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      High-performance ferroelectric non-volatile memory based on La-doped BiFeO 3 thin films

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      RSC Advances
      The Royal Society of Chemistry

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          Abstract

          An ultrathin (6.2 nm) ferroelectric La 0.1Bi 0.9FeO 3 (LBFO) film was epitaxially grown on a 0.7 wt% Nb-doped SrTiO 3 (001) single-crystal substrate by carrying out pulsed laser deposition to form a Pt/La 0.1Bi 0.9FeO 3/Nb-doped SrTiO 3 heterostructure. The LBFO film exhibited strong ferroelectricity and a low coercive field. By optimizing the thickness of the LBFO film, a resistance OFF/ON ratio of the Pt/LBFO (∼6.2 nm)/NSTO heterostructure of as large as 2.8 × 10 5 was achieved. The heterostructure displayed multi-level storage and excellent retention characteristics, and showed stable bipolar resistance switching behavior, which can be well applied to ferroelectric memristors. The resistance switching behavior was shown to be due to the modulating effect of the ferroelectric polarization reversal on the width of the depletion region and the height of the potential barrier of the LaBiFeO 3/Nb-doped SrTiO 3 interface.

          Abstract

          An ultrathin (6.2 nm) ferroelectric La 0.1Bi 0.9FeO 3 (LBFO) film was epitaxially grown on a 0.7 wt% Nb-doped SrTiO 3 (001) single-crystal substrate by carrying out pulsed laser deposition to form a Pt/La 0.1Bi 0.9FeO 3/Nb-doped SrTiO 3 heterostructure.

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          Author and article information

          Journal
          RSC Adv
          RSC Adv
          RA
          RSCACL
          RSC Advances
          The Royal Society of Chemistry
          2046-2069
          11 May 2020
          10 May 2020
          11 May 2020
          : 10
          : 31
          : 18039-18043
          Affiliations
          [a] Henan Key Laboratory of Photovoltaic Materials and Center for Topological functional materials, Henan University Kaifeng 475004 China wfzhang6@ 123456163.com
          Author information
          https://orcid.org/0000-0003-1793-6641
          Article
          d0ra02780d
          10.1039/d0ra02780d
          9053584
          35517197
          0371ce47-0828-4de2-ba3c-8bf41ff720c6
          This journal is © The Royal Society of Chemistry
          History
          : 26 March 2020
          : 23 April 2020
          Page count
          Pages: 5
          Funding
          Funded by: National Natural Science Foundation of China, doi 10.13039/501100001809;
          Award ID: 11974099
          Categories
          Chemistry
          Custom metadata
          Paginated Article

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