre Auger Observatory. Physical Review D, 109( 10), 102001-1-102001-28. doi:10.1103/PhysRevD.109.102001
NLM
Halim ABA, Catalani F, Souza V de, Oliveira C de, Armand JP, Santos EM, Peixoto CJT. Testing hadronic-model predictions of depth of maximum of air-shower profiles and ground-particle signals using hybrid data of the Pierre Auger Observatory [Internet]. Physical Review D. 2024 ; 109( 10): 102001-1-102001-28.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.109.102001
Vancouver
Halim ABA, Catalani F, Souza V de, Oliveira C de, Armand JP, Santos EM, Peixoto CJT. Testing hadronic-model predictions of depth of maximum of air-shower profiles and ground-particle signals using hybrid data of the Pierre Auger Observatory [Internet]. Physical Review D. 2024 ; 109( 10): 102001-1-102001-28.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.109.102001
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HALIM, Adila Binti Abdul et al. Impact of the magnetic horizon on the interpretation of the Pierre Auger Observatory spectrum and composition data. Journal of Cosmology and Astroparticle Physics, v. 2024, n. 7, p. 094-1-094-30, 2024Tradução . . Disponível em: https://doi.org/10.1088/1475-7516/2024/07/094. Acesso em: 04 nov. 2025.
APA
Halim, A. B. A., Catalani, F., Souza, V. de, Oliveira, C. de, Pérez Armand, J., Santos, E. M., & Peixoto, C. J. T. (2024). Impact of the magnetic horizon on the interpretation of the Pierre Auger Observatory spectrum and composition data. Journal of Cosmology and Astroparticle Physics, 2024( 7), 094-1-094-30. doi:10.1088/1475-7516/2024/07/094
NLM
Halim ABA, Catalani F, Souza V de, Oliveira C de, Pérez Armand J, Santos EM, Peixoto CJT. Impact of the magnetic horizon on the interpretation of the Pierre Auger Observatory spectrum and composition data [Internet]. Journal of Cosmology and Astroparticle Physics. 2024 ; 2024( 7): 094-1-094-30.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1088/1475-7516/2024/07/094
Vancouver
Halim ABA, Catalani F, Souza V de, Oliveira C de, Pérez Armand J, Santos EM, Peixoto CJT. Impact of the magnetic horizon on the interpretation of the Pierre Auger Observatory spectrum and composition data [Internet]. Journal of Cosmology and Astroparticle Physics. 2024 ; 2024( 7): 094-1-094-30.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1088/1475-7516/2024/07/094
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HALIM, Adila Binti Abdul et al. Constraints on metastable superheavy dark matter coupled to sterile neutrinos with the Pierre Auger Observatory. Physical Review D, v. 109, n. 8, p. L081101-1-L081101-11, 2024Tradução . . Disponível em: https://doi.org/10.1103/PhysRevD.109.L081101. Acesso em: 04 nov. 2025.
APA
Halim, A. B. A., Catalani, F., Souza, V. de, Oliveira, C. de, Armand, J. P., Santos, E. M., & Peixoto, C. J. T. (2024). Constraints on metastable superheavy dark matter coupled to sterile neutrinos with the Pierre Auger Observatory. Physical Review D, 109( 8), L081101-1-L081101-11. doi:10.1103/PhysRevD.109.L081101
NLM
Halim ABA, Catalani F, Souza V de, Oliveira C de, Armand JP, Santos EM, Peixoto CJT. Constraints on metastable superheavy dark matter coupled to sterile neutrinos with the Pierre Auger Observatory [Internet]. Physical Review D. 2024 ; 109( 8): L081101-1-L081101-11.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.109.L081101
Vancouver
Halim ABA, Catalani F, Souza V de, Oliveira C de, Armand JP, Santos EM, Peixoto CJT. Constraints on metastable superheavy dark matter coupled to sterile neutrinos with the Pierre Auger Observatory [Internet]. Physical Review D. 2024 ; 109( 8): L081101-1-L081101-11.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.109.L081101
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LONGARZO, María Lucrecia et al. Understanding the effects of omega-3 fatty acid supplementation on the physical properties of brain lipid membranes. IScience, v. 27, n. 7, p. 110362-1-110362-15, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.isci.2024.110362. Acesso em: 04 nov. 2025.
