Area of research
Biomaterials · Molecular Medicine
Research interest
Research interests include Chemistry, Supramolecular chemistry, Self-healing hydrogels, Materials science, Side chain, and Dissolution.
Antimicrobial and Hemolytic Studies of a Series of Polycations Bearing Quaternary Ammonium Moieties: Structural and Topological Effects
Aromatic ionene topology and counterion-tuned gelation of acidic aqueous solutions
Transfection of Antisense Oligonucleotides Mediated by Cationic Vesicles Based on Non-Ionic Surfactant and Polycations Bearing Quaternary Ammonium Moieties
Ultrasonication-enhanced gelation properties of a versatile amphiphilic formamidine-based gelator exhibiting both organogelation and hydrogelation abilities
Non-covalent incorporation of some substituted metal phthalocyanines into different gel networks and the effects on the gel properties
Supramolecular Phase-Selective Gelation by Peptides Bearing Side-Chain Azobenzenes: Effect of Ultrasound and Potential for Dye Removal and Oil Spill Remediation
Non-invasive and continuous monitoring of the sol–gel phase transition of supramolecular gels using a fast (open-ended coaxial) microwave sensor
Amino acid-based multiresponsive low-molecular weight metallohydrogels with load-bearing and rapid self-healing abilities
Amide–triazole isosteric substitution for tuning self-assembly and incorporating new functions into soft supramolecular materials
Dissolvable metallohydrogels for controlled release: evidence of a kinetic supramolecular gel phase intermediate
Synergistic Computational‐Experimental Approach to Improve Ionene Polymer‐Based Functional Hydrogels
Gelatin Protein‐Mediated Direct Aldol Reaction
Ionene Hydrogels: Synergistic Computational‐Experimental Approach to Improve Ionene Polymer‐Based Functional Hydrogels (Adv. Funct. Mater. 31/2014)
Thixotropic and Injectable Nature of Supramolecular Aqueous Gels Derived from N,N'-Dibenzoyl-L-cystine and the Effects of Esterification
Multistimuli‐Responsive Supramolecular Organogels Formed by Low‐Molecular‐Weight Peptides Bearing Side‐Chain Azobenzene Moieties
Organophotocatalysis in nanostructured soft gel materials as tunable reaction vessels: comparison with homogeneous and micellar solutions
Competition between gelation and crystallisation of a peculiar multicomponent liquid system based on ammonium salts
Hybrid Bioactive Hydrogels Containing Single-Walled Carbon Nanotubes Covalently Integrated via Strain-Promoted Azide-Alkyne Cycloaddition
(Z)-N-(7-Cyano-9,9,15,15-tetramethyl-9,10,11,13,14,15-hexahydro-6H-benzo[4'',5'']imidazo[1'',2'':1',2']pyrido[3',4':5, 6]pyrano[2,3-f]pyrido[3,2,1-ij]quinolin-6-ylidene)pent-4-ynamide