首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Slot Die Coating and Conversion of LZO on Rolling Assisted Biaxially Textured Ni-W Substrates With and Without a Very Thin Seed Layer in Low Vacuum
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Slot Die Coating and Conversion of LZO on Rolling Assisted Biaxially Textured Ni-W Substrates With and Without a Very Thin Seed Layer in Low Vacuum

机译:低真空下具有和不具有非常薄的籽晶层的轧制辅助双轴织构Ni-W衬底上的缝模涂布和LZO转换

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Slot die coating and conversion of ${rm La}_{2}{rm Zr}_{2}{rm O}_{7}$ (LZO) buffer layers were performed on rolling assisted biaxially textured Ni-W with and without thin ${rm Y}_{2}{rm O}_{3}$ seed layers. The slot die coating, drying and processing were all performed using reel to-reel systems. The slot die coated LZO precursor films were then reacted under a variety of conditions and the texture and morphology development were characterized using optical microscopy, scanning and transmission electron microscopy and x-ray diffraction. The conversion conditions were optimized to produce the highest degree of texture in the LZO films. This paper will describe the equipment used for depositing the LZO films and describe the texture and morphology of LZO films optimized for supporting the growth of high Ic ($>$300 amps per centimeter width) YBCO superconducting films.
机译:在有或没有轧制辅助双轴织构镍-钨的情况下,进行槽模涂布和$ {rm La} _ {2} {rm Zr} _ {2} {rm O} _ {7} $(LZO)缓冲层的转换$ {rm Y} _ {2} {rm O} _ {3} $薄种子层。狭缝模具的涂覆,干燥和加工均使用卷到卷系统进行。然后将缝模涂布的LZO前体膜在多种条件下反应,并使用光学显微镜,扫描和透射电子显微镜以及X射线衍射对织构和形态发展进行表征。优化了转换条件,以在LZO膜中产生最高的质感。本文将描述用于沉积LZO膜的设备,并描述为支持高Ic(每厘米宽$> 300安培)YBCO超导膜的生长而优化的LZO膜的质地和形态。

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