APA
Longarzo, M. L., Vázquez, R. F., Bellini, M. J., Zamora, R. A., Morata, L. R., Giannotti, M. I., et al. (2024). Understanding the effects of omega-3 fatty acid supplementation on the physical properties of brain lipid membranes. IScience, 27( 7), 110362-1-110362-15. doi:10.1016/j.isci.2024.110362
NLM
Longarzo ML, Vázquez RF, Bellini MJ, Zamora RA, Morata LR, Giannotti MI, Oliveira Junior ON de, Fanani ML, Maté SM. Understanding the effects of omega-3 fatty acid supplementation on the physical properties of brain lipid membranes [Internet]. IScience. 2024 ; 27( 7): 110362-1-110362-15.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.isci.2024.110362
Vancouver
Longarzo ML, Vázquez RF, Bellini MJ, Zamora RA, Morata LR, Giannotti MI, Oliveira Junior ON de, Fanani ML, Maté SM. Understanding the effects of omega-3 fatty acid supplementation on the physical properties of brain lipid membranes [Internet]. IScience. 2024 ; 27( 7): 110362-1-110362-15.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.isci.2024.110362
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HALIM, Adila Binti Abdul et al. Search for photons above 1018 eV by simultaneously measuring the atmospheric depth and the muon content of air showers at the Pierre Auger Observatory. Physical Review D, v. 110, n. 6, p. 062005-1-062005-21, 2024Tradução . . Disponível em: https://doi.org/10.1103/PhysRevD.110.062005. Acesso em: 04 nov. 2025.
APA
Halim, A. B. A., Catalani, F., Souza, V. de, Oliveira, C. de, Santos, E. M., & Peixoto, C. J. T. (2024). Search for photons above 1018 eV by simultaneously measuring the atmospheric depth and the muon content of air showers at the Pierre Auger Observatory. Physical Review D, 110( 6), 062005-1-062005-21. doi:10.1103/PhysRevD.110.062005
NLM
Halim ABA, Catalani F, Souza V de, Oliveira C de, Santos EM, Peixoto CJT. Search for photons above 1018 eV by simultaneously measuring the atmospheric depth and the muon content of air showers at the Pierre Auger Observatory [Internet]. Physical Review D. 2024 ; 110( 6): 062005-1-062005-21.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.110.062005
Vancouver
Halim ABA, Catalani F, Souza V de, Oliveira C de, Santos EM, Peixoto CJT. Search for photons above 1018 eV by simultaneously measuring the atmospheric depth and the muon content of air showers at the Pierre Auger Observatory [Internet]. Physical Review D. 2024 ; 110( 6): 062005-1-062005-21.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1103/PhysRevD.110.062005
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RUSSO, Marcos Guillermo et al. Crystalline and amorphous famotidine malate as pathways to prevent polymorphic transformation with improved dissolution. International Journal of Pharmaceutics, v. 642, p. 123053-1-123053-10 + supplementary material, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.ijpharm.2023.123053. Acesso em: 04 nov. 2025.
APA
Russo, M. G., Brusau, E. V., Ellena, J., & Narda, G. E. (2023). Crystalline and amorphous famotidine malate as pathways to prevent polymorphic transformation with improved dissolution. International Journal of Pharmaceutics, 642, 123053-1-123053-10 + supplementary material. doi:10.1016/j.ijpharm.2023.123053
NLM
Russo MG, Brusau EV, Ellena J, Narda GE. Crystalline and amorphous famotidine malate as pathways to prevent polymorphic transformation with improved dissolution [Internet]. International Journal of Pharmaceutics. 2023 ; 642 123053-1-123053-10 + supplementary material.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.ijpharm.2023.123053
Vancouver
Russo MG, Brusau EV, Ellena J, Narda GE. Crystalline and amorphous famotidine malate as pathways to prevent polymorphic transformation with improved dissolution [Internet]. International Journal of Pharmaceutics. 2023 ; 642 123053-1-123053-10 + supplementary material.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.ijpharm.2023.123053
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LÍBERO, Laura Ordonho et al. Introducing structural diversity: Fe2(MoO4)3 immobilized in chitosan films as an efficient catalyst for the selective oxidation of sulfides to sulfones. ChemCatChem, v. 15, n. 10, p. e202300421-1-e202300421-10, 2023Tradução . . Disponível em: https://doi.org/10.1002/cctc.202300421. Acesso em: 04 nov. 2025.
