Fluorescent molecular probes based on phosphonate-functionalized porphyrin derivatives have been designed for selective detection of nitroaromatics. It is shown that molecular recognition is based on cooperative hydrogen bonding and π–π stacking interactions with electron-deficient molecules (nitroaromatic compounds, NACs), displaying superior detection toward trinitrotoluene (TNT). The PO functional groups decrease the lowest unoccupied molecular orbital (LUMO) energy level of the porphyrins and, consequently, facilitate the electron inoculation to TNT through a photoinduced electron transfer (PET) process. The hydroxyl groups of the phosphonates and pyrrole −NH protons are further engaged in donor–acceptor interactions with TNT by strong...
A series of fluoranthene derivatives (<b>F1</b>–<b>F5</b>) varied with nature and type of substituen...
Novel phenanthrene-naphthalene sulfone based luminescent chemosensor has been synthesized for recogn...
Efficient sensing of trace amount nitroaromatic (NAC) explosives has become a major research focus i...
Fluorescent molecular probes based on phosphonate-functionalized porphyrin derivatives have been des...
Development of a rapid and effective method for the detection of 2,4,6-trinitrotoluene (TNT) in aque...
A new class of dual fluorescent chemosensors for nitroaromatic compounds (NACs) based on phosphonate...
As security needs have increased, mechanism investigation has become of high importance in the devel...
A series of novel p-electron rich fluoranthene derivatives (P1-P3) adorned with symmetrical and unsy...
Three pi-electron rich fluorescent supramolecular polymers (1-3) have been synthesized incorporating...
The rapid detection of chemical explosives is crucial for national security and public safety, and t...
Several pi-electron rich fluorescent aromatic compounds containing trimethylsilylethynyl functionali...
We demonstrate here that supramolecular interactions enhance the sensitivity towards detection of el...
For a strategic incorporation of both π-electron-rich moieties and Lewis basic moieties acting as hy...
It is of high importance to develop high-efficient chemosensors for explosive nitroaromatics and exp...
A supramolecular fluorophore, 1,3,5-tris(4 '-aminophenyl)benzene (TAPB), selectively senses polynitr...
A series of fluoranthene derivatives (<b>F1</b>–<b>F5</b>) varied with nature and type of substituen...
Novel phenanthrene-naphthalene sulfone based luminescent chemosensor has been synthesized for recogn...
Efficient sensing of trace amount nitroaromatic (NAC) explosives has become a major research focus i...
Fluorescent molecular probes based on phosphonate-functionalized porphyrin derivatives have been des...
Development of a rapid and effective method for the detection of 2,4,6-trinitrotoluene (TNT) in aque...
A new class of dual fluorescent chemosensors for nitroaromatic compounds (NACs) based on phosphonate...
As security needs have increased, mechanism investigation has become of high importance in the devel...
A series of novel p-electron rich fluoranthene derivatives (P1-P3) adorned with symmetrical and unsy...
Three pi-electron rich fluorescent supramolecular polymers (1-3) have been synthesized incorporating...
The rapid detection of chemical explosives is crucial for national security and public safety, and t...
Several pi-electron rich fluorescent aromatic compounds containing trimethylsilylethynyl functionali...
We demonstrate here that supramolecular interactions enhance the sensitivity towards detection of el...
For a strategic incorporation of both π-electron-rich moieties and Lewis basic moieties acting as hy...
It is of high importance to develop high-efficient chemosensors for explosive nitroaromatics and exp...
A supramolecular fluorophore, 1,3,5-tris(4 '-aminophenyl)benzene (TAPB), selectively senses polynitr...
A series of fluoranthene derivatives (<b>F1</b>–<b>F5</b>) varied with nature and type of substituen...
Novel phenanthrene-naphthalene sulfone based luminescent chemosensor has been synthesized for recogn...
Efficient sensing of trace amount nitroaromatic (NAC) explosives has become a major research focus i...