DANIEL
BALDOMIR FERNANDEZ
Profesor emérito de universidade
Publicacións (162) Publicacións de DANIEL BALDOMIR FERNANDEZ
2022
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Anomalous Response in the Orbital Magnetic Susceptibility of 2D Topological Systems
Physica Status Solidi - Rapid Research Letters, Vol. 16, Núm. 8
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On the Inner Topological Pressure within the Topological Insulators
Annalen der Physik, Vol. 534, Núm. 1
2021
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Emergent topological fields and relativistic phonons within the thermoelectricity in topological insulators
Scientific Reports, Vol. 11, Núm. 1
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Nanoparticle size threshold for magnetic agglomeration and associated hyperthermia performance
Nanomaterials, Vol. 11, Núm. 11
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Orbital dynamics in 2D topological and Chern insulators
New Journal of Physics, Vol. 23, Núm. 11
2020
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Disentangling local heat contributions in interacting magnetic nanoparticles
Physical Review B, Vol. 102, Núm. 21
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Thermodynamics of interacting magnetic nanoparticles
Physical Review B, Vol. 101, Núm. 22
2019
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On Behind the Physics of the Thermoelectricity of Topological Insulators
Scientific Reports, Vol. 9, Núm. 1
2018
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Anisotropic magnetic nanoparticles for biomedicine: Bridging frequency separated AC-field controlled domains of actuation
Physical Chemistry Chemical Physics, Vol. 20, Núm. 48, pp. 30445-30454
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Beyond the blocking model to fit nanoparticle ZFC/FC magnetisation curves
Scientific Reports, Vol. 8, Núm. 1
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Scaling the effect of the dipolar interactions on the ZFC/FC curves of random nanoparticle assemblies
Journal of Magnetism and Magnetic Materials, Vol. 460, pp. 28-33
2017
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Towards improved magnetic fluid hyperthermia: Major-loops to diminish variations in local heating
Physical Chemistry Chemical Physics, Vol. 19, Núm. 22, pp. 14527-14532
2016
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Distinguishing between heating power and hyperthermic cell-treatment efficacy in magnetic fluid hyperthermia
Soft Matter, Vol. 12, Núm. 43, pp. 8815-8818
2015
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A Single Picture Explains Diversity of Hyperthermia Response of Magnetic Nanoparticles
Journal of Physical Chemistry C, Vol. 119, Núm. 27, pp. 15698-15706
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Orientation of the magnetization easy axes of interacting nanoparticles: Influence on the hyperthermia properties
Journal of Magnetism and Magnetic Materials, Vol. 380, pp. 321-324
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The role of size polydispersity in magnetic fluid hyperthermia: Average vs. local infra/over-heating effects
Physical Chemistry Chemical Physics, Vol. 17, Núm. 41, pp. 27812-27820
2014
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Charge ordering at the interface in (LaMnO3)2 n/(SrMnO3)n superlattices as the origin of their insulating state
Applied Physics Letters, Vol. 104, Núm. 8
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Multiplying magnetic hyperthermia response by nanoparticle assembling
Journal of Physical Chemistry C, Vol. 118, Núm. 11, pp. 5927-5934
2013
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Ab initio study of Z2 topological phases in perovskite (111) (SrTiO3)7/(SrIrO3)2 and (KTaO 3)7/(KPtO3)2 multilayers
Physical Review B - Condensed Matter and Materials Physics, Vol. 88, Núm. 15
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Conducting states caused by a surface electric dipole in CrN(001) very thin films
Physical Review B - Condensed Matter and Materials Physics, Vol. 87, Núm. 7