Zhang Haoran, Li Mengshuo, Zhou Ze, Shen Liming, Bao Ningzhong
State Key Laboratory of Material-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing 210009, China.
Materials (Basel). 2019 May 14;12(10):1577. doi: 10.3390/ma12101577.
Titanates materials have attracted considerable interest due to their unusual functional and structural properties for many applications such as high-performance composites, devices, etc. Thus, the development of a large-scale synthesis method for preparing high-quality titanates at a low cost is desired. In this study, a series of quaternary titanates including KMgTiO, NaMgTiO, NaFeTiO, NaFeTiO, and KFeTiO are synthesized by a simple molten salt method using inexpensive salts of KCl and NaCl. The starting materials, intermediate products, final products, and their transformations were studied by using TG-DSC, XRD, SEM, and EDS. The results show that the grain size, morphology, and chemical composition of the synthesized quaternary titanates can be controlled simply by varying the experimental conditions. The molar ratio of mixed molten salts is critical to the morphology of products. When KCl:NaCl = 3:1, the morphology of KMgTiO changes from platelet to board and then bar-like by increasing the molar ratio of molten salt (KCl-NaCl) to raw materials from 0.7 to 2.5. NaFeTiO needles and NaFeTiO platelets are obtained when the molar ratio of molten salt (NaCl) to raw materials is 4. Pure phase of NaMgTiO and KFeTiO are also observed. The formation and growth mechanisms of both potassium magnesium titanates and sodium iron titanates are discussed based on the characterization results.
钛酸盐材料因其独特的功能和结构特性在许多应用中备受关注,如高性能复合材料、器件等。因此,人们期望开发一种低成本大规模制备高质量钛酸盐的合成方法。在本研究中,通过使用廉价的KCl和NaCl盐,采用简单的熔盐法合成了一系列四元钛酸盐,包括KMgTiO、NaMgTiO、NaFeTiO、NaFeTiO和KFeTiO。利用TG-DSC、XRD、SEM和EDS对起始原料、中间产物、最终产物及其转变过程进行了研究。结果表明,通过改变实验条件可以简单地控制合成的四元钛酸盐的晶粒尺寸、形貌和化学成分。混合熔盐的摩尔比对产物的形貌至关重要。当KCl:NaCl = 3:1时,通过将熔盐(KCl-NaCl)与原料的摩尔比从0.7增加到2.5,KMgTiO的形貌从片状变为板状,然后变为棒状。当熔盐(NaCl)与原料的摩尔比为4时,可得到NaFeTiO针状晶体和NaFeTiO片状晶体。同时也观察到了NaMgTiO和KFeTiO的纯相。基于表征结果讨论了钾镁钛酸盐和钠铁钛酸盐的形成和生长机制。