Open Access
Issue |
BIO Web Conf.
Volume 183, 2025
International Conference on Life Sciences and Technology (ICoLiST 2024)
|
|
---|---|---|
Article Number | 01011 | |
Number of page(s) | 8 | |
DOI | https://doi.org/10.1051/bioconf/202518301011 | |
Published online | 09 July 2025 |
- Oehlsen, O., Cervantes-Ramirez, S.I., Cervantes-Avilés, P., dan Medina-Velo, I.A. (2022) Approaches on Ferrofluid Synthesis and Applications: Current Status and Future Perspectives. ACS Omega, 7 (4), 3134-3150. [CrossRef] [PubMed] [Google Scholar]
- Li, L., Li, D., Wang, L., Liang, Z., dan Zhang, Z. (2023) Stable silicone oil based ferrofluids with well low-temperature fluidity applied to magnetic fluid seal. Journal of Magnetism and Magnetic Materials, 584, 171077. [Google Scholar]
- Spizzo, F., Sgarbossa, P., Sieni, E., Semenzato, A., Dughiero, F., Forzan, M., Bertani, R., dan Del Bianco, L. (2017) Synthesis of Ferrofluids Made of Iron Oxide Nanoflowers: Interplay between Carrier Fluid and Magnetic Properties. Nanomaterials, 7 (11), 373. [Google Scholar]
- Latikka, M., Backholm, M., Timonen, J.V.I., dan Ras, R.H.A. (2018) Wetting of ferrofluids: Phenomena and control. Current Opinion in Colloid & Interface Science, 36, 118-129. [CrossRef] [Google Scholar]
- Ryapolov, P.A., Polunin, V.M., dan Shel'deshova, E.V. (2020) An alternative way to study magnetic fluid magnetization and viscosity. Journal of Magnetism and Magnetic Materials, 496, 165924. [Google Scholar]
- Bhandari, A. (2020) Study of magnetoviscous effects on ferrofluid flow. Eur. Phys. J. Plus, 135 (7), 537. [Google Scholar]
- Samian, Zaidan, A.H., Arifianto, A.S., Pujiyanto, dan Taufiq, A. (2021) Magnetic field detection using fiber bundle and magnetic fluid as sensors. Microw Opt Technol Lett, 63 (3), 975-979. [Google Scholar]
- Zhao, Y., Wang, X.-X., Lv, R.-Q., Li, G.-L., Zheng, H.-K., dan Zhou, Y.-F. (2021) Highly Sensitive Reflective Fabry-Perot Magnetic Field Sensor Using Magnetic Fluid Based on Vernier Effect. IEEE Transactions on Instrumentation and Measurement, 70, 1-8. [Google Scholar]
- Jing, D., Sun, L., Jin, J., Thangamuthu, M., dan Tang, J. (2020) Magneto-optical transmission in magnetic nanoparticle suspensions for different optical applications: a review. J. Phys. D: Appl. Phys., 54 (1), 013001. [Google Scholar]
- Cennamo, N., Arcadio, F., Marietta, V., Baglio, S., Zeni, L., dan Ando, B. (2021) A Magnetic Field Sensor Based on SPR-POF Platforms and Ferrofluids. IEEE Trans. Instrum. Meas., 70, 1-10. [Google Scholar]
- Sun, W., Liu, X., dan Deng, M. (2022) High-Precision Magnetic Field Sensor Based on Fiber Bragg Grating and Dual-Loop Optoelectronic Oscillator. Photonic Sens, 12 (4), 220419. [Google Scholar]
- Liu, W., Pu, S., Hao, Z., Wang, J., Fan, Y., Zhang, C., dan Wang, J. (2022) Fiber-Optic Vector-Magnetic-Field Sensor Based on Gold-Clad Bent Multimode Fiber and Magnetic Fluid Materials. Materials, 15 (20), 7208. [Google Scholar]
- Azad, S., Mishra, S.K., Rezaei, G., Izquierdo, R., dan Ung, B. (2022) Rapid and sensitive magnetic field sensor based on photonic crystal fiber with magnetic fluid infiltrated nanoholes. Sci Rep, 12 (1), 9672. [Google Scholar]
- Khoramian, S., Saeidifar, M., Zamanian, A., dan Saboury, A.A. (2019) Synthesis and characterization of biocompatible ferrofluid based on magnetite nanoparticles and its effect on immunoglobulin G as an immune protein. Journal of Molecular Liquids, 273, 326-338. [Google Scholar]
- Taufiq, A., Saputro, R.E., Yuliantika, D., Sunaryono, S., Diantoro, M., Hidayat, A., Hidayat, N., dan Munasir, M. (2020) Excellent antimicrobial performance of co-doped magnetite double-layered ferrofluids fabricated from natural sand. Journal of King Saud University - Science, 32 (7), 3032-3038. [Google Scholar]
