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a A Resistance-Switchable and Ferroelectric Metal Organic Framework

Pan, Liang (author)
Liu, Gang (author)
Li, Hui (author)
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Meng, Sheng (author)
Han, Lei (author)
Shang, Jie (author)
Chen, Bin (author)
Platero-Prats, Ana E. (author)
Stockholms universitet,Avdelningen för oorganisk kemi och strukturkemi
Lu, Wei (author)
Zou, Xiaodong (author)
Stockholms universitet,Avdelningen för oorganisk kemi och strukturkemi
Li, Run-Wei (author)
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 (creator_code:org_t)
2014-12-03
2014
English.
In: Journal of the American Chemical Society. - : American Chemical Society (ACS). - 0002-7863 .- 1520-5126. ; 136:50, s. 17477-17483
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The ever-emerging demands on miniaturization of electronic devices have pushed the development of innovative materials with desired properties. One major endeavor is the development of organic- or organic-inorganic hybrid-based electronics as alternatives or supplements to silicon-based devices. Herein we report the first observation of the coexistence of resistance switching and ferroelectricity in a metal-organic framework (MOF) material, [InC16H11N2O8]center dot 1.5H(2)O, denoted as RSMOF-1. The electrical resistance of RSMOF-1 can be turned on and off repeatedly with a current ratio of 30. A first-principles molecular dynamics simulation suggests that the resistive switching effect is related to the ferroelectric transition of N center dot center dot center dot H-O center dot center dot center dot H-N bridge-structured dipoles of the guest water molecules and the amino-tethered MOF nanochannel. The discovery of the resistive switching effect and ferroelectricity in MOFs offers great potential for the physical implementation of novel electronics for next-generation digital processing and communication.

Subject headings

NATURVETENSKAP  -- Kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences (hsv//eng)

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ref (subject category)
art (subject category)

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