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Structure,dielectric properties of low-temperature-sintering BaTiO3-based glass–ceramics for energy storage 被引量:1

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摘要 The 0.85BaTiO3–0.15Bi(Mg_(2/3)Nb_(1/3))O_(3)(BTBMN)ceramics with low-melting-temperature B_(2)O_(3)–Na_(2)B_(4)O_(7)–Na_(2)SiO_(3)(BNN)glass addition were prepared by the solid state method.The composition of the glass–ceramics was BTBMN–x wt.%BNN(x=0,1,3,5,7,9,12,15;abbreviated as BG).The sintering characteristics,phase structure,microstructure,dielectric properties and energy storage properties were systematically investigated.The sintering temperature of BTBMN ceramics was greatly reduced by the addition of BNN glass.The second-phase BaTi(BO_(3)T_(2)was observed in the BG system until the glass content reached 15 wt.%.The addition of BNN glass significantly reduces the grain size of BTBMN ceramics.With the increase of BNN glass content,dielectric constant of BG glass–ceramics at 1 kHz gradually decreased,the maximum dielectric constant("mT of BG glass–ceramics gradually decreased,while the temperature corresponding to the maximum dielectric constant(T_(m)T increased,the ferroelectric relaxation behavior decreased and the temperature stability of the dielectric constant gradually improved.As the BNN glass content increased,the breakdown electric field strength(BDS)of BG glass–ceramics increased first and then decreased,and the polarization values reduced gradually,while the trend of energy storage performance is similar to BDS.When the BNN glass content was 3 wt.%,the energy storage properties of the BG glass–ceramics were optimal,and a recoverable energy storage density(Wrec)of 1.26 J/cm^(3)and an energy storage efficiency(η)of 80.9%were obtained at the electric field strength of 220 kV/cm.The results showed that BG glass–ceramics were promising for energy storage capacitors.
出处 《Journal of Advanced Dielectrics》 CAS 2018年第6期89-99,共11页 先进电介质学报(英文)
基金 supported by the Natural Science Foundation of China(Grant No.51702196) the Natural Science Foundation of China(Grant No.51702197) the Project funded by China Postdoctoral Science Foundation(Grant No.2017M620435) the Natural Science Foundation of Shaanxi Province(Grant No.2017JQ5088) the Scientific Research Program Funded by Shaanxi Provincial Education Department(Grant No.17JK0105) the Research Starting Foundation of Shaanxi University of Science and Technology(Grant No.BJ16-07).
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