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Graphene Flash Memory

delete2011-08-25
delete242
PRE
AI
A
Augustin J. Hong *
E
Emil B. Song
H
Hyung Suk Yu
M
Matthew J. Allen
J
Jiyoung Kim
J
Jesse D. Fowler
J
Jonathan K. Wassei
Y
Youngju Park
王
王勇 (Yong Wang)
邹
邹进 (Jin Zou)
R
Richard B. Kaner
B
Bruce H. Weiller
K
Kang L. Wang
DOI:10.1021/nn201809kdelete
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摘要

摘要

En 中文
Graphene's single atomic layer of sp(2) carbon has recently garnered much attention for its potential use in electronic applications. Here, we report a memory application for graphene, which we call graphene flash memory (GFM). GFM has the podtential to exceed the performance of current flash memory technology by utilizing the intrinsic properties of graphene, such as high density of states, high work function, and low dimensionality. To this end, we have grown large-area graphene sheets by chemical vapor deposition and integrated them into a floating gate structure. GFM displays a wide memory window of similar to 6 Vat significantly low program/erase voltages of +/- 7 V. GFM also shows a long retention time of more than 10 years at room temperature. Additionally, simulations suggest that GFM suffers very little from cell-to-cell interference, potentially enabling scaling down far beyond current state-of-the-art flash memory devices.
Keyword:
graphene
nonvolatile flash memory
memory window
retention time
cell-to-cell interference
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university of california los angeles
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international business machines (ibm)
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