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Solid state synthesis of nano-boehmite-derived CuAlO_2 powder and processing of the ceramics

机译:纳米勃姆石衍生的CuAlO_2粉末的固相合成及陶瓷加工

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摘要

The delafossite CuAlO_2 powder was prepared from the nano-boehmite AlOOH-xH_2O and Cu_2O by the solid state synthesis at 1100 C in argon. The inherently slow solid state reaction was accelerated by introducing rod-like boehmile nano-particles which fully covered the 1 fim sized Cu_2O particles in the reactant mixture, and decomposition of the nano-boehmite upon calcination. In contrast, the reaction between the CU_2O and Al_2O_3, introduced as a reference, resulted in mixed phases under the same experimental conditions. Sintering of the nano-boehmite derived CuAlO_2 powder compact at 1100 °C for 2 h in air resulted in the delafossite ceramic with 86% of theoretical density, without any impurities detectable by X-ray diffraction analysis. The analysis of the microstructure by scanning electron microscopy confirmed that the bulk of the sintered sample was delafossite phase with uniformly distributed porosity, with only traces of Cu-rich impurities at the surface.
机译:纳米水铝石AlOOH-xH_2O和Cu_2O在1100℃下于氩气中固相合成,制备了铜铁矿CuAlO_2粉末。通过引入完全覆盖反应混合物中1 fim尺寸的Cu_2O颗粒的棒状Boehmile纳米颗粒,并在煅烧时分解纳米勃姆石,可以加快固有的缓慢固态反应。相反,作为参考引入的CU_2O和Al_2O_3之间的反应在相同的实验条件下产生了混合相。纳米勃姆石衍生的CuAlO_2粉末压块在空气中于1100°C烧结2 h,得到的铜铁矿陶瓷的理论密度为86%,而X射线衍射分析没有发现任何杂质。通过扫描电子显微镜对微观结构的分析证实,烧结样品的大部分为铜铁矿相,孔隙率均匀分布,表面仅存在痕量的富铜杂质。

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