2017
DOI: 10.1016/j.jsamd.2017.04.004
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Structural, impedance, dielectric and modulus analysis of LiNi 1-x-y-0.02 Mg 0.02 Co x Zn y O 2 cathode materials for lithium-ion batteries

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Cited by 15 publications
(20 citation statements)
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“…As shown here, the magnitude of Z′ in the low‐frequency region has an inverse relationship with temperature, while in the high frequency region, the data from different temperatures merge. This behavior is in agreement with the negative temperature coefficient of resistance, [42–44] and the decrease in energy barrier in grain boundaries [33,41–44] . As observed here, the Z′ values for Li 2 (La 0.75 Li 0.25 )(Ta 1.5 Ti 0.5 )O 7 are lower than those of Li 2 La(TaTi)O 7 , indicating the enhanced conductivity of the former material.…”
Section: Resultssupporting
confidence: 90%
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“…As shown here, the magnitude of Z′ in the low‐frequency region has an inverse relationship with temperature, while in the high frequency region, the data from different temperatures merge. This behavior is in agreement with the negative temperature coefficient of resistance, [42–44] and the decrease in energy barrier in grain boundaries [33,41–44] . As observed here, the Z′ values for Li 2 (La 0.75 Li 0.25 )(Ta 1.5 Ti 0.5 )O 7 are lower than those of Li 2 La(TaTi)O 7 , indicating the enhanced conductivity of the former material.…”
Section: Resultssupporting
confidence: 90%
“…This behavior is in agreement with the negative temperature coefficient of resistance, [42][43][44] and the decrease in energy barrier in grain boundaries. [33,[41][42][43][44] As observed here, the Z' values for Li 2 (La 0.75 Li 0.25 )(Ta 1.5 Ti 0.5 )O 7 are The loss spectrum, namely the imaginary component of impedance (Z'') as a function of angular frequency, shows broad peaks which flatten out at higher temperature. [41][42][43][44] The existence of peaks of this nature is indicative of the presence of immobile charge carriers at lower temperature, [44] which become mobile with rise in temperature.…”
Section: Tablesupporting
confidence: 87%
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“…On the other hand, a sharp rise for CSAG4, which is composed of the highest ratio of glycerol, was detected in the low-frequency regions and indicated the maximum ionic conductor. Moreover, it reflects the effect of ion movement conductors and polarization of charge carriers [44,45]. The ε and ε"increment with increasing plasticizer may be interrelated to the bond energy reduction due to a high value of ε for glycerol (ε = 42.5) [46].…”
Section: Dielectric Propertiesmentioning
confidence: 99%