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Microwave dielectric materials synthesized by inverse micro-emulsion process

机译:反相微乳液法合成微波介电材料

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Single-phase Ba2Ti9O20 materials, which are free from secondary phases have been successfully synthesized by using inverse micro-emulsion process. Although the BaTi5O11 phases were resulted preferentially when the as-prepared powders were calcined (800-1000 degreesC, 4h), they can be converted into Hollandite structure (Ba2Ti9O20) after sintering the samples at 1200-1300degreesC (4h). The prime factor facilitating the formation of Hollandite phases in micro-emulsion process is presumably the atomic scale mixing of cationic species with proper proportion. Dielectric constant measured at 7 GHz varies insignificantly with calcination and sintering conditions for the sample possessing a density higher than 94% T.D. In contrast, the Q x f value increases with the density of the samples provided that no abnormal grain growth phenomenon has occurred. The best microwave dielectric properties obtained are K = 39 and Q x f = 22,000, which corresponds to the 1250 degreesC x 4 h sintered samples prepared from 900 degreesC-calcined. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 7]
机译:采用反相微乳液法成功地合成了不含二次相的单相Ba2Ti9O20材料。尽管在制备好的粉末(800-1000摄氏度,4h)煅烧时优先生成BaTi5O11相,但是在1200-1300摄氏度(4h)烧结样品后,它们可以转化为荷兰沸石结构(Ba2Ti9O20)。促进微乳化过程中形成荷兰石相的主要因素可能是阳离子物种按适当比例进行原子级混合。对于密度高于94%T.D的样品,在7 GHz下测得的介电常数随煅烧和烧结条件的变化很小。相反,如果未发生异常晶粒长大现象,则Q x f值随样品的密度而增加。获得的最佳微波介电性能为K = 39和Q x f = 22,000,这对应于900℃煅烧制备的1250℃x 4 h烧结样品。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:7]

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