首页> 外文期刊>Journal of Crystal Growth >Extension of the two-phase field in the system 2(ZnS)(x)(CuInS2)(1-x) and structural relationship between the tetragonal and cubic phase
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Extension of the two-phase field in the system 2(ZnS)(x)(CuInS2)(1-x) and structural relationship between the tetragonal and cubic phase

机译:2(ZnS)(x)(CuInS2)(1-x)系统中两相场的扩展以及四方相和立方相的结构关系

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The two-phase field in the system 2(ZnS)(x)(CuInS2)(1-x), where cubic and tetragonal mixed crystals coexist, covers at room temperature the compositional range 0.10 <= x <= 0.41. For 0 <= x < 0.10 alloys with tetragonal structure only exist. Above 41 mol% 2(ZnS) exclusively solid solutions of 2(ZnS)(x)(CuInS2)(1-x) having cubic structure without any cation ordering are stable. Equilibrium and kinetic experiments enabled to check the effect of temperature and cooling rate on the chemical compositions of both phases and on the growth kinetics of domains. The compositions of the different phases and their structural relationship were measured by EDX in a transmission electron microscope (TEM) and by selected area diffraction, TEM and HRTEM. After nucleation of the discus-shaped domains, their growth obeys t(1/2), i.e. it is controlled by diffusion. The short extension of the domains lies always parallel to their tetragonal C-axis. They are simultaneously arranged on the (100),(010) and (001) planes within the cubic matrix. While slow cooling with < 2 K/h approximates the equilibrium at room temperature, long-time annealing experiments at higher temperatures followed by rapid quenching enabled to determine the chemical compositions at the annealing temperature. If the samples are far away from the equilibrium state within both phases cation ordering like the stannite-type occurs. The more both phases approach the equilibrium the more they become disordered. (c) 2005 Elsevier B.V. All rights reserved.
机译:立方和四方混合晶体共存的系统2(ZnS)(x)(CuInS2)(1-x)中的两相场在室温下覆盖的成分范围为0.10 <= x <= 0.41。对于0 <= x <0.10,仅存在具有四方结构的合金。高于41mol%的具有立方结构且没有任何阳离子有序的2(ZnS)(x)(CuInS 2)(1-x)的仅2(ZnS)固溶体是稳定的。平衡和动力学实验能够检查温度和冷却速率对两相化学成分和畴生长动力学的影响。通过在透射电子显微镜(TEM)中的EDX以及通过选择的区域衍射,TEM和HRTEM来测量不同相的组成及其结构关系。在铁饼形区域成核后,它们的生长服从t(1/2),即受扩散控制。域的短延伸始终平行于其四边形C轴。它们同时排列在立方矩阵内的(100),(010)和(001)平面上。当<2 K / h的缓慢冷却近似于室温下的平衡时,在较高温度下进行长时间退火实验,然后进行快速淬火即可确定退火温度下的化学成分。如果样品在两个相中都远离平衡状态,则将出现类似锡矿型的阳离子排序。两个阶段越接近平衡,它们变得越无序。 (c)2005 Elsevier B.V.保留所有权利。

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