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Nanomaterials (Basel, Switzerland)|November 27, 2021
Nanoparticle Size Threshold for Magnetic Agglomeration and Associated Hyperthermia PerformanceDavid Serantes, Daniel Baldomir
Physical Chemistry Chemical Physics : PCCP|May 25, 2017
Towards improved magnetic fluid hyperthermia: major-loops to diminish variations in local heatingCristina Munoz-Menendez, David Serantes, Juan M Ruso, et al.
Physical Chemistry Chemical Physics : PCCP|October 7, 2015
The role of size polydispersity in magnetic fluid hyperthermia: average vs. local infra/over-heating effectsCristina Munoz-Menendez, Ivan Conde-Leboran, Daniel Baldomir, et al.
Soft Matter|November 5, 2016
Distinguishing between heating power and hyperthermic cell-treatment efficacy in magnetic fluid hyperthermiaCristina Munoz-Menendez, Ivan Conde-Leboran, David Serantes, et al.
Physical Chemistry Chemical Physics : PCCP|December 4, 2018
Anisotropic magnetic nanoparticles for biomedicine: bridging frequency separated AC-field controlled domains of actuationDavid Serantes, Roy Chantrell, Helena Gavilán, et al.
Scientific Reports|April 21, 2019
On Behind the Physics of the Thermoelectricity of Topological InsulatorsDaniel Baldomir, Daniel Faílde
Scientific Reports|April 12, 2013
Learning from nature to improve the heat generation of iron-oxide nanoparticles for magnetic hyperthermia applicationsCarlos Martinez-Boubeta, Konstantinos Simeonidis, Antonios Makridis, et al.
Nanoscale Advances|May 20, 2026
Tuning field amplitude to minimise heat-loss variability in magnetic hyperthermiaNecda Çam, Iago López-Vázquez, Òscar Iglesias, et al.
Nanoscale|July 16, 2024
Understanding magnetic hyperthermia performance within the "Brezovich criterion": beyond the uniaxial anisotropy descriptionDaniel Faílde, Victor Ocampo-Zalvide, David Serantes, et al.
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