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Author Spotlight: Advancing SERS Technology: Au@Carbon Dot Nanoprobes for Label-Free Analysis and Imaging
Published on: June 9, 2023
Visible-light-responsive Fe2O3-TiO2-carbon dot nanocomposite coatings for enhanced biofouling mitigation in
R Gopika1,2, P Muhamed Ashraf1
1ICAR-Central Institute of Fisheries Technology Matsyapuri PO Cochin 682 029 Kerala India ashrafp2008@gmail.com +91 484 2668212 +91 484 2412300 +91 9746236477.
Abstract:
A photocatalytic antifouling coating was designed for aquaculture cage nets, as biofouling is a persistent challenge in aquaculture that substantially reduces operational efficiency and compromises the economic performance of the systems. A nanostructured composite was developed using nano-titanium dioxide (TiO2), iron(iii) oxide (Fe2O3), and carbon dots (CDs). The antifouling efficacy of the composite was evaluated by applying it onto a (3-glycidyloxypropyl)trimethoxysilane (silane)-pretreated polyethylene substrate, followed by immersion in natural estuarine waters. This ternary photocatalytic composite, formed by the interaction between the C[double bond, length as m-dash]C bond of CDs and inorganic oxides, exhibited a reduced band gap from 4 eV to 1.7 eV by suppressing electron-hole recombination. The uniform distribution in the composite was evidenced by XRD, the characteristic peaks of TiO2 and Fe2O3 suggested nanoscale crystallinity, and the 2θ = 21° peak suggested the presence of low-crystalline CDs in the matrix, which was confirmed by transmission electron microscopy. The nanocomposite uniformly coated over silane-pretreated polyethylene exhibited strong interfacial bonding between CD aromatic moieties and glycidyloxy C-O-C groups. Nets coated with a 0.05% FeTiCD nanocomposite exhibited excellent biofouling resistance in a six-month field trial. Fe(iii) doping introduced mid-gap states, enabling efficient electron transfer to CDs and sustained reactive oxygen species (ROS) production, thereby disrupting the attachment of biofouling organisms. This nanocomposite offers a scalable, low-impact antifouling solution that supports more sustainable aquaculture operations.
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