The development of efficient and recyclable catalysts is a central pursuit in modern chemistry. Homogeneous catalysts, while effective, often suffer from challenges in separation and recovery, driving the exploration of heterogeneous systems. In this context, this study introduces a novel composite photocatalyst, Ru(bpy)2(bda)-Ru(bda)(cp)2@DE (PS/Cat@DE), synthesized by attaching a catalyst (Cat) and a photosensitizer (PS) to diatomaceous earth (DE). The hypothesis that covalently binding the photosensitizer and photocatalyst to the surface of DE could enhance their reactivity and may protect them from degradation was supported by the enhanced photocatalytic performance observed in this study. The composite materials and single components were characterized using UV-Vis and FTIR spectroscopy, as well as SEM, and EDS microscopy. Photocatalytic experiments demonstrated the significantly higher activity of the PS/Cat@DE material compared to equivalent concentrations of the single photosensitizer or photocatalyst components, indicating the crucial role of DE in promoting oxygen evolution.

Diatom-Inspired Design: A New Ru-Based Photosystem for Efficient Oxygen Evolution

Cancelliere, Ambra Maria
Primo
;
Cigala, Rosalia Maria
Secondo
;
Nastasi, Francesco;Ielo, Ileana
;
La Ganga, Giuseppina
Penultimo
;
De Luca, Giovanna
Ultimo
2025-01-01

Abstract

The development of efficient and recyclable catalysts is a central pursuit in modern chemistry. Homogeneous catalysts, while effective, often suffer from challenges in separation and recovery, driving the exploration of heterogeneous systems. In this context, this study introduces a novel composite photocatalyst, Ru(bpy)2(bda)-Ru(bda)(cp)2@DE (PS/Cat@DE), synthesized by attaching a catalyst (Cat) and a photosensitizer (PS) to diatomaceous earth (DE). The hypothesis that covalently binding the photosensitizer and photocatalyst to the surface of DE could enhance their reactivity and may protect them from degradation was supported by the enhanced photocatalytic performance observed in this study. The composite materials and single components were characterized using UV-Vis and FTIR spectroscopy, as well as SEM, and EDS microscopy. Photocatalytic experiments demonstrated the significantly higher activity of the PS/Cat@DE material compared to equivalent concentrations of the single photosensitizer or photocatalyst components, indicating the crucial role of DE in promoting oxygen evolution.
2025
Inglese
ELETTRONICO
Si
No
No
No
0
Euro
Multidisciplinary Digital Publishing Institute (MDPI)
19
1
134
134
15
https://www.mdpi.com/1996-1944/19/1/134
Internazionale
Esperti anonimi
composite material; covalent grafting; diatomaceous earth; heterogeneous catalysis; photocatalysis; ruthenium complex
Selezionato per la copertina del fascicolo e per un'intervista alla dott.ssa Ielo
no
info:eu-repo/semantics/article
Cancelliere, Ambra Maria; Cigala, Rosalia Maria; Samperi, Mario; Cannilla, Catia; Nastasi, Francesco; Ielo, Ileana; La Ganga, Giuseppina; De Luca, Gio...espandi
14.a Contributo in Rivista::14.a.1 Articolo su rivista
8
262
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11570/3349310
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