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Synthesis and characterization of CaRuO3 and SrRuO3 for resistor paste application

机译:CaRuO3和SrRuO3的合成与表征

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Resistors are used in Hybrid Micro Circuits (HMC) are essentially cermet composites consisting of an intimate mixture of an insulating phase ( the glass binder or glass frit) and suitable conducting phase, the relative proportions of which to a greater degree, determine the nominal resistivity of the resultant resistor paste. In this paper, we report resistor pastes formulated by using ruthenium based perovskites of Ca and Sr. Though the ruthenates of alkaline earth elements (Ca and Sr) have high metallic conductivity (28 - 300 muOmega cm) and have been extensively used in superconducting and ferroelectric systems, their usage in thick film resistor pastes has rarely been reported.Ca and Sr ruthenates were prepared by air - heating the physical admixtures of respective carbonates of Ca/Sr and RuO2 at three different temperatures, viz., 500, 800 and 900degreesC. In each case, heating was carried out for 15 h. The resultant powders were characterized by TGA/DTA, SEM-EDX and XRD techniques. The solid-state reactions were found to occur between 700 - 800degreesC. But the powder, thus obtained, contained certain amount of carbonate and hence the powders were heated again at 900degreesC for 15 h to eliminate detrimental effect of carbonate in resistor paste. The microstructural studies of powders revealed that the average particle size is around 200 - 400 nm. The resistor paste was formulated by using powder admixtures heated at two different temperatures, viz., 800 and 900degreesC. In this paper, we are presenting the preliminary account on synthesis and physico-chemcial, electrical and microstructural properties of powders and fired TFRs. (C) 2005 Springer Science + Business Media, Inc.
机译:混合微电路(HMC)中使用的电阻器基本上是金属陶瓷复合材料,由绝缘相(玻璃粘合剂或玻璃粉)和合适的导电相的紧密混合物组成,其相对比例在更大程度上决定了标称电阻率所产生的电阻器浆料的百分比。在本文中,我们报道了使用钌基钙和钙的钙钛矿配制的电阻浆料,尽管碱土金属(钙和锶)的钌酸盐具有较高的金属电导率(28-300μOmegacm),并已广泛用于超导和铁电体系在厚膜电阻糊剂中的使用情况鲜有报道.Ca和Sr钌酸盐是通过在三种不同的温度(即500、800和900°C)下加热空气中制备的Ca / Sr和RuO2碳酸盐的物理混合物而制得的。在每种情况下,加热进行15小时。通过TGA / DTA,SEM-EDX和XRD技术对所得粉末进行表征。发现固态反应在700-800℃之间发生。但是,如此获得的粉末含有一定量的碳酸盐,因此将粉末再次在900摄氏度下加热15小时,以消除碳酸盐对电阻糊剂的不利影响。粉末的微观结构研究表明,平均粒径约为200-400 nm。通过使用在两种不同温度(即800和900摄氏度)下加热的粉末混合物配制电阻器浆料。在本文中,我们介绍了有关粉末和焙烧TFR的合成及理化,电学和微观结构性质的初步资料。 (C)2005年Springer Science + Business Media,Inc.

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