The open border between non-living and living matter, suggested by increasingly emerging felds of nanoscience interfaced to biological systems, requires a detailed knowledge of nanomaterials properties. An account of the wide spectrum of phenomena, belonging to physical chemistry of interfaces, materials science, solid state physics at the nanoscale and bioelectrochemistry, thus is acquainted for a comprehensive application of carbon nanotubes interphased with neuron cells. This review points out a number of conceptual tools to further address the ongoing advances in coupling neuronal networks with (carbon) nanotube meshworks, and to deepen the basic issues that govern a biological cell or tissue interacting with a nanomaterial. Emphasis is...
Carbon nanotubes have been applied in several areas of nerve tissue engineering to probe and augment...
A long-term goal of tissue engineering is to exploit the ability of supporting materials to govern c...
Carbon nanotubes (CNTs) are cylindrical sheets of hexagonally ordered carbon atoms, giving tubes wit...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
Carbon nanotubes, owing to their electrical, chemical, mechanical, and thermal properties, are one o...
In the last two decades, an increasing amount of studies have investigated the use of components bas...
Carbon nanotubes are increasingly employed in basic neuroscience approaches, and they have been used...
The application of nanotechnology to contemporary neuroscience promotes innovative solutions that ma...
The application of nanotechnology to contemporary neuroscience promotes innovative solutions that ma...
Abstract: Carbon nanotubes (CNTs) are cylindrically shaped nanostructures made by sheets of graphene...
During the last decades, neuroscientists have increasingly exploited a variety of artificial, de-nov...
Carbon nanotubes (CNT) are remarkable materials with a simple and inert molecular structure that giv...
Engineered nanomaterials are increasingly being used for commercial purposes and especially for biom...
Carbon nanotubes have been applied in several areas of nerve tissue engineering to probe and augment...
A long-term goal of tissue engineering is to exploit the ability of supporting materials to govern c...
Carbon nanotubes (CNTs) are cylindrical sheets of hexagonally ordered carbon atoms, giving tubes wit...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
Carbon nanotubes, owing to their electrical, chemical, mechanical, and thermal properties, are one o...
In the last two decades, an increasing amount of studies have investigated the use of components bas...
Carbon nanotubes are increasingly employed in basic neuroscience approaches, and they have been used...
The application of nanotechnology to contemporary neuroscience promotes innovative solutions that ma...
The application of nanotechnology to contemporary neuroscience promotes innovative solutions that ma...
Abstract: Carbon nanotubes (CNTs) are cylindrically shaped nanostructures made by sheets of graphene...
During the last decades, neuroscientists have increasingly exploited a variety of artificial, de-nov...
Carbon nanotubes (CNT) are remarkable materials with a simple and inert molecular structure that giv...
Engineered nanomaterials are increasingly being used for commercial purposes and especially for biom...
Carbon nanotubes have been applied in several areas of nerve tissue engineering to probe and augment...
A long-term goal of tissue engineering is to exploit the ability of supporting materials to govern c...
Carbon nanotubes (CNTs) are cylindrical sheets of hexagonally ordered carbon atoms, giving tubes wit...