Facile synthesis of metal@polymer nanocomposites were achieved using self‐assembled tannic acid (TA) shells without crosslinkers. The TA shell was assembled under mildly alkaline conditions in reaction time of 20 min under constant vortexing. Universal synthesis method was demonstrated by the synthesis of Ag@TA and Au@TA nanocomposites. We propose that the shell formation is due to TA undergoing oxidative self‐polymerization to poly(tannic acid) or a supramolecular aggregate of oxidized TA held together by charge transfer, hydrogen bond, and π–π interactions, similar to dopamine polymerization. Gibbs free energy calculations suggest that polymerization is energetically favorable. Synthesized Ag@TA exhibited antibacterial functionality with ...
Active investment in research time in the development and study of novel unconventional antimicrobia...
Magnetically recoverable Au nanoparticles immobilized/stabilized on core-shell nanocomposites are sy...
Herein we report a simple and green synthesis of smart Au and Ag@Au nanocomposite particles using po...
In the current research, we present a single-step, one-pot, room temperature green synthesis approac...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
Tannic acid nanoparticles were synthesized from an aqueous solution without the use of stabilizers v...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
Metal nanoparticles harbour numerous exceptional physiochemical properties absolutely different from...
Nanocomposites have been widely used in many important areas due to their particular physical/chemic...
Motivation: Tannic acid (TA) and Gallic acid (GA) are natural polyphenolic compounds belonging to th...
Motivation: Tannic Acid (TA) is a polyphenolic compound with a huge variety of biological activities...
The synthesis of metal nanoparticle (NP)-coated textiles (nanotextiles) is achieved by a dipping pro...
We demonstrate that large-scale autofluorescent tea polyphenol (TP)-based core@shell nanostructures ...
An effective and environmentally benign strategy for tethering functional polymers on various substr...
Active investment in research time in the development and study of novel unconventional antimicrobia...
Magnetically recoverable Au nanoparticles immobilized/stabilized on core-shell nanocomposites are sy...
Herein we report a simple and green synthesis of smart Au and Ag@Au nanocomposite particles using po...
In the current research, we present a single-step, one-pot, room temperature green synthesis approac...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
Tannic acid nanoparticles were synthesized from an aqueous solution without the use of stabilizers v...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
We have developed pH-responsive, multifunctional nanoparticles based on encapsulation of an antioxid...
Metal nanoparticles harbour numerous exceptional physiochemical properties absolutely different from...
Nanocomposites have been widely used in many important areas due to their particular physical/chemic...
Motivation: Tannic acid (TA) and Gallic acid (GA) are natural polyphenolic compounds belonging to th...
Motivation: Tannic Acid (TA) is a polyphenolic compound with a huge variety of biological activities...
The synthesis of metal nanoparticle (NP)-coated textiles (nanotextiles) is achieved by a dipping pro...
We demonstrate that large-scale autofluorescent tea polyphenol (TP)-based core@shell nanostructures ...
An effective and environmentally benign strategy for tethering functional polymers on various substr...
Active investment in research time in the development and study of novel unconventional antimicrobia...
Magnetically recoverable Au nanoparticles immobilized/stabilized on core-shell nanocomposites are sy...
Herein we report a simple and green synthesis of smart Au and Ag@Au nanocomposite particles using po...