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首页> 外文期刊>Journal of electroceramics >Thermoelectric properties of rare earth doped Ca_(3-x)RE_xCo_4O_9 (RE = Dy, Er, Gd, and Tb; x=0, 0.01, 0.03, and 0.05)
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Thermoelectric properties of rare earth doped Ca_(3-x)RE_xCo_4O_9 (RE = Dy, Er, Gd, and Tb; x=0, 0.01, 0.03, and 0.05)

机译:稀土掺杂Ca_(3-x)RE_xCo_4O_9的热电特性(RE = Dy,Er,Gd和Tb; x = 0、0.01、0.03和0.05)

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摘要

Ca_(3-x)RE_xCo_4O_9 thermoelectric ceramics with different rare earth (RE = Dy, Er, Gd, and Tb) substitution for Ca have been successfully produced by the classical solid state method. All these rare earths in small proportions produce the same effects on the thermoelectric phase, reflected on a similar and significant decrease of the electrical resistivity, compared with the undoped samples. The Seebeck coefficient slightly decreases with all the studied substitutions while the power factor values appreciably increase at high temperatures for small amounts (0.01) of doping elements. Further doping produces the decrease of power factor which indicates that the optimal doping level has been determined to be 0.01 for all the tested rare earths which produces, approximately, the same improvement, around 20% of the power factor obtained in the undoped samples at 800℃.
机译:通过经典的固态方法成功地制备了具有不同稀土元素(RE = Dy,Er,Gd和Tb)的Ca_(3-x)RE_xCo_4O_9热电陶瓷。与未掺杂样品相比,所有这些小比例的稀土元素都会对热电相产生相同的影响,反映出电阻率的相似且显着降低。对于所有研究的替代物,塞贝克系数都略有降低,而对于少量(0.01)的掺杂元素,功率因数值在高温下会明显增加。进一步掺杂会导致功率因数降低,这表明所有测试稀土的最佳掺杂水平已确定为0.01,这大约会产生与未掺杂样品在800时获得的功率因数约20%相同的改善。 ℃。

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