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Organic electrical memory devices are considered to be potential substitutes for conventional semiconductor memories due to their comparatively low cost, the flexibility of their chemical structure and easy processing, and their compatibility with flexible substrates. Organic/ polymeric memory nanoscale materials also have the chance to address the need for high density, long retention and low power consumption memory devices. This is the first edited book which focuses on the organic memory device with broad appeal for those working in the areas of materials engineering, chemical engineering, electrical engineering, chemistry and physics.
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Organic electrical memory devices are considered to be potential substitutes for conventional semiconductor memories due to their comparatively low cost, the flexibility of their chemical structure and easy processing, and their compatibility with flexible substrates. Organic/ polymeric memory nanoscale materials also have the chance to address the need for high density, long retention and low power consumption memory devices. This is the first edited book which focuses on the organic memory device with broad appeal for those working in the areas of materials engineering, chemical engineering, electrical engineering, chemistry and physics.
Reviews