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PUBMED FOR HANDHELDS

Journal Abstract Search


221 related items for PubMed ID: 33847129

  • 1. Room-Temperature Magnetoelectric Coupling in Electronic Ferroelectric Film based on [(n-C3H7)4N][FeIIIFeII(dto)3] (dto = C2O2S2).
    Liu X, Wang B, Huang X, Dong X, Ren Y, Zhao H, Long L, Zheng L.
    J Am Chem Soc; 2021 Apr 21; 143(15):5779-5785. PubMed ID: 33847129
    [Abstract] [Full Text] [Related]

  • 2. Effect of nonmagnetic substitution on the magnetic properties and charge-transfer phase transition of an iron mixed-valence complex, (n-C3H7)4N[Fe(II)Fe(III)(dto)3] (dto = C2O2S2).
    Ida H, Okazawa A, Kojima N, Shimizu R, Yamada Y, Enomoto M.
    Inorg Chem; 2012 Aug 20; 51(16):8989-96. PubMed ID: 22860691
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  • 3. Structural Insight into Order-Disorder Transition and Charge-Transfer Phase Transition in an Iron Mixed-Valence Complex (n-C3H7)4N[FeIIFeIII(dto)3] with a Two-Dimensional Honeycomb Network.
    Itoi M, Okazawa A, Yamaura JI, Maki S, Komatsu T, Maurin I, Codjovi E, Boukheddaden K, Kojima N.
    Inorg Chem; 2018 Nov 05; 57(21):13728-13738. PubMed ID: 30339001
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  • 4. Control of charge transfer phase transition and ferromagnetism by photoisomerization of spiropyran for an organic-inorganic hybrid system, (SP)[Fe(II)Fe(III)(dto)3] (SP = spiropyran, dto = C2O2S2).
    Kida N, Hikita M, Kashima I, Okubo M, Itoi M, Enomoto M, Kato K, Takata M, Kojima N.
    J Am Chem Soc; 2009 Jan 14; 131(1):212-20. PubMed ID: 19072154
    [Abstract] [Full Text] [Related]

  • 5. Control of electronic polarization via charge ordering and electron transfer: electronic ferroelectrics and electronic pyroelectrics.
    Su SQ, Wu SQ, Kanegawa S, Yamamoto K, Sato O.
    Chem Sci; 2023 Oct 11; 14(39):10631-10643. PubMed ID: 37829034
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  • 7. Room-Temperature Magnetic Switching of the Electric Polarization in Ferroelectric Nanopillars.
    Poddar S, de Sa P, Cai R, Delannay L, Nysten B, Piraux L, Jonas AM.
    ACS Nano; 2018 Jan 23; 12(1):576-584. PubMed ID: 29298391
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  • 9. Predicting a ferrimagnetic phase of Zn(2)FeOsO(6) with strong magnetoelectric coupling.
    Wang PS, Ren W, Bellaiche L, Xiang HJ.
    Phys Rev Lett; 2015 Apr 10; 114(14):147204. PubMed ID: 25910159
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  • 10. Magneto-Electric-Optical Coupling in Multiferroic BiFeO3 -Based Films.
    Geng WR, Tang YL, Zhu YL, Wang YJ, Wu B, Yang LX, Feng YP, Zou MJ, Shi TT, Cao Y, Ma XL.
    Adv Mater; 2022 Aug 10; 34(32):e2106396. PubMed ID: 35730916
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  • 13. Local Magnetoelectric Effect in La-Doped BiFeO3 Multiferroic Thin Films Revealed by Magnetic-Field-Assisted Scanning Probe Microscopy.
    Pan DF, Zhou MX, Lu ZX, Zhang H, Liu JM, Wang GH, Wan JG.
    Nanoscale Res Lett; 2016 Dec 10; 11(1):318. PubMed ID: 27356565
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  • 14. Magnetoelectric Memory Based on Ferromagnetic/Ferroelectric Multiferroic Heterostructure.
    Wang J, Chen A, Li P, Zhang S.
    Materials (Basel); 2021 Aug 17; 14(16):. PubMed ID: 34443144
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  • 19. Switching of both local ferroelectric and magnetic domains in multiferroic Bi0.9La0.1FeO3 thin film by mechanical force.
    Jia T, Kimura H, Cheng Z, Zhao H.
    Sci Rep; 2016 Aug 22; 6():31867. PubMed ID: 27546488
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  • 20. Room temperature ferroelectricity in fluoroperovskite thin films.
    Yang M, Kc A, Garcia-Castro AC, Borisov P, Bousquet E, Lederman D, Romero AH, Cen C.
    Sci Rep; 2017 Aug 03; 7(1):7182. PubMed ID: 28775384
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