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Effect of Zn substitution for Co on the transport properties of YBaCo_4O_7

机译:Zn替代Co对YBaCo_4O_7输运性质的影响。

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Electrical resistivity and Seebeck coefficients of YBaCo_(4-x)Zn_xO_7 (x = 0.0,0.5, 1.0,2.0) were investigated in the temperature range 350-1000 K. It was found that the electrical resistivity and activation energy increase with increasing Zn concentration, while Seebeck coefficients do not increase but decrease when electrical resistivity increases. We explained the increase of electrical resistivity and the drop of Seebeck coefficients for Zn-substituted samples by the decrease of carrier mobility, rather than of carrier concentration. The effect of oxygen absorption and desorption on the electrical resistivity and Seebeck coefficients was also investigated. An abrupt change of transport properties happens at about 650 K for x = 0.0 and 0.5 samples measured in oxygen. For x = 1.0 and 2.0 samples, however, such change disappears and the transport behavior in oxygen is almost same as that in nitrogen due to the significant suppression of oxygen diffusion caused by the higher Zn concentration in these samples.
机译:在350-1000 K的温度范围内研究了YBaCo_(4-x)Zn_xO_7(x = 0.0,0.5,1.0,2.0)的电阻率和塞贝克系数。发​​现随着Zn浓度的增加,电阻率和活化能增加,而塞贝克系数不会增加,但是当电阻率增加时会降低。我们通过降低载流子迁移率而不是降低载流子浓度来解释了锌取代样品的电阻率增加和塞贝克系数的下降。还研究了氧气吸收和解吸对电阻率和塞贝克系数的影响。对于x = 0.0和在氧气中测量的0.5个样品,传输特性突然发生变化,约为650K。然而,对于x = 1.0和2.0的样品,由于这些样品中较高的Zn浓度对氧扩散的显着抑制,这种变化消失了,并且在氧气中的迁移行为与在氮气中的迁移行为几乎相同。

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