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Antioxidant molecule useful in the stabilization of nanoparticles in water suspension

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dc.contributor.author Popescu Lipan, Larisa
dc.contributor.author Les, Anda
dc.contributor.author Grigoraș, Marian
dc.contributor.author Ababei, Gabriel
dc.contributor.author Motrescu, Iuliana
dc.contributor.author Bulai, Georgiana
dc.contributor.author Brinza, Florin
dc.contributor.author Creangă, Dorina
dc.contributor.author Bălășoiu, Maria
dc.date.accessioned 2024-06-18T12:28:50Z
dc.date.available 2024-06-18T12:28:50Z
dc.date.issued 2022-01-22
dc.identifier.citation Popescu-Lipan, Larisa, Anda Les, Marian Grigoras, Gabriel Ababei, Iuliana Motrescu, Georgiana Bulai, Florin Brinza, Dorina Creanga, Maria Balasoiu. 2022. “Antioxidant Molecule Useful in the Stabilization of Nanoparticles in Water Suspension”. Soft Materials 20 (sup1): S76–90. doi:10.1080/1539445X.2022.2028832. en_US
dc.identifier.uri https://repository.iuls.ro/xmlui/handle/20.500.12811/4193
dc.description.abstract The preparation of antioxidant-coated magnetic nanoparticles (MNPs) has been studied to improve their biocompatibility, i.e. reducing negative side effects. The theoretical study was focused on the interaction of gallic acid (GA) with ionic iron at the surface of nanoparticles that increased reactivity and favors the uniform dispersion in water of magnetic nanoparticles and the interaction with other molecules of biomedical interest. Experimentally, we worked with an optimal method of coating the MNP with GA at 80°C which led to fine granulation highlighted by TEM, preservation of good crystallinity, proven by XRD as well as magnetic properties suitable for biomedical applications based on magnetically targeted guidance. The study of nanotoxicity was focused on the fate of MNPs eliminated in the biosphere, so the influence on photosynthesis in seedlings in early ontogenetic stages was sought. The small variation, with a positive trend, of the efficiency of photosynthesis was correlated with the balancing of the toxic effects, of ROS generation catalyzed by iron ions from the MNP surface by means of the antioxidant character of GA. en_US
dc.language.iso en en_US
dc.publisher Taylor & Francis Online en_US
dc.rights
dc.rights.uri
dc.subject Gallic acid en_US
dc.subject quantum chemical approach en_US
dc.subject magnetite nanoparticles en_US
dc.subject nanotoxicity en_US
dc.subject Helianthus annuus en_US
dc.title Antioxidant molecule useful in the stabilization of nanoparticles in water suspension en_US
dc.type Article en_US
dc.author.affiliation Larisa Popescu-Lipan, Anda Les, Florin Brinza, Dorina Creanga, Physics Faculty, Alexandru Ioan Cuza University, Iasi, Romania
dc.author.affiliation Marian Grigoras, Gabriel Ababei, Technical Institute of Physics, Iasi, Romania
dc.author.affiliation Iuliana Motrescu, Ion Ionescu de la Brad University of Biological Sciences, Iasi, Romania
dc.author.affiliation Georgiana Bulai, CERNESIM, Department of Exact and Natural Sciences, Institute of Interdisciplinary Research, Alexandru Ioan Cuza University, Iasi, Romania
dc.author.affiliation Maria Balasoiu, Joint Institute for Nuclear Research, Dubna, Russia;f Horia Hulubei Institute of Physics and Nuclear Engineering, Bucharest, Romania
dc.publicationName Soft Materials
dc.volume 20
dc.issue supl 1
dc.publicationDate 2022
dc.startingPage 76
dc.endingPage 90
dc.identifier.eissn 1539-4468
dc.identifier.doi 10.1080/1539445X.2022.2028832


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