期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
温度对碳热还原/氮化法合成氮化硅的影响 被引量:3
1
作者 万小涵 张广清 +1 位作者 Oleg Ostrovski Hal Aral 《中国工程科学》 北大核心 2015年第1期62-66,共5页
碳热还原/氮化合成Si3N4在1300~1600℃下N2或N2-H2混合气中进行。反应物由非晶SiO2与C粉以1∶4.5摩尔比混合、压片。产生的CO由红外传感器监测,样品中氧、氮、碳含量由LECO元素分析仪测得,混合物各相由X射线衍射(XRD)检测。SiO2还... 碳热还原/氮化合成Si3N4在1300~1600℃下N2或N2-H2混合气中进行。反应物由非晶SiO2与C粉以1∶4.5摩尔比混合、压片。产生的CO由红外传感器监测,样品中氧、氮、碳含量由LECO元素分析仪测得,混合物各相由X射线衍射(XRD)检测。SiO2还原反应在1300℃以下开始,速率随温度升高增大;温度高于1570℃时,速率因反应物表面被生成物覆盖降低。由于还原产物CO平衡分压差别小,选择生成Si3N4或SiC的临界温度不明显。碳热还原/氮化法合成氮化硅的原理需进一步探讨。 展开更多
关键词 碳热还原/氮化法 临界温度 生成物选择性 CO平衡分压
在线阅读 下载PDF
Mechanism for Hydrothermal-carbothermal Synthesis of AlN Nanopowders
2
作者 FENG Guanzheng YANG Jian +3 位作者 ZHOU Du CHEN Qiming XU Wentao ZHOU Youfu 《无机材料学报》 北大核心 2025年第1期104-110,I0009-I0011,共10页
Currently,the carbothermal reduction-nitridation(CRN)process is the predominant method for preparing aluminum nitride(AlN)powder.Although AlN powder prepared by CRN process exhibits high purity and excellent sintering... Currently,the carbothermal reduction-nitridation(CRN)process is the predominant method for preparing aluminum nitride(AlN)powder.Although AlN powder prepared by CRN process exhibits high purity and excellent sintering activity,it also presents challenges such as the necessity for high reaction temperatures and difficulties in achieving uniform mixing of its raw materials.This study presents a comprehensive investigation into preparation process of AlN nanopowders using a combination of hydrothermal synthesis and CRN.In the hydrothermal reaction,a homogeneous composite precursor consisting of carbon and boehmite(γ-AlOOH)is synthesized at 200℃using aluminum nitrate as the aluminum source,sucrose as the carbon source,and urea as the precipitant.During the hydrothermal process,the precursor develops a core-shell structure,with boehmite tightly coated with carbon(γ-AlOOH@C)due to electrostatic attraction.Compared with conventional precursor,the hydrothermal hybrid offers many advantages,such as ultrafine particles,uniform particle size distribution,good dispersion,high reactivity,and environmental friendliness.The carbon shell enhances thermodynamic stability of γ-Al_(2)O_(3) compared to the corundum phase(α-Al_(2)O_(3))by preventing the loss of the surface area in alumina.This stability enables γ-Al_(2)O_(3) to maintain high reactivity during CRN process,which initiates at 1300℃,and concludes at 1400℃.The underlying mechanisms are substantiated through experiments and thermodynamic calculations.This research provides a robust theoretical and experimental foundation for the hydrothermal combined carbothermal preparation of non-oxide ceramic nanopowders. 展开更多
关键词 aluminum nitride carbothermal reduction-nitridation MECHANISM hydrothermal synthesis PRECURSOR
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部