采用光电子能谱分析方法对掺杂 L a2 O3的 Mo粉的性能进行了研究。结果表明 :掺杂 L a(NO3) 3的 Mo O2 粉经过还原处理后 ,Mo粉表面的纳米 L a2 O3微粒可以减小 Mo基体的特征能量损失峰 ,增加 Mo3d光电子谱峰强度 ;由于纳米 L a2 O3粒...采用光电子能谱分析方法对掺杂 L a2 O3的 Mo粉的性能进行了研究。结果表明 :掺杂 L a(NO3) 3的 Mo O2 粉经过还原处理后 ,Mo粉表面的纳米 L a2 O3微粒可以减小 Mo基体的特征能量损失峰 ,增加 Mo3d光电子谱峰强度 ;由于纳米 L a2 O3粒子在金属 Mo的表面及周围对 Mo起到包埋效应 ,减小了 Mo与大气的接触面积 ,从而使展开更多
A new stearic acid method(SAM) has been used to prepare ultrafine K2La2Ti3O10 nanocrystalline. Each state of synthesis process was followed by the use of FT IR analysis. The resulting materials have been characterized...A new stearic acid method(SAM) has been used to prepare ultrafine K2La2Ti3O10 nanocrystalline. Each state of synthesis process was followed by the use of FT IR analysis. The resulting materials have been characterized by means of XRD, TEM, BET surface area analysis. The acid exchanging property of the obtained product was also studied. The experimental results showed that comparing with the product of traditional solid state reaction, the particle size of the K2La2Ti3O10 synthesized by SAM is greatly reduced, BET surface area is high(more than 11.83m2· g- 1) and has different acid exchanging properties. It can be easily exfoliated in 2mol· L- 1 HNO3 solution.展开更多
文摘A new stearic acid method(SAM) has been used to prepare ultrafine K2La2Ti3O10 nanocrystalline. Each state of synthesis process was followed by the use of FT IR analysis. The resulting materials have been characterized by means of XRD, TEM, BET surface area analysis. The acid exchanging property of the obtained product was also studied. The experimental results showed that comparing with the product of traditional solid state reaction, the particle size of the K2La2Ti3O10 synthesized by SAM is greatly reduced, BET surface area is high(more than 11.83m2· g- 1) and has different acid exchanging properties. It can be easily exfoliated in 2mol· L- 1 HNO3 solution.