鉭酸銅混合導(dǎo)電性的研究報(bào)告[外文翻譯].zip
鉭酸銅混合導(dǎo)電性的研究報(bào)告[外文翻譯],材料科學(xué)與工程 材料物理與化學(xué),外文文獻(xiàn)翻譯及原文investigations on the mixed conductivity of copper tantalate鉭酸銅混合導(dǎo)電性的研究報(bào)告abstractpolycrystals of cuta,o, were prepared by solid-state r...
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材料科學(xué)與工程 材料物理與化學(xué),外文文獻(xiàn)翻譯及原文
Investigations on the mixed conductivity of copper tantalate
鉭酸銅混合導(dǎo)電性的研究報(bào)告
Abstract
Polycrystals of CuTa,O, were prepared by solid-state reaction in air at 1200°C with variations of stoichiometry (x) in thecopper oxide ratio. They were examined by X-ray diffraction. A defect of copper oxide during the synthesis leads to anexcess of Ta,O, phase in the sample and an excess of copper oxide gives a single phase compound. The total conductivitywas determined by impedance measurements and the electronic conductivity was estimated by the Hebb-Wagner method. Atroom temperature, the total conductivity of samples in equilibrium with copper is about 10-7-10~h S cm-‘. No significantchanges were observed for x = 0.8 and 1.O, but the total and the partial conductivities are higher for x = 1.2.In all cases, themeasured electronic conductivity seems to be mainly of n-type and the electronic transport number is close to 0.5-0.6,independent of the temperature and stoichiometry. The nature of the mixed conduction is discussed in relation to Cu’ ions inthe structure.
摘要
CuTa2O6多晶通過(guò)固相反應(yīng)在空氣中1200攝氏度時(shí)反應(yīng)得到,其中氧化銅的化學(xué)計(jì)量(X)會(huì)有變化。通過(guò)X-射線衍射檢查,合成過(guò)程中的氧化銅的一種缺陷導(dǎo)致Ta2O5過(guò)量,樣品中的相與過(guò)量的氧化銅會(huì)得到一種單相化合物??傠妼?dǎo)率的測(cè)定由阻抗測(cè)量和電子電導(dǎo)率的估計(jì)組成,叫做海伯-瓦格納法。在室溫下,在銅平衡的樣品的總導(dǎo)電率約10-7-10-6 Scm-1。觀察得到當(dāng)X=0.8和X=1時(shí),電導(dǎo)率沒(méi)有什么明顯變化,但是在X=1.2時(shí),總電導(dǎo)率和部分電導(dǎo)率比較高。在所有情況下,測(cè)得的電子傳導(dǎo)性主要是n型導(dǎo)電,而且電子遷移數(shù)接近0.5-0.6,有獨(dú)立的溫度和化學(xué)計(jì)量。通過(guò)結(jié)構(gòu)中的銅離子來(lái)討論混合傳導(dǎo)的性質(zhì)。
Investigations on the mixed conductivity of copper tantalate
鉭酸銅混合導(dǎo)電性的研究報(bào)告
Abstract
Polycrystals of CuTa,O, were prepared by solid-state reaction in air at 1200°C with variations of stoichiometry (x) in thecopper oxide ratio. They were examined by X-ray diffraction. A defect of copper oxide during the synthesis leads to anexcess of Ta,O, phase in the sample and an excess of copper oxide gives a single phase compound. The total conductivitywas determined by impedance measurements and the electronic conductivity was estimated by the Hebb-Wagner method. Atroom temperature, the total conductivity of samples in equilibrium with copper is about 10-7-10~h S cm-‘. No significantchanges were observed for x = 0.8 and 1.O, but the total and the partial conductivities are higher for x = 1.2.In all cases, themeasured electronic conductivity seems to be mainly of n-type and the electronic transport number is close to 0.5-0.6,independent of the temperature and stoichiometry. The nature of the mixed conduction is discussed in relation to Cu’ ions inthe structure.
摘要
CuTa2O6多晶通過(guò)固相反應(yīng)在空氣中1200攝氏度時(shí)反應(yīng)得到,其中氧化銅的化學(xué)計(jì)量(X)會(huì)有變化。通過(guò)X-射線衍射檢查,合成過(guò)程中的氧化銅的一種缺陷導(dǎo)致Ta2O5過(guò)量,樣品中的相與過(guò)量的氧化銅會(huì)得到一種單相化合物??傠妼?dǎo)率的測(cè)定由阻抗測(cè)量和電子電導(dǎo)率的估計(jì)組成,叫做海伯-瓦格納法。在室溫下,在銅平衡的樣品的總導(dǎo)電率約10-7-10-6 Scm-1。觀察得到當(dāng)X=0.8和X=1時(shí),電導(dǎo)率沒(méi)有什么明顯變化,但是在X=1.2時(shí),總電導(dǎo)率和部分電導(dǎo)率比較高。在所有情況下,測(cè)得的電子傳導(dǎo)性主要是n型導(dǎo)電,而且電子遷移數(shù)接近0.5-0.6,有獨(dú)立的溫度和化學(xué)計(jì)量。通過(guò)結(jié)構(gòu)中的銅離子來(lái)討論混合傳導(dǎo)的性質(zhì)。
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