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000014602 084__ $$2WoS$$aEngineering, Electrical & Electronic
000014602 084__ $$2WoS$$aNanoscience & Nanotechnology
000014602 084__ $$2WoS$$aMaterials Science, Multidisciplinary
000014602 084__ $$2WoS$$aPhysics, Applied
000014602 1001_ $$0P:(DE-Juel1)VDB75720$$aRosezin, R.$$b0$$uFZJ
000014602 245__ $$aElectroforming and Resistance Switching Characteristics of Silver-Doped MSQ With Inert Electrodes
000014602 260__ $$aNew York, NY$$bIEEE$$c2011
000014602 300__ $$a338 - 343
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000014602 440_0 $$02490$$aIEEE Transactions on Applied Superconductivity$$v10$$x1051-8223$$y2
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000014602 520__ $$aThis paper reports on the resistance switching effect in silver-doped methylsilsesquioxane (MSQ) thin films with Pt top and bottom electrodes. Silver is thermally diffused into MSQ films for different times and the results prove that silver ions (or other oxidizable metal ions) are required in the system, but not necessarily as one of the two electrodes. SEM investigations at horizontal cells (gap width 15-100 nm) show the formation of metallic agglomerations in the gap. The forming process is found to be electric-field driven and the filament resistance is determined to be 30 Omega/nm. Under the assumption of conical-shaped filament growth, the diameter of a filament is calculated to 13.5 nm, which is in agreement with the SEM observations. Memory device related tests on 100 x 100 nm(2) cross junctions show unipolar switching up to 2000 times and retention at 85 degrees C for at least 6 x 10(4) s.
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000014602 65320 $$2Author$$aMethylsilsesquioxane (MSQ)
000014602 65320 $$2Author$$anonvolatile memory
000014602 65320 $$2Author$$aresistance switching
000014602 65320 $$2Author$$aresistive switching
000014602 65320 $$2Author$$asolid electrolyte
000014602 7001_ $$0P:(DE-Juel1)VDB55622$$aMeier, M.$$b1$$uFZJ
000014602 7001_ $$0P:(DE-Juel1)VDB2782$$aBreuer, U.$$b2$$uFZJ
000014602 7001_ $$0P:(DE-Juel1)VDB15125$$aKügeler, C.$$b3$$uFZJ
000014602 7001_ $$0P:(DE-Juel1)131022$$aWaser, R.$$b4$$uFZJ
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000014602 8567_ $$uhttp://dx.doi.org/10.1109/TNANO.2010.2041669
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