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In the last decade, materials science has witnessed substantial progress in the synthesis, characterization, and understanding of materials with atomic dimensions [1,2].
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Key Phrases - Statistically Improbable Phrases (SIPs):
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step propagation growth, damage layer thickness, fast etch rate, monodisperse clusters, embedded nanoparticles, higher microwave power, dry etching technology, ion bombardment energy, low ion energy, inorganic sheets, layered nanocomposites, room temperature excitons, etch conditions, nanophase materials, semiconductor clusters, high microwave power, valence band mixing, valence band region, smooth morphology, high etch rate, imaging layer, submicrometer features, nanocrystalline materials, photoelectron diffraction, plasma species
Key Phrases - Capitalized Phrases (CAPs):
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New York, Solid State Commun, Interface Anal, Electron Spectrosc, Faraday Trans, Thin Solid Films, National Science Foundation, Rensselaer Polytechnic Institute, Park Ridge, Practical Surface Analysis, Sol-Gel Optics, Doctoral Thesis, Quantum Electron, Pang Figure, Plasma Sci, Sou Phys, Thin Film Processes, Better Ceramics, Clay Poly, Device Lett, Huber Figure, Marcel Dekker, Materials Research Society, San Diego, University of California
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