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Hybrid materials based on magnetic iron oxides with benzothiazole derivatives: a plausible potential spectroscopy probe
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Multidisciplinary Digital Publishing Institute (MDPI)
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Abstract
Rare diseases affect a small part of the population, and the most affected are children.
Because of the low availability of patients for testing, the pharmaceutical industry cannot develop
drugs for the diagnosis of many of these orphan diseases. In this sense, the use of benzothiazole
compounds that are highly selective and can act as spectroscopy probes, especially the compound
2-(40-aminophenyl)benzothiazole (ABT), has been highlighted. This article reports the design of
potential contrast agents based on ABT and iron to develop a new material with an efficient mechanism to raise the relaxation rate, facilitating diagnosis. The ABT/δ-FeOOH hybrid material was
prepared by grafting (N-(4’-aminophenyl) benzothiazole-2-bromoacetamide) on the surface of the
iron oxyhydroxide particles. FTIR spectra confirmed the material formations of the hybrid material
ABT/δ-FeOOH. SEM analysis checked the covering of nanoflakes’ surfaces in relation to the morphology of the samples. The theoretical calculations test a better binding mode of compound with
iron oxyhydroxide. Theoretical findings show the radical capture mechanism in the stabilization of
this new material. In this context, Fe3+ ions are an electron acceptor from the organic phase.
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CORREA, S. et al. Hybrid materials based on magnetic iron oxides with benzothiazole derivatives: a plausible potential spectroscopy probe. International Journal of Molecular Sciences, [S.l.], v. 22, n. 8, p. 3980-3992, Apr. 2021. DOI: 10.3390/ijms22083980.
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