We report the formation of dynamic, reversible cross-linked dendritic megamers and their dissociation to monomeric dendrimers, through a thiol-disulfide interchange reaction. For this study, poly(alkyl aryl ether) dendrimers up to three-generations presenting thiol functionalities, were prepared. The series from zero to three generations of dendrimers were installed with 3, 6, 12, and 24 thiol functionalities at their peripheries. Upon synthesis, cross-linking of the dendrimer was accomplished through disulfide bond formation. The cross-linking of dendrimers was monitored through optical density changes at 420 nm. Dense cross-linking led to visible precipitation of dendritic megamers and the morphologies of the megamers were characteri...
The insertion process of individual dendrimer sulfide 1 molecules into self-assembled monolayers (SA...
Enhancing the structural complexity and functionality of building blocks allows the design and synth...
The continued success of dendrimers1,2 in applications ranging from medicine to nanoengineering3,4 i...
We report the formation of dynamic, reversible cross-linked dendritic megamers and their dissociatio...
We report the formation of dynamic, reversible cross-linked dendritic megamers and their dissociatio...
Poly(ether imine) dendritic macromolecules were undertaken to study the reversible dendrimer monomer...
ABSTRACT: By taking advantage of the orthogonal nature of thiol-ene coupling and anhydride based est...
Polysulfurated branched molecules (dendrons) containing functionalized m-phenylene sulfide units wer...
A kinetically selective thiol–Michael addition “click” reaction was employed for facile and efficien...
Cascade poly(aryl ether) containing aryl sulfide or aryl sulfone groups, and aryl fluoride terminal ...
Disulfide exchange reaction has emerged as a powerful tool for reversible conjugation of proteins, p...
Thiolactone chemistry is a powerful tool for the design of complex multifunctional architectures. In...
Development of complex supramolecular and macromolecular systems is driven by the development of new...
Thiolactone chemistry is a powerful tool for the design of complex multifunctional architectures. In...
Silsesquioxane dendrimers offer versatile structural potential, prompting our innovative synthesis o...
The insertion process of individual dendrimer sulfide 1 molecules into self-assembled monolayers (SA...
Enhancing the structural complexity and functionality of building blocks allows the design and synth...
The continued success of dendrimers1,2 in applications ranging from medicine to nanoengineering3,4 i...
We report the formation of dynamic, reversible cross-linked dendritic megamers and their dissociatio...
We report the formation of dynamic, reversible cross-linked dendritic megamers and their dissociatio...
Poly(ether imine) dendritic macromolecules were undertaken to study the reversible dendrimer monomer...
ABSTRACT: By taking advantage of the orthogonal nature of thiol-ene coupling and anhydride based est...
Polysulfurated branched molecules (dendrons) containing functionalized m-phenylene sulfide units wer...
A kinetically selective thiol–Michael addition “click” reaction was employed for facile and efficien...
Cascade poly(aryl ether) containing aryl sulfide or aryl sulfone groups, and aryl fluoride terminal ...
Disulfide exchange reaction has emerged as a powerful tool for reversible conjugation of proteins, p...
Thiolactone chemistry is a powerful tool for the design of complex multifunctional architectures. In...
Development of complex supramolecular and macromolecular systems is driven by the development of new...
Thiolactone chemistry is a powerful tool for the design of complex multifunctional architectures. In...
Silsesquioxane dendrimers offer versatile structural potential, prompting our innovative synthesis o...
The insertion process of individual dendrimer sulfide 1 molecules into self-assembled monolayers (SA...
Enhancing the structural complexity and functionality of building blocks allows the design and synth...
The continued success of dendrimers1,2 in applications ranging from medicine to nanoengineering3,4 i...