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Luminescent Silica-Based Nanostructures from in Vivo Iridium-Doped Diatoms Microalgae

Academic Article
Publication Date:
2019
abstract:
A novel biotechnological approach to the preparation of Ir-doped luminescent silica-based nanostructures is proposed availing use of diatoms microalgae which generate highly nanostructured biosilica shells (frustules) by in vivo biomineralization of orthosilicic acid. After the in vivo incorporation of a phosphorescent organometallic complex (Ir-1) in Thalassiosira weissflogii diatom frustules (DFs), bulk functionalized phosphorescent silica-based nanostructures are obtained by isolation and proper ultrafine processing of Ir-1-doped DFs. High-resolution characterization reveals the presence of phosphorescent hybrid organic/inorganic clusters composed of biogenic silica NPs intimately trapped within the diatom organic residual matter. The biofactory strategy investigated herein can be a sustainable, cost-effective, and scalable route to transition metal-doped silica nanomaterials and can pave the way to a great variety of heavy-metal and rare-earth metal doped silica nanostructures, whose applications range from photonics to imaging, sensing, and biomedicine.
Iris type:
01.01 Articolo in rivista
Keywords:
Biosilica;Diatoms microalgae;Extraction method;Iridium;Microbioreactors;Nanoparticles;Nanostructures;Phosphorescence
List of contributors:
Rinaldi, Rosaria; Catalano, Massimo; Taurino, Antonietta; Cicco, STEFANIA ROBERTA; Aloisi, Alessandra
Authors of the University:
ALOISI ALESSANDRA
CATALANO MASSIMO
CICCO STEFANIA ROBERTA
TAURINO ANTONIETTA
Handle:
https://iris.cnr.it/handle/20.500.14243/344768
Published in:
ACS SUSTAINABLE CHEMISTRY & ENGINEERING
Journal
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