Javascript must be enabled to continue!
Solvent-Dependent Fluorescence Properties of CH2-bis(BODIPY)s
View through CrossRef
Biocompatible luminophores based on organic dyes, which have fluorescence characteristics that are highly sensitive to the properties of the solvating medium, are of particular interest as highly sensitive, selective, and easy-to-use analytical agents. We found that BODIPY dimers (2,2′-, 2,3′-3,3′-CH2-bis(BODIPY) (1–3)) demonstrate fluorescence characteristics with a high sensitivity to the presence of polar solvents. The intense fluorescence of 1–3 in nonpolar/low-polarity solvents is dramatically quenched in polar media (acetone, DMF, and DMSO). It has been established that the main reason for CH2-bis(BODIPY) fluorescence quenching is the specific solvation of dyes by electron-donating molecules (Solv) with the formation of stable supramolecular CH2-bis(BODIPY)·2Solv structures. Using steady-state absorption and fluorescence spectroscopy, time-resolved fluorescence spectroscopy, and computational modeling, the formation mechanism, composition, and structure of CH2-bis(BODIPY)·2Solv supramolecular complexes have been substantiated, and their stability has been evaluated. The results show the promise of developing fluorescent probes based on CH2-bis(BODIPY)s for detecting toxic N/O-containing compounds in solutions.
Title: Solvent-Dependent Fluorescence Properties of CH2-bis(BODIPY)s
Description:
Biocompatible luminophores based on organic dyes, which have fluorescence characteristics that are highly sensitive to the properties of the solvating medium, are of particular interest as highly sensitive, selective, and easy-to-use analytical agents.
We found that BODIPY dimers (2,2′-, 2,3′-3,3′-CH2-bis(BODIPY) (1–3)) demonstrate fluorescence characteristics with a high sensitivity to the presence of polar solvents.
The intense fluorescence of 1–3 in nonpolar/low-polarity solvents is dramatically quenched in polar media (acetone, DMF, and DMSO).
It has been established that the main reason for CH2-bis(BODIPY) fluorescence quenching is the specific solvation of dyes by electron-donating molecules (Solv) with the formation of stable supramolecular CH2-bis(BODIPY)·2Solv structures.
Using steady-state absorption and fluorescence spectroscopy, time-resolved fluorescence spectroscopy, and computational modeling, the formation mechanism, composition, and structure of CH2-bis(BODIPY)·2Solv supramolecular complexes have been substantiated, and their stability has been evaluated.
The results show the promise of developing fluorescent probes based on CH2-bis(BODIPY)s for detecting toxic N/O-containing compounds in solutions.
Related Results
Aqueous Co-Electropolymerization of Thieno[3,4-b]-1,4-Dioxin-2-Methanol and a Synthesized Derivative
Aqueous Co-Electropolymerization of Thieno[3,4-b]-1,4-Dioxin-2-Methanol and a Synthesized Derivative
Thiophene-containing conducting polymers have been used in a range of applications, including supercapacitors, amperometric biosensors, and microfluidic pumping systems.1 This ver...
THE HIGHLY UNSATURATED ACIDS IN SARDINE OIL. XL THE CONSTITUTION OF NISINIC ACID C24H36O2 IN SARDINE OIL
THE HIGHLY UNSATURATED ACIDS IN SARDINE OIL. XL THE CONSTITUTION OF NISINIC ACID C24H36O2 IN SARDINE OIL
Abstract
Nisinic acid C24H36O2 has been separated from sardine oil, and its amyl ester subjected to ozonolysis. Among the products of ozonolysis were found: propyl a...
The anomeric effect in anionic systems XHm-CH2-NH− and XHm-CH2-CH2−, with XHm = F, OH, NH2 and CH3
The anomeric effect in anionic systems XHm-CH2-NH− and XHm-CH2-CH2−, with XHm = F, OH, NH2 and CH3
Ab initio geometry optimizations were performed at the RHF/6-31 + G* level on anionic acetal-like systems of the form XHm-CH2-NH− and XHm-CH2-CH2−, with XHm = F, OH, NH2, and CH3. ...
BODIPY-labelled estrogens for fluorescence analysis of environmental microbial degradation
BODIPY-labelled estrogens for fluorescence analysis of environmental microbial degradation
Biodegradation of estrogen hormone micropollutants is a well-established approach towards their remediation. Fluorescently labelled substrates are used extensively for rapid, near ...
Sulfonic Acid Derivative-Modified SBA-15, PHTS and MCM-41 Mesoporous Silicas as Carriers for a New Antiplatelet Drug: Ticagrelor Adsorption and Release Studies
Sulfonic Acid Derivative-Modified SBA-15, PHTS and MCM-41 Mesoporous Silicas as Carriers for a New Antiplatelet Drug: Ticagrelor Adsorption and Release Studies
Three mesoporous, siliceous materials, i.e., SBA-15 (Santa Barbara Amorphous), PHTS (Plugged Hexagonal Templated Silica) and MCM-41 (Mobil Composition of Matter), functionalized wi...
Allyl‐End‐Grafted Carbosilane Dendrimers Based on 1,4‐Phenylene Units: Synthesis, Reactivity, Structure, and Bonding Motifs
Allyl‐End‐Grafted Carbosilane Dendrimers Based on 1,4‐Phenylene Units: Synthesis, Reactivity, Structure, and Bonding Motifs
AbstractThe synthesis of a series of carbosilanes of type 1‐Br–C6H4–4‐SiMe3–n(CH2CH=CH2)n (n = 1, 2, 3), Si[C6H4–4‐SiMe3–n(CH2CH=CH2)n]4, 1‐Br–C6H4‐4‐Si[C6H4–4‐SiMe3–n(CH2CH=CH2)n]...
Applications of Total Scanning Fluorescence to Exploration Geochemistry
Applications of Total Scanning Fluorescence to Exploration Geochemistry
ABSTRACT
A total scanning fluorescence technique is described for correlation (oil/oil and oil/source rock) and surface geochemical prospecting studies. The fluor...
Use of Organic Solvent Nanofiltration (OSN) membranes for Counter-Current Chromatography (CCC) solvent recovery
Use of Organic Solvent Nanofiltration (OSN) membranes for Counter-Current Chromatography (CCC) solvent recovery
Solvent resistant membranes are a relatively new technology which has the potential to expand the possible utilities of membranes for process industries. Little is known in terms o...

