Nanotechnology · 2011 · 22 citations · 25 references
EngineeringElectron-beam LithographyPrecursor GasIon ImplantationBeam LithographyMaterials FabricationNanolithography MethodMaterials ScienceNanotechnologyNanomanufacturingSuccessful NanopatterningNanostructuringPlasma EtchingFocused Electron BeamElectron BeamNanomaterialsMicrofabricationSurface ScienceApplied PhysicsNanofabrication
Titanium is a relevant technological material due to its extraordinary mechanical and biocompatible properties, its nanopatterning being an increasingly important requirement in many applications. We report the successful nanopatterning of titanium by means of focused electron beam induced etching using XeF(2) as a precursor gas. Etch rates up to 1.25 × 10(-3) µm(3) s(-1) and minimum pattern sizes of 80 nm were obtained. Different etching parameters such as beam current, beam energy, dwell time and pixel spacing are systematically investigated, the etching process being optimized by decreasing both the beam current and the beam energy. The etching mechanism is investigated by transmission electron microscopy. Potential applications in nanotechnology are discussed.
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Gas-assisted focused electron beam and ion beam processing and fabrication
Ivo Utke, P. Hoffmann, J. Melngailis · Journal of Vacuum Science & Technology B Microelectronics and Nanometer Structures Processing Measurement and Phenomena · 2008 · 1K citations · Full text
Engineering, Electron-beam Lithography, Precursor Gas Activation +16
Secondary electron emission in the scanning electron microscope
H. Seiler · Journal of Applied Physics · 1983 · 985 citations
Focused, Nanoscale Electron-Beam-Induced Deposition and Etching
Steven Randolph, Jason D. Fowlkes, Philip D. Rack · Critical reviews in solid state and materials sciences/CRC critical reviews in solid state and materials sciences · 2006 · 412 citations
Engineering, Electron-beam Lithography, Chemical Deposition +16