氮化物的钠通量合成

IF 9.1 2区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
Hisanori Yamane , Francis J. DiSalvo
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引用次数: 21

摘要

综述了利用Na助熔剂合成固态氮化物的研究进展。Na的作用和作用是溶解含氮的多原子物质,将晶体生长温度降低到所得产物的分解温度以下。许多新的三元和四元氮化物以单晶形式合成,其尺寸至少大于x射线衍射分析所需的尺寸。典型的是含有N、Si、Ge、Ga和/或一些过渡金属元素的孤立的和扩展的阴离子基团。它们通常被碱土原子包围,是最常见的氮化物。还得到了由金属态氮阴离子和锌多阴离子组成的化合物。描述了每一种化合物的结构特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sodium flux synthesis of nitrides

Studies of the synthesis of solid state nitrides using a Na flux are reviewed. The role and effect of Na is to solubilize polyatomic species containing nitrogen, and to lower the crystal growth temperature below the decomposition temperature of the obtained product(s). Many new ternary and quaternary nitrides have been synthesized in single crystal forms with sizes at least large enough (or larger) than is needed for structure analysis by X-ray diffraction. Isolated and extended anionic groups typically containing N and Si, Ge, Ga, and/or some transition metal elements are typical. These are usually surrounded by alkaline-earth atoms and are the most common of such nitrides. Compounds composed of nitridometallate anions and Zintl polyanions are also obtained. The structural features of each of these compounds are described.

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来源期刊
Progress in Solid State Chemistry
Progress in Solid State Chemistry 化学-无机化学与核化学
CiteScore
14.10
自引率
3.30%
发文量
12
期刊介绍: Progress in Solid State Chemistry offers critical reviews and specialized articles written by leading experts in the field, providing a comprehensive view of solid-state chemistry. It addresses the challenge of dispersed literature by offering up-to-date assessments of research progress and recent developments. Emphasis is placed on the relationship between physical properties and structural chemistry, particularly imperfections like vacancies and dislocations. The reviews published in Progress in Solid State Chemistry emphasize critical evaluation of the field, along with indications of current problems and future directions. Papers are not intended to be bibliographic in nature but rather to inform a broad range of readers in an inherently multidisciplinary field by providing expert treatises oriented both towards specialists in different areas of the solid state and towards nonspecialists. The authorship is international, and the subject matter will be of interest to chemists, materials scientists, physicists, metallurgists, crystallographers, ceramists, and engineers interested in the solid state.
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