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Defect generation of anatase nanocondensates via coalescence and transformation from dense fluorite-type TiO_2

机译:通过聚结和由致密萤石型TiO_2转变而生成锐钛矿型纳米缩合物的缺陷

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摘要

The anatase nanocondensates produced by energetic pulse laser ablation on Ti target under oxygen background gas have been observed by transmission electron microscopy. They were found to coalesce in approximately parallel orientation on the (001) plane to form dislocations and in twin orientation on the (112) plane to form faulty and twinned crystals. The anatase phase (denoted as a) was also derived from the dense fluorite-type (denoted as f) condensates by a martensitic-type transformation to form twin variants following the crystallographic relationship < 001 >_f ‖[100]_a with a habit plane close to {100}_f‖(001)_a for a beneficial lower interfacial strain energy. The f-a transformation route of TiO_2 can be rationalized by a metastable phase change in terms of the intersection of the internal energy versus cell volume curves of the polymorphs.
机译:通过透射电子显微镜观察到了在氧气背景气体下,高能脉冲激光烧蚀钛靶材上产生的锐钛矿型纳米缩合物。发现它们在(001)平面上以近似平行的方向聚结形成位错,在(112)平面上以双取向的方向聚结形成有缺陷的孪晶。锐钛矿相(表示为a)也由致密萤石型(表示为f)的凝析物通过马氏体型转变衍生而来,形成具有晶型关系<001> _f‖[100] _a的孪晶变体接近{100} _f′(001)_a可获得较低的界面应变能。 TiO_2的f-a转化途径可通过亚稳态相变来合理化,即多晶型物的内部能量与细胞体积曲线的交点。

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