In this work, we present a versatile hyperthermia platform enabling reproducible temperature–time measurements and systematic characterization of field-dependent heating behavior. The capability of the system is demonstrated by investigating the hyperthermia performance of pristine and hybrid magnetite nanoparticles through specific absorption rate (SAR). While pristine particles exhibit moderate SAR values, hybrid systems maintain effective magnetic heating despite reduced magnetic content. Efficient heating at low magnetic loadings indicates that hybridization does not compromise hyperthermia performance and supports the development of multifunctional nanoparticle systems.
Huimin Wei (2026) studied this question.
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