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Tunable Quantum Confinement Effect on Non-Volatile Thin Film Polymer Memory Device
Conference proceeding

Tunable Quantum Confinement Effect on Non-Volatile Thin Film Polymer Memory Device

Augustin J. Hong, Kang L. Wang, Wei Lek Kwan, Yang Yang, Dayanara Parra and Sarah Tolbert
MRS proceedings, Vol.1134, pp.97-102
Materials Research Society Symposium Proceedings
01/01/2009

Abstract

Materials Science Materials Science, Multidisciplinary Nanoscience & Nanotechnology Physical Sciences Polymer Science Science & Technology Science & Technology - Other Topics Technology
Several dodecanethiol capped An nanoparticles (Au-DT) less than 5 nm in size were synthesized for the fabrication of a non-volatile polymer memory device (PMD). Size characterizations of Au-DTs were confirmed by XRD and (1)H NMR. The PMD consisted of a polystyrene thin Film containing Au-DT and 8-Hydroquinoline (8-HQ) sandwiched between two aluminum electrodes. The device exhibited desired "write", "read" and "erase" steps of a memory cycle. Quantum confinement effects were apparent because electronic properties of the device depended oil the nanoparticle size. An energy band diagram for the quantized charging and a novel conducting mechanism were suggested.

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