Continuous production of magnetic iron oxide nanocrystals by oxidative precipitation

Chemical Engineering Journal, Vol 393, 2020, 124593:

Stabilization of b-Glucuronidase by Immobilization in Magnetic-Silica Hybrid Supports

Catalysts, 2020, Vol 10 (6), p669:

Real-Time Intracellular Temperature Imaging Using Lanthanide-Bearing Polymeric Micelles

Nano Lett, 2020, Vol 20 (9), p6466-6472:

Iron nanoparticle bio-interactions evaluated in Xenopus laevis embryos, a model for studying the safety of ingested nanoparticles

Nanotoxicology, 2020, Vol 14 (2):

Magnetic hypothermia with e-Fe2O3 nanoparticles

RSC Adv. 2020, Vol 10, 28786!divAbstract

Self-sufficient asymmetric reduction of b-ketoesters catalysed by a novel and robust thermophilic alcohol dehydrogenase co-immobilized with NADH

Catalysis Science and Technology, 2021:

Efficient Brownian oscillators and nanoheaters based on gallium-doped ε-Fe2O3

Chem. Commun., 2021,57, 2285-2288:

The Thermodynamics of Medial Vascular Calcification

Front. Cell Dev. Biol. 9:633465 (2021):

Selective Magnetic Nanoheating: Combining Iron Oxide Nanoparticles for Multi-Hot-Spot Induction and Sequential Regulation

Nano Lett. 2021, 21, 17, 7213–7220:

The Yin and Yang of epigenetics in the field of nanoparticles

Nanoscale Adv., 2022,4, 979-994:

Photonic and magnetic materials for on-demand local drug delivery

In peer review

Mixing iron oxide nanoparticles with different shape and size for tunable magneto-heating performance

Nanoscale, 2021, 13, p5714:!divAbstract

Book contributions

Magnetic Iron Oxide Colloids for Environmental Applications

Intech Open, 2021

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The research for this work has received funding from the European Union (EU) project HOTZYMES (grant agreement n° 829162) under  EU’s Horizon 2020 Programme  Research and Innovation actions H2020-FETOPEN-2018-2019-2020-01

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