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Resistance Switching in Polycrystalline C12A7 Electride. / Юшков, Иван Дмитриевич; Камаев, Геннадий Николаевич; Володин, Владимир Алексеевич et al.

In: Micromachines, Vol. 13, No. 11, 1917, 11.2022.

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Юшков ИД, Камаев ГН, Володин ВА, Гейдт ПВ, Капишников АВ, Володин АМ. Resistance Switching in Polycrystalline C12A7 Electride. Micromachines. 2022 Nov;13(11):1917. doi: 10.3390/mi13111917

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Юшков, Иван Дмитриевич ; Камаев, Геннадий Николаевич ; Володин, Владимир Алексеевич et al. / Resistance Switching in Polycrystalline C12A7 Electride. In: Micromachines. 2022 ; Vol. 13, No. 11.

BibTeX

@article{fbde024e0d934c47a8c42ec7434597b2,
title = "Resistance Switching in Polycrystalline C12A7 Electride",
abstract = "The memory (memristive) properties of an electride material based on polycrystalline mayenite (C12A7:e−) were studied. The phase composition of the material has been confirmed by such methods as XRD, TEM, Raman, and infrared spectroscopy. The electride state was confirmed by conductivity measurements and EPR using a characteristic signal from F+—like centers, but the peak at 186 cm−1, corresponding to an electride with free electrons, was not observed explicitly in the Raman spectra. The temperature dependence of current–voltage characteristics in states with low and high resistance (LRS and HRS) has been studied. In the LRS state, the temperature dependence of the current has a non-Arrhenius character and is described by the Hurd quantum tunnelling model with a Berthelot temperature of 262 K, while in the HRS state, it can be described in terms of the Arrhenius model. In the latter case, the existence of two conduction regions, “impurity” and “intrinsic”, with corresponding activation energies of 25.5 and 40.6 meV, was assumed. The difference in conduction mechanisms is most likely associated with a change in the concentration of free electrons.",
author = "Юшков, {Иван Дмитриевич} and Камаев, {Геннадий Николаевич} and Володин, {Владимир Алексеевич} and Гейдт, {Павел Викторович} and Капишников, {Александр Владимирович} and Володин, {Александр Михайлович}",
note = "This research was funded by the Ministry of Education and Science of the Russian Federation, grant No. FSUS-2020-0029.",
year = "2022",
month = nov,
doi = "10.3390/mi13111917",
language = "English",
volume = "13",
journal = "Micromachines",
issn = "2072-666X",
publisher = "Multidisciplinary Digital Publishing Institute (MDPI)",
number = "11",

}

RIS

TY - JOUR

T1 - Resistance Switching in Polycrystalline C12A7 Electride

AU - Юшков, Иван Дмитриевич

AU - Камаев, Геннадий Николаевич

AU - Володин, Владимир Алексеевич

AU - Гейдт, Павел Викторович

AU - Капишников, Александр Владимирович

AU - Володин, Александр Михайлович

N1 - This research was funded by the Ministry of Education and Science of the Russian Federation, grant No. FSUS-2020-0029.

PY - 2022/11

Y1 - 2022/11

N2 - The memory (memristive) properties of an electride material based on polycrystalline mayenite (C12A7:e−) were studied. The phase composition of the material has been confirmed by such methods as XRD, TEM, Raman, and infrared spectroscopy. The electride state was confirmed by conductivity measurements and EPR using a characteristic signal from F+—like centers, but the peak at 186 cm−1, corresponding to an electride with free electrons, was not observed explicitly in the Raman spectra. The temperature dependence of current–voltage characteristics in states with low and high resistance (LRS and HRS) has been studied. In the LRS state, the temperature dependence of the current has a non-Arrhenius character and is described by the Hurd quantum tunnelling model with a Berthelot temperature of 262 K, while in the HRS state, it can be described in terms of the Arrhenius model. In the latter case, the existence of two conduction regions, “impurity” and “intrinsic”, with corresponding activation energies of 25.5 and 40.6 meV, was assumed. The difference in conduction mechanisms is most likely associated with a change in the concentration of free electrons.

AB - The memory (memristive) properties of an electride material based on polycrystalline mayenite (C12A7:e−) were studied. The phase composition of the material has been confirmed by such methods as XRD, TEM, Raman, and infrared spectroscopy. The electride state was confirmed by conductivity measurements and EPR using a characteristic signal from F+—like centers, but the peak at 186 cm−1, corresponding to an electride with free electrons, was not observed explicitly in the Raman spectra. The temperature dependence of current–voltage characteristics in states with low and high resistance (LRS and HRS) has been studied. In the LRS state, the temperature dependence of the current has a non-Arrhenius character and is described by the Hurd quantum tunnelling model with a Berthelot temperature of 262 K, while in the HRS state, it can be described in terms of the Arrhenius model. In the latter case, the existence of two conduction regions, “impurity” and “intrinsic”, with corresponding activation energies of 25.5 and 40.6 meV, was assumed. The difference in conduction mechanisms is most likely associated with a change in the concentration of free electrons.

UR - https://www.scopus.com/record/display.uri?eid=2-s2.0-85149487578&origin=inward&txGid=1946c2101f88a10fb6ec3e0b6df9257e

UR - https://www.mendeley.com/catalogue/328f8056-5302-3601-bf8a-ebbc9fa623b3/

U2 - 10.3390/mi13111917

DO - 10.3390/mi13111917

M3 - Article

C2 - 36363938

VL - 13

JO - Micromachines

JF - Micromachines

SN - 2072-666X

IS - 11

M1 - 1917

ER -

ID: 40852572