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[Ca24Al28O64]4+(4e–)电子化合物的直接合成及热发射性能
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作者 李凡 张忻 张久兴 《物理学报》 SCIE EI CAS CSCD 北大核心 2019年第20期246-251,共6页
[Ca24Al28O64]^4+(4e^–)电子化合物是一种具有高载流子密度、低逸出功的透明导电氧化物,但是繁琐的制备步骤、苛刻的工艺条件极大地限制了其实际应用.本文以特定化学计量比的Ca12Al14O33+CaAl2O4两相为前驱体,在放电等离子烧结系统里... [Ca24Al28O64]^4+(4e^–)电子化合物是一种具有高载流子密度、低逸出功的透明导电氧化物,但是繁琐的制备步骤、苛刻的工艺条件极大地限制了其实际应用.本文以特定化学计量比的Ca12Al14O33+CaAl2O4两相为前驱体,在放电等离子烧结系统里通过原位钙热反应成功制备了多晶C12A7:e^–.在烧结温度为1100℃,保温时间为10 min的条件下,其电子浓度基本达到理论最大值~2.3×10^21 cm^–3,在2.5 eV处出现明显的紫外吸收峰,致密度可达99%以上.同时用顺磁共振谱仪分析了其电子结构,结果呈Dyson特性,这些结果充分证明了电子有效地注入到笼腔结构中.热电子发射测试结果显示:在阴极温度为1373 K,外加电场为35000 V/cm的条件下, C12A7:e^–的热发射电流密度为1.75 A/cm^2,有效逸出功为2.07 eV.该工艺提供了一种新型的电子注入方法,大幅度缩短了制备周期使大规模生产成为可能. 展开更多
关键词 C12A7:e^– 钙热反应 热发射
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Reaction mechanisms of low-grade molybdenum concentrate during calcification roasting process 被引量:6
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作者 甘敏 范晓慧 +6 位作者 陈许玲 吴程骞 季志云 王送荣 汪国靖 邱冠周 姜涛 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第11期3015-3023,共9页
The effects of Ca-based additives on roasting properties of low-grade molybdenum concentrate were studied. The resultsshow that calcium-based additives can react with molybdenum concentrate to form CaSO4 and CaMoO4. T... The effects of Ca-based additives on roasting properties of low-grade molybdenum concentrate were studied. The resultsshow that calcium-based additives can react with molybdenum concentrate to form CaSO4 and CaMoO4. The initial oxidationtemperature of MoS2 is 450℃, while the formation of CaMoO4 and CaSO4 occurs above 500℃. The whole calcification reactionsare nearly completed between 600 and 650℃. However, raising the temperature further helps for the formation of CaMoO4 but isdisadvantageous to sulfur fixing rate and molybdenum retention rate. Calcification efficiency of Ca-based additives follows theorder: Ca(OH)2〉CaO〉CaCO3. With increasing the dosage of Ca(OH)2, the molybdenum retention rate and sulfur-fixing rate rise, butexcessive dosages would consume more acid during leaching process. The appropriate mass ratio of Ca(OH)2 to molybdenumconcentrate is 1:1. When roasted at 650 ℃ for 90 min, the molybdenum retention rate and the sulfur-fixing rate of low-grademolybdenum concentrate reach 100% and 92.92%, respectively, and the dissolution rate of molybdenum achieves 99.12% withcalcines being leached by sulphuric acid. 展开更多
关键词 molybdenum concentrate calcification roasting reaction mechanism thermodynamic analysis phase transformation
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