- Amirabadizadeh, A., Salighe, Z., Sarhaddi, R., dan Lotfollahi, Z. (2017) Synthesis of ferrofluids based on cobalt ferrite nanoparticles: Influence of reaction time on structural, morphological and magnetic properties. Journal of Magnetism and Magnetic Materials, 434, 78-85. [Google Scholar]
- Kharat, P.B., Somvanshi, S.B., Khirade, P.P., dan Jadhav, K.M. (2020) Induction Heating Analysis of Surface-Functionalized Nanoscale CoFe 2 O 4 for Magnetic Fluid Hyperthermia toward Noninvasive Cancer Treatment. ACS Omega, 5 (36), 23378-23384. [CrossRef] [PubMed] [Google Scholar]
- Sunaryono, Hidayat, M.F., Yogihati, C.I., Taufiq, A., Mufti, N., dan Rahmawati, R. (2019) Concentration Effect of Ferrofluids in Ferrogels on Their Magnetic and Magneto-elasticity Behaviors. Materials Today: Proceedings, 17, 1720-1727. [Google Scholar]
- Fkhar, L., Lamouri, R., Nayad, A., Hamedoun, M., Benyoussef, A., Ez-Zahraouy, H., Mounkachi, O., dan Ait Ali, M. (2022) Cobalt substitution effect on the structure and magnetic proprieties of Fe3O4 nano-particles. Advances in Materials and Processing Technologies, 8 (1), 401-407. [CrossRef] [Google Scholar]
- Ba-Abbad, M.M., Benamour, A., Ewis, D., Mohammad, A.W., dan Mahmoudi, E. (2022) Synthesis of Fe3O4 Nanoparticles with Different Shapes Through a Co- Precipitation Method and Their Application. JOM, 74 (9), 3531-3539. [Google Scholar]
- Ravindra, A.V., Chandrika, M., Rajesh, Ch., Kollu, P., Ju, S., dan Ramarao, S.D. (2019) Simple synthesis, structural and optical properties of cobalt ferrite nanoparticles. Eur. Phys. J. Plus, 134 (6), 296. [Google Scholar]
- Sharifi, I., Shokrollahi, H., Doroodmand, M.M., dan Safi, R. (2012) Magnetic and structural studies on CoFe2O4 nanoparticles synthesized by co-precipitation, normal micelles and reverse micelles methods. Journal of Magnetism and Magnetic Materials, 324 (10), 1854-1861. [Google Scholar]
- Yahya, M.M.A., Subadra, St.U.I., Saputro, R.E., Taufiq, A., Yogihati, C.I., Sunaryono, Handoko, E., Alaydrus, M., Amrillah, T., dan Samian (2023) Investigation of the optical, magnetic, and radar absorption characteristics of CoxFe3-xO4/ZnO/graphite nanocomposites. Materials Science in Semiconductor Processing, 165, 107683. [Google Scholar]
- Shahjuee, T., Masoudpanah, S.M., dan Mirkazemi, S.M. (2017) Coprecipitation Synthesis of CoFe2O4 Nanoparticles for Hyperthermia. JUFGNSM, 50 (2). [Google Scholar]
- Malinowska, I., Ryzyhska, Z., Mrotek, E., Klimczuk, T., dan Zielihska-Jurek, A. (2020) Synthesis of CoFe 2 O 4 Nanoparticles: The Effect of Ionic Strength, Concentration, and Precursor Type on Morphology and Magnetic Properties. Journal of Nanomaterials, 2020, 1-12. [Google Scholar]
- Radoh, A., Drygala, A., Hawelek, L., dan Lukowiec, D. (2017) Structure and optical properties of Fe3O4 nanoparticles synthesized by co-precipitation method with different organic modifiers. Materials Characterization, 131, 148-156. [Google Scholar]
- Sharma, D., dan Khare, N. (2014) Tuning of optical bandgap and magnetization of CoFe2O4 thin films. Applied Physics Letters, 105 (3), 032404. [CrossRef] [Google Scholar]
- Karaagac, O., Yildiz, B.B., dan Koçkar, H. (2019) The influence of synthesis parameters on one-step synthesized superparamagnetic cobalt ferrite nanoparticles with high saturation magnetization. Journal of Magnetism and Magnetic Materials, 473, 262-267. [Google Scholar]
- Dorniani, D., Zobir, M., Kura, A.U., Fakurazi, S., Halim Shaari, A., dan Ahmad, Z. (2013) Preparation and characterization of 6-mercaptopurine-coated magnetite nanoparticles as a drug delivery system. DDDT, 1015. [CrossRef] [Google Scholar]
- Tackett, R., Sudakar, C., Naik, R., Lawes, G., Rablau, C., dan Vaishnava, P.P. (2008) Magnetic and optical response of tuning the magnetocrystalline anisotropy in Fe3O4 nanoparticle ferrofluids by Co doping. Journal of Magnetism and Magnetic Materials, 320 (21), 2755-2759. [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.