The effectiveness of many nanomaterial-based devices depends upon their available surface area. Isolated nanoparticles (NPs) can offer high-surface area, but are prone to environmental loss and pollution. Whereas those supported on solid substrates are limited by the specific surface area (SSA) of the support. The SSA limitation of traditional supports can be addressed by attaching NPs on specially designed hierarchical structures having unusually high SSA, thereby maximizing the nanomaterial advantage without the risks of using loose nano-powders. In this research, hierarchical structures were fabricated by grafting carbon nanotubes (CNT) on carbon and subsequently decorated with strongly attached silver nanoparticles (AgNP) via controlled...
Antimicrobial materials with immobilized/entrapped silver nanoparticles (AgNPs) are of considerable ...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
We report a simple and efficient technique to deposit a re-generable coating of silver nanoparticles...
The effectiveness of many nanomaterial-based devices depends upon their available surface area. Isol...
The antibacterial properties of silver are well known, and their potency can strongly depend on the ...
The effectiveness of nanoparticle-based functional devices depends strongly on the surface morpholog...
Carbon nanotubes (CNTs) were chemically modified to achieve strong binding strength with the attache...
The present article reports the development of soft nanohybrids comprising of single walled carbon n...
<div><p>The present article reports the development of soft nanohybrids comprising of single walled ...
Recently, various nanoscale materials, including silver (Ag) nanoparticles, have been actively studi...
Recently, development of carbon nanocomposites composed of carbon nanostructures and metal n...
A hierarchical silver nanostructure with improved antibacterial property was fabricated utilizing si...
Pathogens (disease-causing microorganisms) can survive up to a few days on surfaces and can propagat...
The emergence and spread of antibiotic resistance is an alarming concern in clinical practice. This ...
The present article reports the development of soft nanohybrids comprising of single walled carbon n...
Antimicrobial materials with immobilized/entrapped silver nanoparticles (AgNPs) are of considerable ...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
We report a simple and efficient technique to deposit a re-generable coating of silver nanoparticles...
The effectiveness of many nanomaterial-based devices depends upon their available surface area. Isol...
The antibacterial properties of silver are well known, and their potency can strongly depend on the ...
The effectiveness of nanoparticle-based functional devices depends strongly on the surface morpholog...
Carbon nanotubes (CNTs) were chemically modified to achieve strong binding strength with the attache...
The present article reports the development of soft nanohybrids comprising of single walled carbon n...
<div><p>The present article reports the development of soft nanohybrids comprising of single walled ...
Recently, various nanoscale materials, including silver (Ag) nanoparticles, have been actively studi...
Recently, development of carbon nanocomposites composed of carbon nanostructures and metal n...
A hierarchical silver nanostructure with improved antibacterial property was fabricated utilizing si...
Pathogens (disease-causing microorganisms) can survive up to a few days on surfaces and can propagat...
The emergence and spread of antibiotic resistance is an alarming concern in clinical practice. This ...
The present article reports the development of soft nanohybrids comprising of single walled carbon n...
Antimicrobial materials with immobilized/entrapped silver nanoparticles (AgNPs) are of considerable ...
Surface activity of heterogeneous catalysts can be enhanced if their sizes are reduced to nanometers...
We report a simple and efficient technique to deposit a re-generable coating of silver nanoparticles...