Biodegradability makes aliphatic polyesters valuable candidates for biomaterials and environmentally friendly thermoplastics. Nevertheless, their chemical modification, which is mandatory for a series of potential applications, is usually a problem because it must be carried out under very mild conditions in order to prevent degradation by hydrolysis and/or transesterification from occurring. In this review, the copper(i) -catalyzed azide-alkyne cycloaddition, which is a click reaction, is shown to be very efficient to bypass these problems and to tailor the macromolecular architecture and functionality of those polyesters without facing undesired degradation reactions
The copper catalyzed 1,3 dipolar "click" cycloaddition of azides and alkynes was used as a complemen...
In this contribution, polyesters and polyurethanes were synthesized by step-growth polymerization in...
Since the discovery of Sharpless and Meldal, the copper(I)-catalyzed azide-alkyne cycloaddition (CuA...
The functionalization of aliphatic polyesters by the copper-mediated azide–alkyne Huisgen’s cycloadd...
The functionalization of aliphatic polyesters by the copper-mediated azide–alkyne Huisgen’s cycloadd...
Nowadays, biodegradable and biocompatible aliphatic polyesters are widely used as environmentally fr...
Nowadays, biodegradable and biocompatible aliphatic polyesters are widely used as environmentally fr...
In this work, click chemistry was sucessfully applied to the chemical modification of aliphatic poly...
In this work, click chemistry was sucessfully applied to the chemical modification of aliphatic poly...
Nowadays, biodegradable and biocompatible aliphatic polyesters are widely used as environmentally fr...
Nowadays, biodegradable and biocompatible aliphatic polyesters are widely used as environmentally fr...
Since its discovery in 2001, copper catalyzed azide-alkyne 'click' chemistry has been extensively us...
Since its discovery in 2001, copper catalyzed azide-alkyne 'click' chemistry has been extensively us...
This year, it has been a decade that the concept of click chemistry was pioneered in polymer and mat...
This year, it has been a decade that the concept of click chemistry was pioneered in polymer and mat...
The copper catalyzed 1,3 dipolar "click" cycloaddition of azides and alkynes was used as a complemen...
In this contribution, polyesters and polyurethanes were synthesized by step-growth polymerization in...
Since the discovery of Sharpless and Meldal, the copper(I)-catalyzed azide-alkyne cycloaddition (CuA...
The functionalization of aliphatic polyesters by the copper-mediated azide–alkyne Huisgen’s cycloadd...
The functionalization of aliphatic polyesters by the copper-mediated azide–alkyne Huisgen’s cycloadd...
Nowadays, biodegradable and biocompatible aliphatic polyesters are widely used as environmentally fr...
Nowadays, biodegradable and biocompatible aliphatic polyesters are widely used as environmentally fr...
In this work, click chemistry was sucessfully applied to the chemical modification of aliphatic poly...
In this work, click chemistry was sucessfully applied to the chemical modification of aliphatic poly...
Nowadays, biodegradable and biocompatible aliphatic polyesters are widely used as environmentally fr...
Nowadays, biodegradable and biocompatible aliphatic polyesters are widely used as environmentally fr...
Since its discovery in 2001, copper catalyzed azide-alkyne 'click' chemistry has been extensively us...
Since its discovery in 2001, copper catalyzed azide-alkyne 'click' chemistry has been extensively us...
This year, it has been a decade that the concept of click chemistry was pioneered in polymer and mat...
This year, it has been a decade that the concept of click chemistry was pioneered in polymer and mat...
The copper catalyzed 1,3 dipolar "click" cycloaddition of azides and alkynes was used as a complemen...
In this contribution, polyesters and polyurethanes were synthesized by step-growth polymerization in...
Since the discovery of Sharpless and Meldal, the copper(I)-catalyzed azide-alkyne cycloaddition (CuA...