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Long-Lifespan Turbostratic Graphene Field Emitters for High-Power Applications
Matlabjon Sattorov1,2,3, Dongpyo Hong1,2,4, Sun-Hong Min1,2
1Center for THz-Driven Biomedical Systems, Department of Physics and Astronomy, Seoul National University, Seoul08826, Republic of Korea.
Abstract:
Cold cathodes offer heater-free, instantly switchable electron sources, but conventional sharp-tip designs often degrade under continuous thermal loads, limiting high-power applications. We overcome this with a freestanding, edge-emitting turbostratic graphene film (GF). Its turbostratic stacked layers are assembled via solution-phase pre-gelation of graphene oxide, followed by thermal restoration and densification. A 300 nm-thick, 1 cm-wide GF emission edge can sustain 1.5 mA (52 A cm-2) DC current for 588 h, with an exceptionally low degradation rate below 0.042% h-1. This durability is an order of magnitude better than previous carbon cathodes at similar current densities. This performance meets critical requirements for modern high-power vacuum electron applications. Our cost-effective, scalable architecture bridges nanoscopic field enhancement with macroscopic heat management, significantly broadening cold cathode applications.

