Imobilização do complexo cis-Ru(bpy)2Cl2 nas redes orgânicas covalentes RIO para o desenvolvimento de novos fotocatalisadores heterogêneos
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Universidade Federal do Rio de Janeiro
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The use of light in chemical reactions, particularly in photocatalysis, has emerged as a
sustainable and efficient approach for performing organic syntheses. Among the most
promising photosensitizers are metal complexes such as [Ru(bpy)₃]²⁺, known for their ability to
perform electron transfer processes upon visible light excitation. Although homogeneous
systems offer advantages such as high diffusion in the reaction medium and well-defined active
sites, their recovery and reuse pose challenges, especially for large-scale applications. A viable
solution is the immobilization of these complexes onto solid supports, combining the benefits
of both homogeneous and heterogeneous catalysis. In this context, covalent organic frameworks
(COFs) stand out as excellent immobilization platforms due to their porous structures, high
surface area, and thermal stability. Based on this, the present work proposes the immobilization
of the cis-[Ru(bpy)₂Cl₂]·xH₂O complex onto COFs containing imine linkages with azo groups,
aiming to develop more efficient and reusable heterogeneous photocatalysts for light-driven
transformations. Four COFs were synthesized, named RIO-n (Reticular Innovative Organic
Frameworks), and used as supports for the ruthenium complex, resulting in the formation of
novel composites of the type [RuII(bpy)₂@RIO-XX]Cl. The materials were characterized by
techniques such as Fourier-transform infrared spectroscopy (FT-IR) and powrder X-ray
diffraction (PXRD). Inductively coupled plasma mass spectrometry (ICP-MS) revealed
ruthenium content ranging from 0.20% to 0.46% by weight in the composites. The
photocatalytic potential was evaluated using singlet oxygen probes and phosphorescence
analyses. The results indicated that the composites are not effective photocatalysts for singlet
oxygen-mediated reactions. On the other hand, they showed good performance in singleelectron transfer processes. Additionally, integrity tests revealed limitations in the use of these
materials in acetonitrile due to leaching.
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SILVA, Gabriel Almeida Mendonça da. Imobilização do complexo cis-Ru(bpy)2Cl2 nas redes orgânicas covalentes RIO para o desenvolvimento de novos fotocatalisadores heterogêneos. 2025. 150 f. Dissertação (Mestrado em Química) - Instituto de Química, Universidade Federal do Rio de Janeiro, Rio de Janeiro, 2025.
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