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Understanding the switching mechanism of polymer memory
Journal article   Peer reviewed

Understanding the switching mechanism of polymer memory

Wei Lek Kwan, Bao Lei, Yue Shao and Yang Yang
Current applied physics, Vol.10(1), pp.E50-E53
01/01/2010

Abstract

Materials Science Materials Science, Multidisciplinary Physical Sciences Physics Physics, Applied Science & Technology Technology
Polymer memory is one of the potential candidates for next generation non-volatile memory application. In the past, we have demonstrated memory devices with polymer films embedded with nanoparticles and donor/acceptor molecules. We also reported a stackable polymer memory architecture using a photo-cross-linkable polymer. Recently, we concentrated our efforts in improving the understanding of the working mechanism of the polymer memory device. Using cross-sectional transmission electron microscopy with samples prepared by focused-ion beam, we found that nanoscale non-uniformities at the electrode dominated the device characteristics. A new model involving the formation and annihilation of conductive. laments was proposed. With this information, we designed a dynamic programming scheme to manipulate the localized paths through a feedback circuit and optimization algorithm. It has been experimentally demonstrated that this new operation improves the endurance of the memory device. This paper reviews our recent work in the study of the switching mechanism of polymer memory. (C) 2009 Elsevier B.V. All rights reserved.

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