International Center for Materials Nanoarchitectonics, National Institute for Materials Science, 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan.
Inorg Chem. 2010 Mar 15;49(6):3044-50. doi: 10.1021/ic1000182.
We have designed a new approach to synthesize brookite, i.e., to extract alkali-metal ions from K(0.8)Ti(1.73)Li(0.27)O(4) (KTLO) and to apply simultaneous heat treatment to the remaining lepidocrocite-type layers of TiO(6) octahedra. For the alkali-metal ion extraction and the simultaneous heat treatment, KTLO was heated at 400 degrees C with polytetrafluoroethylene (PTFE) in flowing Ar. PTFE has been found to be an effective agent to extract strongly electropositive alkali-metal ions from KTLO because of the strong electronegativity of F as its component. The product of this reaction consists of a mixture of brookite, K(2)CO(3), LiF, and PTFE derivatives, indicating the complete extraction of K(+) and Li(+) from KTLO and formation of brookite from the lepidocrocite-type layer of TiO(6) octahedra as a template. This brookite has a partial replacement of O(2-) with F(-) and/or slight oxygen deficiency; thus, its color is light-bluish gray. Fully oxidized brookite formation and complete decomposition of PTFE derivatives have been achieved by further heating in flowing air, and coproduced alkali-metal salts have been removed by washing in water. Powder X-ray diffraction, Raman spectroscopy, and chemical analysis results have confirmed that the final brookite product treated at 600 degrees C is single phase, and it is white. The method to extract alkali-metal ions from a crystalline material using PTFE is drastically different from the common methods such as soft-chemical and electrochemical reactions. It is likely that this new synthetic approach is applicable to other layered systems to prepare a diverse family of compounds, including novel metastable ones.
我们设计了一种新的方法来合成板钛矿,即从 K(0.8)Ti(1.73)Li(0.27)O(4) (KTLO) 中提取碱金属离子,并对剩余的锐钛矿型 TiO(6) 八面体层进行同步热处理。为了进行碱金属离子提取和同步热处理,将 KTLO 在 400°C 下与聚四氟乙烯(PTFE)在流动的 Ar 中加热。由于 F 作为其组成部分具有很强的电负性,因此 PTFE 已被发现是一种从 KTLO 中提取强正电性碱金属离子的有效试剂。该反应的产物由板钛矿、K(2)CO(3)、LiF 和 PTFE 衍生物的混合物组成,表明 K(+)和 Li(+)已从 KTLO 中完全提取,锐钛矿型 TiO(6) 八面体层形成板钛矿作为模板。这种板钛矿部分取代了 O(2-)为 F(-)和/或存在轻微的氧缺陷;因此,其颜色呈浅蓝灰色。通过在流动空气中进一步加热,可以实现完全氧化的板钛矿形成和 PTFE 衍生物的完全分解,并用水洗去除共生产生的碱金属盐。粉末 X 射线衍射、拉曼光谱和化学分析结果证实,在 600°C 下处理的最终板钛矿产物为单相,呈白色。使用 PTFE 从结晶材料中提取碱金属离子的方法与软化学和电化学等常见方法有很大不同。这种新的合成方法很可能适用于其他层状体系,以制备包括新型亚稳化合物在内的多种化合物。