Abstract
The outstanding flexible field emission properties of carbon hybrid films made of vertically aligned N-doped carbon nanotubes grown on mechanically compliant reduced graphene films are demonstrated. The bottom-reduced graphene film substrate enables the conformal coating of the hybrid film on flexible device geometry and ensures robust mechanical and electrical contact even in a highly deformed state. The field emission properties are precisely examined in terms of the control of the bending radius, the N-doping level, and the length or wall-number of the carbon nanotubes and analyzed with electric field simulations. This high-performance flexible carbon field emitter is potentially useful for diverse, flexible field emission devices.
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CITATION STYLE
Ksenevich, V. K., Gorbachuk, N. I., Viet, H., Shuba, M. V., Kuzhir, P. P., Maksimenko, S. A., … Tenne, R. (2016). Electrical properties of carbon nanotubes/WS2 nanotubes (nanoparticles) hybrid films. Nanosystems: Physics, Chemistry, Mathematics, 37–43. https://doi.org/10.17586/2220-8054-2016-7-1-37-43
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