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Thermal decomposition of Co-Al layered double hydroxide: Identification of precursor to oxide with spinel structure

机译:Co-Al层状双氢氧化物的热分解:尖晶石结构氧化物前体的鉴定

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摘要

The layered double hydroxide (LDH) of Co with Al decomposes to yield an oxide residue with the spinel structure below 250°C. The decomposition reaction is preceded by the formation of an intermediate hydroxide in which the metal hydroxide layers are regularly stacked about the c-crystallographic axis, but the layers themselves are aperiodic. Aperiodicity is modeled by locating randomly chosen Co2+ ions in tetrahedral sites in the interlayer region. This phase is characterized by a single strong basal reflection in its powder diffraction pattern. All other reflections are extinguished on account of (i) turbostratic disorder which destroys all hkl reflections and (ii) layer aperiodicity, which destroys all two dimensional hk reflections. Given its topochemical relationship with the spinel structure, such an intermediate is a necessary precursor to spinel formation.
机译:Co与Al的层状双氢氧化物(LDH)分解产生尖晶石结构低于250°C的氧化物残留物。分解反应之前形成中间氢氧化物,其中金属氢氧化物层规则地围绕c晶轴堆叠,但层本身是非周期性的。通过在层间区域的四面体位置定位随机选择的Co 2 + 离子来模拟非周期性。该相的特征在于其粉末衍射图样中的单个强基反射。由于(i)破坏了所有hkl反射的涡轮层紊乱和(ii)破坏了所有二维hk反射的层非周期性,所有其他反射都被熄灭了。考虑到其与尖晶石结构的拓扑化学关系,这种中间体是尖晶石形成的必要前体。

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