NombreRomero-Muñiz, Carlos
DepartamentoFísica de la Materia Condensada
Área de conocimientoFísica de la Materia Condensada
Categoría profesionalInvestigador Contratado (Ramón y Cajal)
Correo electrónicoSolicitar
           
  • Nº publicaciones

    5

  • Nº visitas

    631

  • Nº descargas

    931


 

Artículo
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Revisiting Vibrational Spectroscopy to Tackle the Chemistry of Zr₆O₈ Metal-Organic Framework Nodes

Romero-Muñiz, Ignacio; Romero-Muñiz, Carlos; Castillo-Velilla, Isabel del; Marini, Carlo; Calero, Sofía; Zamora Abanades, Félix; Platero-Prats, Ana E. (1944-8252, 2022)
The metal-organic framework MOF-808 contains Zr₆O₈ nodes with a high density of vacancy sites, which can incorporate ...
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The Role of Metal Ions in the Electron Transport through Azurin-Based Junctions

Romero-Muñiz, Carlos; Ortega Cruz, María; Vilhena, Jose Guilherme; Pérez Pérez, Rubén; Cuevas Rodríguez, Juan Carlos; Zotti, Linda Ángela (MDPI, 2021)
We studied the coherent electron transport through metal–protein–metal junctions based on a blue copper azurin, in which ...
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Applicability of scaling behavior and power laws in the analysis of the magnetocaloric effect in second-order phase transition materials

Romero-Muñiz, Carlos; Tamura, Ryo; Tanaka, Shu; Franco García, Victorino (American Physical Society, 2016)
In recent years, universal scaling has gained renewed attention in the study of magnetocaloric materials. It has been ...
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Influence of the demagnetizing factor on the magnetocaloric effect: Critical scaling and numerical simulations

Romero-Muñiz, Carlos; Ipus Bados, Jhon Jairo; Blázquez Gámez, Javier Sebastián; Franco García, Victorino; Conde Amiano, Alejandro (AIP Publishing, 2014)
In recent years, the magnetocaloric effect is studied not only for the search of potential magnetic refrigerant materials ...
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Influence of magnetic interactions between phases on the magnetocaloric effect of composites

Romero-Muñiz, Carlos; Franco García, Victorino; Conde Amiano, Alejandro (AIP Publishing, 2013)
Magnetocaloric materials with coexisting magnetic phases appear either due to the phase coexistence in first order phase ...