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Determination of Diffusion Coefficients of Lithium in Solid Electrolyte LiPON
A structural model of LiPON solid electrolyte, containing elements that simulate drift conductivity, diffusion conductivity, and leakage current was proposed. The dependence of the impedance of the structural model on frequency was calculated, and the parameters of the model at which the theoretical...
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Published in: | Batteries (Basel) 2021-06, Vol.7 (2), p.21 |
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description | A structural model of LiPON solid electrolyte, containing elements that simulate drift conductivity, diffusion conductivity, and leakage current was proposed. The dependence of the impedance of the structural model on frequency was calculated, and the parameters of the model at which the theoretical curve best approximates the experimental Nyquist diagrams were determined. Based on these data, the ion diffusion coefficient and conductivity of LiPON were calculated, which are D1 = 1.5 × 10−11 cm2/s and σ = 1.9 × 10−6 S/cm, respectively. |
doi_str_mv | 10.3390/batteries7020021 |
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The dependence of the impedance of the structural model on frequency was calculated, and the parameters of the model at which the theoretical curve best approximates the experimental Nyquist diagrams were determined. Based on these data, the ion diffusion coefficient and conductivity of LiPON were calculated, which are D1 = 1.5 × 10−11 cm2/s and σ = 1.9 × 10−6 S/cm, respectively.</description><identifier>ISSN: 2313-0105</identifier><identifier>EISSN: 2313-0105</identifier><identifier>DOI: 10.3390/batteries7020021</identifier><language>eng</language><publisher>Basel: MDPI AG</publisher><subject>Approximation ; conductivity ; Diffusion coefficient ; Electrodes ; Electrolytes ; impedance spectroscopy ; Ion diffusion ; Leakage current ; Lithium ; Nyquist plots ; Permeability ; Silicon wafers ; solid electrolyte ; Solid electrolytes ; Spectrum analysis ; Structural models ; warburg element</subject><ispartof>Batteries (Basel), 2021-06, Vol.7 (2), p.21</ispartof><rights>2021 by the authors. 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The dependence of the impedance of the structural model on frequency was calculated, and the parameters of the model at which the theoretical curve best approximates the experimental Nyquist diagrams were determined. Based on these data, the ion diffusion coefficient and conductivity of LiPON were calculated, which are D1 = 1.5 × 10−11 cm2/s and σ = 1.9 × 10−6 S/cm, respectively.</abstract><cop>Basel</cop><pub>MDPI AG</pub><doi>10.3390/batteries7020021</doi><orcidid>https://orcid.org/0000-0002-8240-7845</orcidid><oa>free_for_read</oa></addata></record> |
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subjects | Approximation conductivity Diffusion coefficient Electrodes Electrolytes impedance spectroscopy Ion diffusion Leakage current Lithium Nyquist plots Permeability Silicon wafers solid electrolyte Solid electrolytes Spectrum analysis Structural models warburg element |
title | Determination of Diffusion Coefficients of Lithium in Solid Electrolyte LiPON |
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