Self-selective ferroelectric memory realized with semimetalic graphene channel

A new concept of read-out method for ferroelectric random-access memory (FeRAM) using a graphene layer as the channel material of bottom-gated field effect transistor structure is demonstrated experimentally. The transconductance of the graphene channel is found to change its sign depending on the d...

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Veröffentlicht in:NPJ 2D materials and applications 2021-12, Vol.5 (1), p.1-9, Article 90
Hauptverfasser: Jung, Sungchul, Park, Jinyoung, Kim, Junhyung, Song, Wonho, Jo, Jaehyeong, Park, Hyunjae, Kong, Myong, Kang, Seokhyeong, Sheeraz, Muhammad, Kim, Ill Won, Kim, Tae Heon, Park, Kibog
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Sprache:eng
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Zusammenfassung:A new concept of read-out method for ferroelectric random-access memory (FeRAM) using a graphene layer as the channel material of bottom-gated field effect transistor structure is demonstrated experimentally. The transconductance of the graphene channel is found to change its sign depending on the direction of spontaneous polarization (SP) in the underlying ferroelectric layer. This indicates that the memory state of FeRAM, specified by the SP direction of the ferroelectric layer, can be sensed unambiguously with transconductance measurements. With the proposed read-out method, it is possible to construct an array of ferroelectric memory cells in the form of a cross-point structure where the transconductance of a crossing cell can be measured selectively without any additional selector. This type of FeRAM can be a plausible solution for fabricating high speed, ultra-low power, long lifetime, and high density 3D stackable non-volatile memory.
ISSN:2397-7132
2397-7132
DOI:10.1038/s41699-021-00272-7