APA
Líbero, L. O., Silva, L. K. R. da, Granone, L. I., Churio, M. S., Souza, J. C., Mastelaro, V. R., et al. (2023). Introducing structural diversity: Fe2(MoO4)3 immobilized in chitosan films as an efficient catalyst for the selective oxidation of sulfides to sulfones. ChemCatChem, 15( 10), e202300421-1-e202300421-10. doi:10.1002/cctc.202300421
NLM
Líbero LO, Silva LKR da, Granone LI, Churio MS, Souza JC, Mastelaro VR, Andres J, Longo E, Mascaro LH, Assis M de. Introducing structural diversity: Fe2(MoO4)3 immobilized in chitosan films as an efficient catalyst for the selective oxidation of sulfides to sulfones [Internet]. ChemCatChem. 2023 ; 15( 10): e202300421-1-e202300421-10.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1002/cctc.202300421
Vancouver
Líbero LO, Silva LKR da, Granone LI, Churio MS, Souza JC, Mastelaro VR, Andres J, Longo E, Mascaro LH, Assis M de. Introducing structural diversity: Fe2(MoO4)3 immobilized in chitosan films as an efficient catalyst for the selective oxidation of sulfides to sulfones [Internet]. ChemCatChem. 2023 ; 15( 10): e202300421-1-e202300421-10.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1002/cctc.202300421
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BARROSO, Juan Arturo Gomez et al. X-ray diffraction and in vivo studies reveal the quinary structure of Trypanosoma cruzi nucleoside diphosphate kinase 1: a novel helical oligomer structure. Acta Crystallographica D, v. 78, n. Ja 2022, p. 30-42, 2022Tradução . . Disponível em: https://doi.org/10.1107/S2059798321011219. Acesso em: 04 nov. 2025.
APA
Barroso, J. A. G., Miranda, M. R., Pereira, C. A., Garratt, R. C., & Aguilar, C. F. (2022). X-ray diffraction and in vivo studies reveal the quinary structure of Trypanosoma cruzi nucleoside diphosphate kinase 1: a novel helical oligomer structure. Acta Crystallographica D, 78( Ja 2022), 30-42. doi:10.1107/S2059798321011219
NLM
Barroso JAG, Miranda MR, Pereira CA, Garratt RC, Aguilar CF. X-ray diffraction and in vivo studies reveal the quinary structure of Trypanosoma cruzi nucleoside diphosphate kinase 1: a novel helical oligomer structure [Internet]. Acta Crystallographica D. 2022 ; 78( Ja 2022): 30-42.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1107/S2059798321011219
Vancouver
Barroso JAG, Miranda MR, Pereira CA, Garratt RC, Aguilar CF. X-ray diffraction and in vivo studies reveal the quinary structure of Trypanosoma cruzi nucleoside diphosphate kinase 1: a novel helical oligomer structure [Internet]. Acta Crystallographica D. 2022 ; 78( Ja 2022): 30-42.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1107/S2059798321011219
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D'VRIES, Richard F. e GOMEZ, Germán E. e ELLENA, Javier. Highlighting recent crystalline engineering aspects of luminescent coordination polymers based on F-elements and ditopic aliphatic ligands. Molecules, v. 27, n. 12, p. 3830-1-3830-14, 2022Tradução . . Disponível em: https://doi.org/10.3390/molecules27123830. Acesso em: 04 nov. 2025.
APA
D'Vries, R. F., Gomez, G. E., & Ellena, J. (2022). Highlighting recent crystalline engineering aspects of luminescent coordination polymers based on F-elements and ditopic aliphatic ligands. Molecules, 27( 12), 3830-1-3830-14. doi:10.3390/molecules27123830
NLM
D'Vries RF, Gomez GE, Ellena J. Highlighting recent crystalline engineering aspects of luminescent coordination polymers based on F-elements and ditopic aliphatic ligands [Internet]. Molecules. 2022 ; 27( 12): 3830-1-3830-14.[citado 2025 nov. 04 ] Available from: https://doi.org/10.3390/molecules27123830
Vancouver
D'Vries RF, Gomez GE, Ellena J. Highlighting recent crystalline engineering aspects of luminescent coordination polymers based on F-elements and ditopic aliphatic ligands [Internet]. Molecules. 2022 ; 27( 12): 3830-1-3830-14.[citado 2025 nov. 04 ] Available from: https://doi.org/10.3390/molecules27123830
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ABNT
CAIRO, Raúl Ramos et al. Dynamics of formation of binuclear metal complexes: a new Cu(I) compound with N-(2-thiophenecarbonyl)-N’-(3-Cl, 4-F-phenyl)thiourea as ligand. Chemistry Select, v. 7, n. 29, p. e202202145-1-e202202145-8, 2022Tradução . . Disponível em: https://doi.org/10.1002/slct.202202145. Acesso em: 04 nov. 2025.
