Area of research
Spectroscopy · Materials Chemistry
Research interest
Research interests include Molecular Sensors and Ion Detection, Luminescence and Fluorescent Materials, Analytical Chemistry and Sensors, and Organic Light-Emitting Diodes Research.
Eutectic Processing of Semiconductor Colloidal Nanocrystals for Energy Applications
Overcoming the Hydration and Solvation Problem in Ion Recognition and Binding: The Biomimetic Approach
Stimulated Emission from Below the Bandgap in Giant Quantum Shells
On the Preparation of Nickel Porphyrins Bearing Two to Four Nitro Groups at <i><b>β</b></i>‐Positions
Cellular Phosphate Sensing and Anion Binding by an Azacrown‐Calixpyrrole Hybrid
Quantum Shell in a Shell: Engineering Colloidal Nanocrystals for a High-Intensity Excitation Regime.
Azacrown-calixpyrrole isosteres: receptors and sensors for anions
Metallacage-based sensors and absorbents for polyfluoroalkyl substances (PFAS)
Reply to the ‘Comment on “Fluorimetric sensing of ATP in water by an imidazolium hydrazone based sensor”’ by S. Farshbaf and P. Anzenbacher Jr.,
<i>Chem. Commun.</i>
, 2019,
<b>55</b>
, 1770
Detection of phosphates in water utilizing a Eu<sup>3+</sup>-mediated relay mechanism
Preparation and Characterization of Metalloporphyrin Tröger’s and Spiro-Tröger’s Base Derivatives
Fluorescent Sensor Array for Quantitative Determination of Saccharides
Effect of Bis-diazirine-Mediated Photo-Crosslinking on Polyvinylcarbazole and Solution-Processed Polymer LEDs
Diazirine-based photo-crosslinkers for defect free fabrication of solution processed organic light-emitting diodes
High-throughput assay for determining enantiomeric excess of chiral diols, amino alcohols, and amines and for direct asymmetric reaction screening.
Exploiting fluorescent zinc(<scp>ii</scp>) and copper(<scp>ii</scp>) complexes for enantiomeric excess determination of hydroxycarboxylates
Fluorimetric sensing of ATP in water by an imidazolium hydrazone based sensor
A dual chromophore sensor for the detection of amines, diols, hydroxy acids, and amino alcohols
An indicator displacement assay recognizes enantiomers of chiral carboxylates
Collaborative Research: Chemomechanical Transduction in Charge-Transfer Assemblies: Recognition, Binding, and Sensing
MRI: Track 1 Acquisition of 600 MHz NMR for Growth in Scientific Research, Education, and Economic Impact
Multianalyte Fluorescence Sensing of Phosphates
Collaborative: Room-temperature electrophosphorescence from all-organic OLEDs
Molecular-Wire Energy Transfer and Exciton Diffusion in Self-Assembled Photonic Materials
EXP-LA: Materials and Devices for Fast Detection of Explosives Using Luminescent Microporous Materials
Intramolecular indicator-displacement assays (IIDA) for multianalyte sensing
SENSORS: Multi-Anion Sensing by Conductive Polymers with Dual Mode of Signal Transduction
High Quantum Efficiency Coordination Polymers and Networks for OLED Application
NER: Towards Self-Assembled Metallodendrimers for Multi-Anion Sensing