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Additive manufacturing of hollow connected networks for solar photo-Fenton-like catalysis.

Authors :
Gracia-Pinilla MÁ
Ramos-Delgado NA
Rosero-Arias C
Sanders R
Bartling S
Winczewski J
Gardeniers H
Susarrey-Arce A
Source :
RSC sustainability [RSC Sustain] 2024 Oct 16; Vol. 2 (12), pp. 3897-3908. Date of Electronic Publication: 2024 Oct 16 (Print Publication: 2024).
Publication Year :
2024

Abstract

A 3D-printing approach is used to fabricate green bodies/precursor microarchitectures that, upon annealing, allow the fabrication of hierarchical 3D hollow microarchitectures (3DHMs). The 3DHMs are composed mainly of TiO <subscript>2</subscript> and inorganic stabilizers that enable the production of inorganic cellular units upon thermal annealing at 650 °C. Morphological inspection reveals that the 3D architecture beams comprise TiO <subscript>2</subscript> nanoparticles (NPs). The inner and outer diameters of the hollow beams are ∼80 μm and ∼150 μm, retained throughout the 3D hollow network. A proof-of-concept photo-Fenton reaction is assessed. The 3DHMs are impregnated with α-Fe <subscript>2</subscript> O <subscript>3</subscript> NPs to evaluate solar photo-Fenton degradation of organic compounds, such as MB used as control and acetaminophen, an organic pollutant. The optical, structural, and chemical environment characteristics, alongside scavenger analysis, generate insights into the proposed solar photo-Fenton degradation reaction over TiO <subscript>2</subscript> 3DHMs loaded with α-Fe <subscript>2</subscript> O <subscript>3</subscript> . Our work demonstrates newly hollow printed microarchitecture with interconnected networks, which can help direct catalytic reactions.<br />Competing Interests: There are no conflicts to declare.<br /> (This journal is © The Royal Society of Chemistry.)

Details

Language :
English
ISSN :
2753-8125
Volume :
2
Issue :
12
Database :
MEDLINE
Journal :
RSC sustainability
Publication Type :
Academic Journal
Accession number :
39445226
Full Text :
https://doi.org/10.1039/d4su00312h