Literature DB >> 23451771

Self-assembled incorporation of modulated block copolymer nanostructures in phase-change memory for switching power reduction.

Woon Ik Park1, Byoung Kuk You, Beom Ho Mun, Hyeon Kook Seo, Jeong Yong Lee, Sumio Hosaka, You Yin, C A Ross, Keon Jae Lee, Yeon Sik Jung.   

Abstract

Phase change memory (PCM), which exploits the phase change behavior of chalcogenide materials, affords tremendous advantages over conventional solid-state memory due to its nonvolatility, high speed, and scalability. However, high power consumption of PCM poses a critical challenge and has been the most significant obstacle to its widespread commercialization. Here, we present a novel approach based on the self-assembly of a block copolymer (BCP) to form a thin nanostructured SiOx layer that locally blocks the contact between a heater electrode and a phase change material. The writing current is decreased 5-fold (corresponding to a power reduction by 1/20) as the occupying area fraction of SiOx nanostructures is increased from a fill factor of 9.1% to 63.6%. Simulation results theoretically explain the current reduction mechanism by localized switching of BCP-blocked phase change materials.

Entities:  

Year:  2013        PMID: 23451771     DOI: 10.1021/nn4000176

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  4 in total

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  4 in total

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