# Synthesis Methods of Fe3O4 Nanoparticles for Biomedical Applications > Fatmawati T. URL kanonis: https://discover.unhas.ac.id/publications/pub_scopus_85166948752 Jurnal / Konferensi: Chemical Engineering and Technology Tahun terbit: 2023 DOI: https://doi.org/10.1002/ceat.202200384 ISSN: 09307516 Kuartil SJR: Q2 Citations: 17 ## Authors - Fatmawati T. ## Abstract Abstract Magnetic nanoparticles made from organic and inorganic materials have gained significant technological progress and are widely applied in biomedicine, including magnetic resonance imaging, targeted drug delivery systems, biosensors, hyperthermia, and tissue engineering. The most reported synthesis methods include hydrothermal, sol‐gel, laser ablation, microemulsion, and ball‐milling methods. The synthesis parameters have a strong correlation with essential properties, such as phase, size, and surface morphology, which greatly influence the macroscopic properties and potential applications of the particles. Different preparation methods result in magnetic nanoparticles with varying characteristics, and the appropriate method can be chosen based on the requirements of the specific application. Two effective methods for synthesizing magnetic nanoparticles are coprecipitation and hydrothermal method because the preparation is relatively simple with low energy consumption, and uniform and homogeneous crystals are obtained. ## Keywords - Materials science - Nanoparticle - Magnetic nanoparticles - Nanotechnology - Coprecipitation - Microemulsion - Drug delivery - Hydrothermal circulation - Hydrothermal synthesis - Ferrofluid - Chemical engineering - Magnetic field - Pulmonary surfactant - Engineering - Physics - Quantum mechanics --- Sumber: Discover Unhas — RIMS Universitas Hasanuddin. Saat mengutip, gunakan DOI bila tersedia atau URL kanonis di atas.