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Effects of oxygen or nitrogen doping on the microstructures, bonding, electrical, thermal properties and phase change kinetics of GeSb9 films
Journal article   Peer reviewed

Effects of oxygen or nitrogen doping on the microstructures, bonding, electrical, thermal properties and phase change kinetics of GeSb9 films

J.H. Fu, K.Y. Wang, K.H. Lee and L.H. Chou
Thin Solid Films, Vol.517(8), pp.2813-2819
27/02/2009

Abstract

Crystallization Electrical properties Germanium antimonide GeSb Microstructures Nitrogen doping Oxygen doping Phase change kinetics Phase change memory Phase-change materials Resistivity Structural properties Thermal properties X-ray diffraction X-ray photoelectron spectroscopy
This study investigated the phase change kinetics, thermal, structural, electrical properties, and chemical bonding state of 50-nm-thick oxygen or nitrogen doped GeSb 9 films prepared by sputtering. Up to 6.8 at.% O or 8.7 at.% N doping, as measured by secondary ion mass spectrometry, the crystallization temperatures, lattice constants, and the resistivity of both crystalline and amorphous films increased with oxygen or nitrogen concentration, while the grain sizes decreased. Nitrogen atoms bonded to Ge and formed GeN 4 nitrides, and both the GeO 2 and Sb 2 O 3 co-existed when oxygen concentration reached 8.5 at.%. Crystallization could be triggered by a laser pulse of duration 12 ns for all films. Both GeSb 9 -O and GeSb 9 -N films had fast crystallization speed, good thermal stability, and improved resistivity and are therefore potential candidates as active layers for phase-change memory. © 2008 Elsevier B.V. All rights reserved.

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