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Supramolecular and base-induced singlet oxygen generation enhancement of a water-soluble phthalocyanine

Authors :
Ministerio de Ciencia, Innovación y Universidades (España)
Agencia Estatal de Investigación (España)
University of Nottingham
Engineering and Physical Sciences Research Council (UK)
Generalitat de Catalunya
Ministerio de Ciencia e Innovación (España)
Smith, Shaun M.
Abelha, Thais F.
Limón, David
Samperi, Mario
Sharma, Bunty
Plaetzer, Kristjan
Dumoulin, Fabienne
Amabilino, David B.
Pérez García, Lluïsa
Ministerio de Ciencia, Innovación y Universidades (España)
Agencia Estatal de Investigación (España)
University of Nottingham
Engineering and Physical Sciences Research Council (UK)
Generalitat de Catalunya
Ministerio de Ciencia e Innovación (España)
Smith, Shaun M.
Abelha, Thais F.
Limón, David
Samperi, Mario
Sharma, Bunty
Plaetzer, Kristjan
Dumoulin, Fabienne
Amabilino, David B.
Pérez García, Lluïsa
Publication Year :
2023

Abstract

Investigation into the reactive oxygen species (ROS) generating abilities of photosensitizers outside of in-vitro/vivo conditions is a crucial element in the wider study of photodynamic therapy (PDT) in clinical settings. Zinc(II) phthalocyanine tetrasulfonic acid (ZnPcTS) is a water-soluble photosensitizer that can generate ROS as singlet oxygen (SO) under irradiation in the red and far-red region of the electromagnetic spectrum. The incorporation of ZnPcTS into nano-fibers of a bis-imidazolium hydrogel was demonstrated and the material was characterized with photophysical, rheological, and microscopy techniques. This supramolecular material containing ZnPcTS (named ZnPcTS_nEqBase@Gels) was found to significantly enhance the SO generation rate with respect to that of ZnPcTS in an aqueous solution. The effect is attributed mainly to reduced aggregation within the gel microenvironment compared with a solution. Furthermore, the preparation of ZnPcTS_nEqBase@Gels was carried out in the presence of varying amounts (0, 1, 2, 3, 4 eq.) of NaOH to improve the dissolution of ZnPcTSby ensuring full deprotonation of the sulfonate. The gel material containing 4 equivalents of NaOH per phthalocyanine was found to have a significantly greater SO-generating ability than the corresponding material containing no base. This phenomenon was shown to be partially a consequence of reduced aggregation as observed in the spectroscopic characterization. The enhancement in SO generation induced by this type of hybrid material makes it an attractive candidate to be used in different applications when efficient SO production is required.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1416003345
Document Type :
Electronic Resource