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Updated: Jan 21, 2026

Preparation and Evaluation of Hybrid Composites of Chemical Fuel and Multi-walled Carbon Nanotubes in the Study of Thermopower Waves
Published on: April 10, 2015
Chemically Cross-Linked Carbon Nanotube Films Engineered to Control Neuronal Signaling
Myriam Barrejón1, Rossana Rauti2, Laura Ballerini2
1Department of Chemical and Pharmaceutical Sciences , Università degli Studi di Trieste , Via Licio Giorgieri 1 , Trieste 34127 , Italy.
Abstract:
In recent years, the use of free-standing carbon nanotube (CNT) films for neural tissue engineering has attracted tremendous attention. CNT films show large surface area and high electrical conductivity that combined with flexibility and biocompatibility may promote neuron growth and differentiation while stimulating neural activity. In addition, adhesion, survival, and growth of neurons can be modulated through chemical modification of CNTs. Axonal and synaptic signaling can also be positively tuned by these materials. Here we describe the ability of free-standing CNT films to influence neuronal activity. We demonstrate that the degree of cross-linking between the CNTs has a strong impact on the electrical conductivity of the substrate, which, in turn, regulates neural circuit outputs.
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