Gas−Responsive Metal−Organic Frameworks for Adaptive Thermal Energy Storage with Tunable Charge−Discharge Temperatures

UDC.coleccionInvestigación
UDC.departamentoQuímica
UDC.departamentoCiencias da Navegación e Enxeñaría Mariña
UDC.departamentoEnxeñaría Naval e Industrial
UDC.endPage37788
UDC.grupoInvQuímica Molecular e de Materiais (QUIMOLMAT)
UDC.grupoInvEnxeñaría Enerxética (INGEN)
UDC.institutoCentroCICA - Centro Interdisciplinar de Química e Bioloxía
UDC.institutoCentroCITENI - Centro de Investigación en Tecnoloxías Navais e Industriais
UDC.institutoCentroInstituto Universitario de Estudos Marítimos
UDC.issue35
UDC.journalTitleJournal of the American Chemical Society
UDC.startPage37779
UDC.volume148
dc.contributor.authorGelpi, María
dc.contributor.authorGarcía Ben, Javier
dc.contributor.authorBaaliña Insua, Alvaro
dc.contributor.authorZaragoza, Sonia
dc.contributor.authorCastro-García, Socorro
dc.contributor.authorSeñarís-Rodríguez, M. A.
dc.contributor.authorSánchez-Andújar, Manuel
dc.contributor.authorBermúdez-García, Juan Manuel
dc.contributor.authorGonzález Novo, David
dc.contributor.authorAlonso-Marañón, Lorena
dc.contributor.authorWalker, Julian
dc.contributor.authorMcMonagle, Charles James
dc.date.accessioned2026-09-16T17:03:05Z
dc.date.available2026-09-16T17:03:05Z
dc.date.issued2026-07-06
dc.descriptionFinanciado para publicación en acceso aberto: Universidade da Coruña/CISUG
dc.description.abstract[Abstract] One of the major challenges for thermal energy storage (TES) systems based on phase change materials (PCMs)_a key technology for energy decarbonization_is achieving dynamical tunability of their charge and discharge temperatures (Tcharge, Tdischarge). This capability would enable a single material to operate effectively across varying ambient conditions (e.g., different times of day, seasons, or climates) without requiring the use of multiple TES materials. In this work, we present a gas-responsive TES solution based on breathing caloric MOFs, particularly MOF-508b, in which transition temperatures can be widely tuned from −30 to 120 °C (243 to 393 K) by adjusting the surrounding CO2 pressure from 5 to 25 bar under isobaric conditions. More importantly, we demonstrate that this method allows precise control over the thermal hysteresis (|Tcharge − Tdischarge|) and can even reverse the transition temperatures (Tcharge < Tdischarge), which could be highly advantageous for temperature-driven TES applications. These findings pave the way for adaptive thermal technologies in which a single material can respond to different ambient temperatures and diverse storage needs, from cold storage to medium−high-temperature applications. We anticipate that this gas-responsive behavior is not exclusive to MOF-508b and encourage the exploration of other materials exhibiting similar tunable characteristics for adaptive TES applications.
dc.description.sponsorshipAcknowledgments. The authors thank financial support from Grant PID2021-122532OB-I00 funded by MICIU/AEI/10.13039/501100011033 and by “ERDF/EU” and the projects ED431C 2022/39 and ED431F 2023/33 funded by Xunta de Galicia. This publication is part of the grant RYC2021-033040-I, funded by MCIU/AEI/10.13039/501100011033 and from the European Union ≪NextGenerationEU≫/PRTR≫, and granted to J.M.B.G. This researcher is also grateful for the support received by UDC-Inditex InTalent Programme. M.G. and J.G.-B. acknowledge Xunta de Galicia for Predoctoral and Postdoctoral Fellowships (ED481A-2023 and ED481B-2024). The authors thank ESRF for the award of beam time (MA-5145 and A01-2-1291 on BM01). The authors thank funding for open access charge from Universidade da Coruña/CISUG.
dc.description.sponsorshipXunta de Galicia; ED431C 2022/39
dc.description.sponsorshipXunta de Galicia; ED431F 2023/33
dc.description.sponsorshipXunta de Galicia; ED481A-2023
dc.description.sponsorshipXunta de Galicia; ED481B-2023
dc.identifier.citationMaría Gelpi, David González-Novo, Lorena Alonso-Marañón, Javier García-Ben, Álvaro Baaliña, Sonia Zaragoza, Julian Walker, Charles James McMonagle, Socorro Castro-García, María Antonia Señarís-Rodríguez, Manuel Sánchez-Andújar, Juan Manuel Bermúdez-García; Gas–Responsive Metal–Organic Frameworks for Adaptive Thermal Energy Storage with Tunable Charge–Discharge Temperatures. Journal American Chemical Society 9 September 2026; 148 (35): 37779–37788. https://doi.org/10.1021/jacs.6c07093
dc.identifier.doi10.1021/jacs.6c07093
dc.identifier.urihttps://hdl.handle.net/2183/49281
dc.language.isoeng
dc.publisherACS Publications
dc.relation.projectIDInfo:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2021-2023/PID2021-122532OB-I00/ES/TERMOMATERIALES HIBRIDOS PARA APLICACIONES DE ALMACENAMIENTO DE ENERGIA, CALENTAMIENTO Y REFRIGERACION
dc.relation.projectIDInfo:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2021-2023/RYC2021-033040-I/ES/HYBRID MATERIALS FOR ECO-FRIENDLY REFRIGERATION, HEATING AND ENERGY STORAGE
dc.relation.urihttps://doi.org/10.1021/jacs.6c07093
dc.rightsAttribution 4.0 Internationalen
dc.rights.accessRightsopen access
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectEnergy storage
dc.subjectMaterials
dc.subjectMetal organic frameworks
dc.subjectThermodynamics properties
dc.subjectPhase transitions
dc.titleGas−Responsive Metal−Organic Frameworks for Adaptive Thermal Energy Storage with Tunable Charge−Discharge Temperatures
dc.typejournal article
dc.type.hasVersionVoR
dspace.entity.typePublication
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