APA
Cairo, R. R., Plutín, A. M., Castell, R. O. M., Castellano, E. E., Correa, R. S., González, D. L. N., et al. (2022). Dynamics of formation of binuclear metal complexes: a new Cu(I) compound with N-(2-thiophenecarbonyl)-N’-(3-Cl, 4-F-phenyl)thiourea as ligand. Chemistry Select, 7( 29), e202202145-1-e202202145-8. doi:10.1002/slct.202202145
NLM
Cairo RR, Plutín AM, Castell ROM, Castellano EE, Correa RS, González DLN, Erben MF, Cominetti MR, Leite CM, Oliveira TD, Batista AA. Dynamics of formation of binuclear metal complexes: a new Cu(I) compound with N-(2-thiophenecarbonyl)-N’-(3-Cl, 4-F-phenyl)thiourea as ligand [Internet]. Chemistry Select. 2022 ; 7( 29): e202202145-1-e202202145-8.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1002/slct.202202145
Vancouver
Cairo RR, Plutín AM, Castell ROM, Castellano EE, Correa RS, González DLN, Erben MF, Cominetti MR, Leite CM, Oliveira TD, Batista AA. Dynamics of formation of binuclear metal complexes: a new Cu(I) compound with N-(2-thiophenecarbonyl)-N’-(3-Cl, 4-F-phenyl)thiourea as ligand [Internet]. Chemistry Select. 2022 ; 7( 29): e202202145-1-e202202145-8.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1002/slct.202202145
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ESPIRITO SANTO, Melissa Cristina do et al. Leaves from four different sugarcane varieties as potential renewable feedstocks for second-generation ethanol production: pretreatments, chemical composition, physical structure, and enzymatic hydrolysis yields. Biocatalysis and Agricultural Biotechnology, v. 45, p. 102485-1-102485-13, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.bcab.2022.102485. Acesso em: 04 nov. 2025.
APA
Espirito Santo, M. C. do, Kane, A. O., Pellegrini, V. de O. A., TefoThema, F., García, J. M., Acevedo, A., et al. (2022). Leaves from four different sugarcane varieties as potential renewable feedstocks for second-generation ethanol production: pretreatments, chemical composition, physical structure, and enzymatic hydrolysis yields. Biocatalysis and Agricultural Biotechnology, 45, 102485-1-102485-13. doi:10.1016/j.bcab.2022.102485
NLM
Espirito Santo MC do, Kane AO, Pellegrini V de OA, TefoThema F, García JM, Acevedo A, Erazzú LE, Guimarães FEG, Azevêdo ER de, Polikarpov I. Leaves from four different sugarcane varieties as potential renewable feedstocks for second-generation ethanol production: pretreatments, chemical composition, physical structure, and enzymatic hydrolysis yields [Internet]. Biocatalysis and Agricultural Biotechnology. 2022 ; 45 102485-1-102485-13.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.bcab.2022.102485
Vancouver
Espirito Santo MC do, Kane AO, Pellegrini V de OA, TefoThema F, García JM, Acevedo A, Erazzú LE, Guimarães FEG, Azevêdo ER de, Polikarpov I. Leaves from four different sugarcane varieties as potential renewable feedstocks for second-generation ethanol production: pretreatments, chemical composition, physical structure, and enzymatic hydrolysis yields [Internet]. Biocatalysis and Agricultural Biotechnology. 2022 ; 45 102485-1-102485-13.[citado 2025 nov. 04 ] Available from: https://doi.org/10.1016/j.bcab.2022.102485
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ABNT
ABREU, P. et al. Arrival directions of cosmic rays above 32 EeV from phase one of the Pierre Auger Observatory. Astrophysical Journal, v. 935, n. 2, p. 170-1-170-24, 2022Tradução . . Disponível em: https://doi.org/10.3847/1538-4357/ac7d4e. Acesso em: 04 nov. 2025.
APA
Abreu, P., Catalani, F., Peixoto, C. J. T., Souza, V. de, Oliveira, C. de, Armand, J. P., & Santos, E. M. (2022). Arrival directions of cosmic rays above 32 EeV from phase one of the Pierre Auger Observatory. Astrophysical Journal, 935( 2), 170-1-170-24. doi:10.3847/1538-4357/ac7d4e
NLM
Abreu P, Catalani F, Peixoto CJT, Souza V de, Oliveira C de, Armand JP, Santos EM. Arrival directions of cosmic rays above 32 EeV from phase one of the Pierre Auger Observatory [Internet]. Astrophysical Journal. 2022 ; 935( 2): 170-1-170-24.[citado 2025 nov. 04 ] Available from: https://doi.org/10.3847/1538-4357/ac7d4e
Vancouver
Abreu P, Catalani F, Peixoto CJT, Souza V de, Oliveira C de, Armand JP, Santos EM. Arrival directions of cosmic rays above 32 EeV from phase one of the Pierre Auger Observatory [Internet]. Astrophysical Journal. 2022 ; 935( 2): 170-1-170-24.[citado 2025 nov. 04 ] Available from: https://doi.org/10.3847/1538-4357/ac7d4e