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Coalescence of the crystallites under hydrothermal conditions (II)— The morphology and stability energy calculation of cuprite

机译:水热条件下微晶的聚结(II)—铜矿的形貌和稳定能计算

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Cuprite (Cu_2O) particles are synthesized by hydrothermal method. Most crystalline particles have long column morphology. Particles which are regarded as assembling of the crystallites in definite directions are observed. The typical example is the particles formed by assembling six columns in three perpendicular directions. The cone surfaces are visible at the tops of the columns. The results revealed that the coalescence of the crystallites did happen under hydrothermal conditions in which the crystallite connected with other crystallite on certain structure compatible surfaces to form a crystalline particle with a special morphology. This phenomenon is called the second kind of coalescence. The Cu_2O structure unit is determined by its crystal structure. It is concluded that the tetragonal prism and three tetragonal prism-like growth units are the favorable units after stability energy calculation was performed on different kinds of growth units. It is believed that the first kind of coalescence exists commonly. The second kind of coalescence is unlikely to occur for all crystallites under hydrothermal conditions. The occurrence is dependent on the crystal structure.
机译:通过水热法合成了铜盐(Cu_2O)颗粒。大多数晶体颗粒具有长柱形态。观察到被认为是在确定方向上聚集的颗粒。典型示例是通过在三个垂直方向上组合六列而形成的粒子。圆锥表面在列的顶部可见。结果表明,在水热条件下确实发生了微晶的聚结,在这种条件下,微晶与其他微晶在某些结构相容的表面上连接形成了具有特殊形态的晶体颗粒。这种现象称为第二种合并。 Cu_2O结构单元由其晶体结构确定。得出结论:在对不同种类的生长单元进行稳定能计算后,四棱柱和三个四棱柱状生长单元是有利的单元。据信第一类合并是普遍存在的。在水热条件下,所有微晶都不太可能发生第二种聚结。发生取决于晶体结构。

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