微波器件阴极用钡锶碳酸钙三元酯的合成技术及电子结构

V. Kapustin, I. Li, N. E. Kozhevnikova, E. F. Khudaigulova
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引用次数: 0

摘要

目标。不同等级的三钡锶碳酸钙被广泛用于在电真空器件的阴极上沉积氧化物涂层。在电真空设备中使用的所有类型的阴极中,氧化物阴极是最常见的,因为它结合了效率、耐用性、在相对较低的温度下运行和相对较低的成本。这项工作的目的是:创造一种合成三重碳酸钡锶钙的技术,其非平衡相组成包括三重碳酸盐和纯碳酸钡相;为这种碳酸盐制定质量控制程序,使其成为微波器件正极材料的组成部分;研究了从正极材料的其他相中掺杂微量杂质对氧化钡晶体电子结构的影响。研究采用精密x射线衍射分析和电子能谱分析。开发了一种从硝酸盐中共沉淀碳酸钡锶钙三重盐的工艺。在最佳的沉淀条件下,可以得到具有非平衡相组成的三重碳酸盐粉末。电子能谱分析表明,在三碳酸盐热处理形成的氧化钡晶体中掺杂钙、锶和镍杂质,对晶体电子结构参数有显著影响。钙和锶对氧化钡与其他两种化学元素的掺杂有协同作用。精确的x射线衍射分析不仅可以有效地控制滴定法合成三碳酸盐过程中形成的三碳酸盐非平衡相组成的质量,还可以有效地控制三碳酸盐合成过程中纳米颗粒的团聚或纳米结构相的再结晶过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Technology of synthesis and electronic structure of triple barium–strontium–calcium carbonates for cathodes of microwave devices
Objectives. Triple barium–strontium–calcium carbonates of various grades are widely used for depositing oxide coatings on cathodes of electrovacuum devices. Of all types of cathodes used in electrovacuum devices, oxide cathodes are among the most common, due to combining efficiency, durability, operation at relatively low temperatures, and a relatively low cost. The aims of this work were to: create a technology for the synthesis of triple barium–strontium–calcium carbonates with nonequilibrium phase compositions that comprise the triple carbonate proper and a pure barium carbonate phase; develop a quality control procedure for such a carbonate for using it as a component of the cathode material for microwave devices; study how the electronic structure of barium oxide crystallites is affected by doping microimpurities from other phases of the cathode material.Methods. The study used precision X-ray diffraction analysis and electron spectroscopy.Results. A technology was developed for the co-precipitation of triple barium–strontium–calcium carbonates from their nitrate salts. Under optimal precipitation conditions, this produces triple carbonate powders with nonequilibrium phase compositions. Electron spectroscopy showed that the parameters of the electronic structure of the crystallites are significantly affected by doping impurities of calcium, strontium, and nickel in barium oxide crystallites formed by heat treatment of triple carbonates.Conclusions. Calcium and strontium have a synergistic effect on the doping of barium oxide with the two other chemical elements. As well as efficiently controlling the quality of the nonequilibrium phase composition of triple carbonates, which is formed during the synthesis of triple carbonates by the titration method, precision X-ray diffraction analysis can be used to efficiently control the processes of agglomeration of nanoparticles or recrystallization of nanostructured phases formed during the synthesis of triple carbonates.
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