Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability to boost the electrical activity of neuronal cells cultured on them. Reasons for this effect are still under debate. However, the intimate contact at the membrane level between these thready nanostructures and cells, in combination with their unique electrical properties, seems to play an important role. The entire existing literature exploiting the effect of CNTs on modulating cellular behavior deals with cell cultures grown on purified multiwalled carbon nanotubes (MWNTs) deposited on a supporting surface via drop-casting or mechanical entrapment. Here, for the first time, it is demonstrated that CNTs directly grown on a supporting silicon...
Abstract: Carbon nanotubes (CNTs) are cylindrically shaped nanostructures made by sheets of graphene...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
10noCarbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and abi...
The increasing engineering of carbon-based nanomaterials as components of neuroregenerative interfac...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
Carbon nanotubes, owing to their electrical, chemical, mechanical, and thermal properties, are one o...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
Abstract: Carbon nanotubes (CNTs) are cylindrically shaped nanostructures made by sheets of graphene...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
Carbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and ability...
10noCarbon nanotube (CNT)–modified surfaces unequivocally demonstrate their biocompatibility and abi...
The increasing engineering of carbon-based nanomaterials as components of neuroregenerative interfac...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
Carbon nanotubes, owing to their electrical, chemical, mechanical, and thermal properties, are one o...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
International audienceCarbon nanotubes (CNTs) promise various novel neural biomedical applications f...
Abstract: Carbon nanotubes (CNTs) are cylindrically shaped nanostructures made by sheets of graphene...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...
The chemical properties of carbon nanotubes can be systematically varied by attaching different func...