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通过能量不稳定的叠氮化铜前驱体溶剂热合成纳米晶氮化铜。

Solvothermal synthesis of nanocrystalline copper nitride from an energetically unstable copper azide precursor.

作者信息

Choi Jonglak, Gillan Edward G

机构信息

Department of Chemistry and the Optical Science and Technology Center, University of Iowa, Iowa City, Iowa 52242-1294, USA.

出版信息

Inorg Chem. 2005 Oct 17;44(21):7385-93. doi: 10.1021/ic050497j.

Abstract

Nonaqueous solvothermal chemical reactions have found extensive utility in the growth of inorganic non-oxide materials. This report describes the successful use of organic solvothermal environments to synthesize energetically unstable copper azide precursors that are then decomposed in situ to crystalline metastable copper nitride at temperatures below 200 degrees C. A comparison of Cu3N products formed from nonpolar (toluene) and coordinating (THF) solvents is described. The cubic Cu3N products are nanocrystalline with aggregated particle-like extended structures and were characterized by X-ray diffraction, electron microscopy, IR spectroscopy, and mass spectrometry. The thermal stability and composition of Cu3N was examined by thermogravimetric analysis and bulk elemental analysis. The particle surfaces contain bound residual solvent species that can be removed by heating. The poorly coordinating solvent, toluene, lead to a more crystalline product containing less residual organic content. Benchtop reactions were performed to follow the temporal formation and decomposition of metal azide intermediates. These studies provided more detailed information on the progression of metal azide to metal nitride materials in a solvothermal environment.

摘要

非水溶剂热化学反应在无机非氧化物材料的生长中具有广泛的应用。本报告描述了成功利用有机溶剂热环境合成能量不稳定的叠氮化铜前体,然后在低于200摄氏度的温度下原位分解为结晶亚稳氮化铜。描述了由非极性(甲苯)和配位(四氢呋喃)溶剂形成的Cu3N产物的比较。立方Cu3N产物为纳米晶体,具有聚集的颗粒状延伸结构,并通过X射线衍射、电子显微镜、红外光谱和质谱进行了表征。通过热重分析和体元素分析研究了Cu3N的热稳定性和组成。颗粒表面含有可通过加热去除的结合残留溶剂物种。配位性差的溶剂甲苯导致形成的产物结晶度更高,残留有机含量更低。进行了台式反应以跟踪金属叠氮化物中间体的时间形成和分解。这些研究提供了关于溶剂热环境中金属叠氮化物向金属氮化物材料转化过程的更详细信息。

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