寻找 Y-Ba-Cu-O 家族中的新相位

Danijel Djurek
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引用次数: 0

摘要

为了寻找 Y-Ba-Cu-O 家族中可能存在的残余次要相,我们在抽真空单元中对 Y2O3 + BaCO3 + CuO 的粉末混合物以及超导化合物 YBa2Cu3O7-x 单独进行了高温处理。YBa2Cu3O7-x 被还原成 YBa2Cu3O5 是通过使用特殊的自制 Taconis-Knudsen 真空设备进行的。随后的氧掺杂将生成的绝缘体 YBa2Cu3O5 转化为半导体或金属 YBa2Cu3O5+x (0 < x < 0.3)。除 YBa2Cu3O5 外,在惰性气体环境下加热至 818 ℃ 的粉末混合物 1/2 Y2O3 + 2BaCO3 + 6Cu2O 中还发现了 0.05 体积百分比的次要脱辉石相 Y2Cu2O4。制备绝缘块状三角辉石样品的尝试获得成功,随后通过氧掺杂产生了新的金属相。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Search for Novel Phases in Y-Ba-Cu-O Family
In order to search for possible residual minor phases in the Y-Ba-Cu-O family, powdered mixtures of Y2O3 + BaCO3 + CuO and, independently, superconducting compound YBa2Cu3O7−x have been treated in evacuated cells and elevated temperatures. YBa2Cu3O7−x was reduced to YBa2Cu3O5 by use of the special home-designed Taconis–Knudsen vacuum device. Subsequent doping by oxygen converts produced insulator YBa2Cu3O5 to semiconductor or metal YBa2Cu3O5+x (0 < x < 0.3). In addition to YBa2Cu3O5, 0.05 volume percent of the minor delafossite phase Y2Cu2O4 was spotted in the powder mixture 1/2 Y2O3 + 2BaCO3 + 6Cu2O, heated up to 818 °C in an inert gas atmosphere. An attempt to prepare the insulating bulk delafossite samples was successful, and subsequent doping by oxygen produced novel metallic phases.
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