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dc.date.accessioned 2022-07-11T14:16:12Z
dc.date.available 2022-07-11T14:16:12Z
dc.date.issued 2011-03-23
dc.identifier.uri http://sedici.unlp.edu.ar/handle/10915/139228
dc.description.abstract The effect of humic acid (HA) aggregate formation on the photosensitized generation and subsequent quenching of singlet molecular oxygen O2(a1Δg) was investigated. Time-resolved O2(a1Δg) phosphorescence traces were obtained from (a) bulk samples of HA dispersions and (b) microscope-based experiments performed upon irradiation of a single HA aggregate. In the bulk experiments, the dependence of the O2(a1Δg) lifetime on the HA concentration yields a critical concentration for the formation of micrometric HA aggregates of 0.58 g L−1. This value is consistent with that obtained using pyrene as a fluorescent probe (0.38 g L−1). Microscope-based experiments were also performed with HA samples containing added singlet oxygen sensitizers; either the hydrophobic meso-tetraphenylporphyrin (TPP) or the hydrophilic 5,10,15,20-tetrakis(N-methyl-4-pyridyl)-21H,23H-porphine (TMPyP). Singlet oxygen phosphorescence could only be detected upon irradiation of TMPyP, a molecule which localizes on the exterior part of the HA aggregates. The inability to detect O2(a1Δg) phosphorescence from HA samples containing TPP is consistent with the model that the O2(a1Δg) produced in the interior of the aggregate was completely quenched by the high local concentration of HA reactive groups in this environment. en
dc.format.extent 1080-1086 es
dc.language en es
dc.subject humic acid es
dc.subject singlet molecular oxygen es
dc.subject hydrophobic meso-tetraphenylporphyrin es
dc.subject phosphorescence es
dc.title The role of humic acid aggregation on the kinetics of photosensitized singlet oxygen production and decay en
dc.type Articulo es
sedici.identifier.other doi:10.1039/c1pp00003a es
sedici.identifier.other pmid:21431180 es
sedici.identifier.issn 1474-9092 es
sedici.identifier.issn 1474-905X es
sedici.creator.person Carlos, Luciano es
sedici.creator.person Pedersen, Brian W. es
sedici.creator.person Ogilby, Peter R. es
sedici.creator.person Mártire, Daniel Osvaldo es
sedici.subject.materias Química es
sedici.subject.materias Ciencias Exactas es
sedici.description.fulltext true es
mods.originInfo.place Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas es
sedici.subtype Articulo es
sedici.rights.license Creative Commons Attribution 4.0 International (CC BY 4.0)
sedici.rights.uri http://creativecommons.org/licenses/by/4.0/
sedici.description.peerReview peer-review es
sedici.relation.journalTitle Photochemical & Photobiological Sciences es
sedici.relation.journalVolumeAndIssue vol. 10, no. 6 es


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Creative Commons Attribution 4.0 International (CC BY 4.0) Excepto donde se diga explícitamente, este item se publica bajo la siguiente licencia Creative Commons Attribution 4.0 International (CC BY 4.0)