Combination of 1H time domain NMR , 13C solid-state NMR and infrared spectroscopies as a tool for elucidating degradation mechanisms in constructing polymers (2023)
- Authors:
- USP affiliated authors: NUNES, LUIZ ANTONIO DE OLIVEIRA - IFSC ; AZEVÊDO, EDUARDO RIBEIRO DE - IFSC ; LAZARI, MARINA PERASSOLLI DE - EESC ; OLIVEIRA, JOÃO EDUARDO DE - IFSC ; GARCIA, RODRIGO HENRIQUE DOS SANTOS - IFSC
- Unidades: IFSC; EESC
- Subjects: FÍSICA DA MATÉRIA CONDENSADA; POLÍMEROS (MATERIAIS); RESSONÂNCIA MAGNÉTICA NUCLEAR
- Keywords: Polymers; Degradation; TD-NMR
- Language: Inglês
- Imprenta:
- Source:
- Título: Anais eletrônicos
- Conference titles: NMR Users Meeting
-
ABNT
LÁZARI, Marina Perassolli de et al. Combination of 1H time domain NMR , 13C solid-state NMR and infrared spectroscopies as a tool for elucidating degradation mechanisms in constructing polymers. 2023, Anais.. Campinas: Galoá, 2023. Disponível em: https://proceedings.science/nmrmeeting/19nmrmeeting-2023/papers/combination-of-1h-time-domain-nmr-13c-solid-state-nmr-and-infrared-spectroscopie?lang=en. Acesso em: 28 dez. 2025. -
APA
Lázari, M. P. de, Oliveira, J. E. de, Garcia, R. H. dos S., Teixeira, S. C. dos S., Chaves, E. G., Lima, A. P., et al. (2023). Combination of 1H time domain NMR , 13C solid-state NMR and infrared spectroscopies as a tool for elucidating degradation mechanisms in constructing polymers. In Anais eletrônicos. Campinas: Galoá. Recuperado de https://proceedings.science/nmrmeeting/19nmrmeeting-2023/papers/combination-of-1h-time-domain-nmr-13c-solid-state-nmr-and-infrared-spectroscopie?lang=en -
NLM
Lázari MP de, Oliveira JE de, Garcia RH dos S, Teixeira SC dos S, Chaves EG, Lima AP, Honorato H de A, Menezes SMC, Nunes LA de O, Silva A, Azevêdo ER de. Combination of 1H time domain NMR , 13C solid-state NMR and infrared spectroscopies as a tool for elucidating degradation mechanisms in constructing polymers [Internet]. Anais eletrônicos. 2023 ;[citado 2025 dez. 28 ] Available from: https://proceedings.science/nmrmeeting/19nmrmeeting-2023/papers/combination-of-1h-time-domain-nmr-13c-solid-state-nmr-and-infrared-spectroscopie?lang=en -
Vancouver
Lázari MP de, Oliveira JE de, Garcia RH dos S, Teixeira SC dos S, Chaves EG, Lima AP, Honorato H de A, Menezes SMC, Nunes LA de O, Silva A, Azevêdo ER de. Combination of 1H time domain NMR , 13C solid-state NMR and infrared spectroscopies as a tool for elucidating degradation mechanisms in constructing polymers [Internet]. Anais eletrônicos. 2023 ;[citado 2025 dez. 28 ] Available from: https://proceedings.science/nmrmeeting/19nmrmeeting-2023/papers/combination-of-1h-time-domain-nmr-13c-solid-state-nmr-and-infrared-spectroscopie?lang=en - Probing mobility constrains in polymers using 1H double quantum time domain NMR as a method to investigate thermal, chemical or environmental degradation effects
- Probing mobility constrains in polymers using 1H double quantum time domain NMR as a method to investigate thermal, chemical or environmental degradation effects
- New insight into the microstructure changes and molecular mobility of polyamides exposed to H2S scavengers
- Uso da ressonância magnética nuclear para avaliação da degradação de poliamidas sob a ação de sequestrantes de H2S
- Avaliando restrições de mobilidade em polímeros usando ressonância magnética nuclear de 1H no domínio do tempo
- Real-time monitoring polymerization reactions using dipolar echoes in 1H time domain NMR at a low magnetic field
- 1H time domain nuclear magnetic resonance and oscillatory rheology as a tool for uncovering the impact of UV-C radiation on polypropylene
- Pulse sequence induced variability combined with multivariate analysis as a potential tool for 13C solid-state NMR signals separation, quantification, and classification
- Eletromagnetismo experimental
- Photo-degradation of fluorene and phenylene-vynylene based polymers as studied by optical and nuclear magnetic resonance spectroscopies
Download do texto completo
| Tipo | Nome | Link | |
|---|---|---|---|
| 3157198.pdf |
How to cite
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
