Publicación:
Air effect on both polymerization kinetics and thermal degradation properties of novel HCN polymers based on diaminomaleonitrile

dc.contributor.authorHortelano, C.es
dc.contributor.authorRuiz Bermejo, Martaes
dc.contributor.authorDe la Fuente, J. L.es
dc.contributor.funderInstituto Nacional de Técnica Aeroespacial (INTA)es
dc.contributor.funderMinisterio de Ciencia, Innovación y Universidades (MICIN)es
dc.contributor.funderAgencia Estatal de Investigación (AEI)es
dc.contributor.otherCentro de Astrobiología del Instituto Nacional de Técnica Aeroespacial y CSIC, MDM-2017-0737es
dc.date.accessioned2024-01-25T11:21:18Z
dc.date.available2024-01-25T11:21:18Z
dc.date.issued2022-12
dc.description.abstractThe impact of air on the bulk polymerization kinetics of diaminomaleonitrile (DAMN), tetramer of HCN, and thermal degradation properties of this resulting conjugated C=N polymeric system is investigated under different temperature regimes and environments. This study shows the effect of exposure to air and oxygen, time, temperature, and evolved gases during DAMN polymerization reactions, which can be suitably monitored by differential scanning calorimetry (DSC) through both dynamic and isothermal measurements. Thus, low heating rates and isothermal scans at 150-170 °C allow us to describe the solid-state polymerization (SSP) of DAMN, and those experiments at 190, 195 and 200 °C and higher heating runs define its melt polymerization (MP) behaviour. Both processes are highly efficient, possibly due to the self-acceleration nature of their kinetics, which is consistent with a three-step Šesták-Berggren (SB) model. The oxygen effect was analysed to determine their tolerance to this variable and confirm the nonradical nature of the mechanism under study. In addition, a detailed thermal characterization by simultaneous DSC/thermogravimetry coupled to mass spectrometry (TG-MS) of these singular polymeric systems obtained under air atmosphere has been completed, and the improvement of the thermal stability of those samples prepared by an SSP at lower temperature was confirmed. The present work offers lower-cost and simpler synthetic methods to obtain this novel class of promising multifunctional polymeric materials through highly efficient and very fast processes.es
dc.description.peerreviewedPeerreviewes
dc.description.sponsorshipThe authors used the research facilities of the Centro de Astrobiología (CAB) and were supported by the Instituto Nacional de Técnica Aeroespacial “Esteban Terradas” (INTA), by the PID2019-104205GB-C21, PID2019-107442RB-C32 and MDM-2017-0737 Unidad de Excelencia "María de Maeztu" CAB (INTA-CSIC) projects from the Spanish Ministry of Science and Innovation and the Spanish State Research Agency MCIN/AEI/10.13039/501100011033. C. Hortelano want to express his gratitude to INTA for his predoctoral contract.es
dc.identifier.citationPolymer Degradation and Stability 206: 110205 (2022)es
dc.identifier.doi10.1016/j.polymdegradstab.2022.110205
dc.identifier.e-issn1873-2321
dc.identifier.issn0141-3910
dc.identifier.otherhttps://www.sciencedirect.com/science/article/abs/pii/S0141391022003834es
dc.identifier.urihttp://hdl.handle.net/20.500.12666/917
dc.language.isoenges
dc.publisherElsevieres
dc.relationinfo:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PID2019-104205GB-C21/ES/CICLO DE AEROSOLES EN MARTE Y LA TIERRA, ESTUDIO COMPARATIVO. IMPLICACIONES PARA LA VIDA Y PROTECCION PLANETARIA-ATMOSFERAS (CAMELIA-ATM)/es
dc.relationinfo:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PID2019-107442RB-C32/ES/OPERACION TECNICA Y EXPLOTACION CIENTIFICA DE DATOS EN RLS DE EXOMARS, Y CONTRIBUCION AL RAX DE MMX/es
dc.rights.accessRightsinfo:eu-repo/semantics/restrictedAccesses
dc.rights.license© 2022 Elsevier Ltd. All rights reserved.es
dc.subjectDAMN polymerses
dc.subjectThermal degradationes
dc.subjectDSCes
dc.subjectKineticses
dc.subjectAir tolerancees
dc.titleAir effect on both polymerization kinetics and thermal degradation properties of novel HCN polymers based on diaminomaleonitrilees
dc.typeinfo:eu-repo/semantics/articlees
dc.type.coarhttp://purl.org/coar/resource_type/c_1162es
dc.type.hasVersioninfo:eu-repo/semantics/publishedVersiones
dspace.entity.typePublication

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