Collosol of yttrium barium cupper oxygen superconducting film and process for preparing high temp. superconducting film thereof
A technology of high-temperature superconducting thin film and yttrium-barium-copper-oxygen is applied in superconducting/high-conducting conductors, usage of superconducting elements, superconducting devices, etc. It can solve the problems of long preparation process cycle and time-consuming, and achieve easy composition The adjustment and preparation process is simple, and the surface finish is good.
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Embodiment 1
[0028] Dissolve yttrium acetate in methanol, add diethylenetriamine so that the molar ratio of each component is: yttrium acetate:methanol:diethylenetriamine=1:27:1.5, and form solution A after stirring and clarification.
[0029] Dissolve barium acetate in a mixed liquid containing water and trifluoroacetic acid so that barium acetate: water: trifluoroacetic acid = 1:40:3. After stirring and dissolving, the substance obtained after drying at 80°C was redissolved in methanol solution so that the molar ratio Ba 2+ :methanol=1:20, and solution B was obtained after stirring and clarification.
[0030] Dissolve copper acetate in methanol, add a small amount of α-methacrylic acid to make copper acetate:methanol:α-methacrylic acid=1:22:2, and form solution C after slight heating and stirring.
[0031] Mix the above solutions A, B, and C, and stir, so that Y 3+ : Ba 2+ : Cu 2+ =1:2:3.2, forming the required sol.
[0032] Using the sol, a layer of gel film was coated on the singl...
Embodiment 2
[0034] Dissolve yttrium acetate in methanol, add diethylenetriamine so that the molar ratio of each component is: yttrium acetate:methanol:diethylenetriamine=1:25:1.5, and form solution A after stirring and clarification.
[0035] Dissolve barium acetate in a mixed solution of water and trifluoroacetic acid so that barium acetate: water: trifluoroacetic acid = 1:40:3, stir and dissolve, and dry at 75°C to form a viscous glassy substance. and redissolved in methanol solution such that the molar ratio Ba 2+ :methanol=1:16, and solution B was obtained after stirring and clarification.
[0036] Take copper acetate as the raw material, dissolve it in methanol, add a small amount of propionic acid to make copper acetate: methanol: propionic acid = 1:25:3, and form solution C after slight heating and stirring.
[0037] Mix the above three solutions A, B, and C and stir, so that Y 3+ : Ba 2+ : Cu 2+ =1:2:4, forming the required sol. The above-mentioned copper acetate can be repla...
Embodiment 3
[0040] Dissolve yttrium acetate in methanol, add diethylenetriamine so that the molar ratio of each component is: yttrium acetate:methanol:diethylenetriamine=1:20:1.5, and form solution A after stirring and clarification.
[0041] Dissolve barium acetate in a mixed solution of water and trifluoroacetic acid so that barium acetate: water: trifluoroacetic acid = 1:50:4, stir and dissolve, and dry at 75°C to form a viscous glassy substance. and redissolved in methanol solution such that the molar ratio Ba 2+ :methanol=1:15, and solution B was obtained after stirring and clarification.
[0042] Take copper acetate as raw material, dissolve it in ethanol, add a small amount of α-methacrylic acid to make copper acetate:methanol:α-methacrylic acid=1:25:3, and form solution C after slight heating and stirring.
[0043] Mix and stir the above three solutions A, B, C, so that Y 3+ : Ba 2+ : Cu 2+ =1:2:3.4, forming the required sol.
[0044] Using the sol prepared by the above metho...
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