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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Defect distribution and dissolution morphologies on low-index surfaces of alpha-quartz
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Defect distribution and dissolution morphologies on low-index surfaces of alpha-quartz

机译:低折射率α-石英表面的缺陷分布和溶出形态

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The dissolution of prismatic and rhombohedral quartz surfaces by KOH/H2O solutions was investigated by atomic force microscopy. Rates of dissolution of different classes of surface features (e.g., steps, voids, and dislocation etch pits) were measured. The prismatic surface etched almost two orders of magnitude faster than the rhombohedral surface, mostly due to the difference in the number and the rate of dissolution of extended defects, such as dislocations. Because of the presence of imperfect twin boundaries, defect densities on the prismatic surface were estimated at 50-100 mu m(-2), whereas the rhombohedral surface possessed only similar to 0.5-1.0 mu m(-2), mostly in the form of crystal voids. Crystal voids etched almost one order of magnitude faster on the prismatic surface than on the rhombohedral surface due to differences in the number and the density of steps formed by voids on the different surfaces. In the absence of extended defects, both surfaces underwent step-wise dissolution at similar rates. Average rates of step retreat were comparable on both surfaces (similar to 3-5 nm/h on the prismatic surface and similar to 5-10 nm/h on the rhombohedral surface). Prolonged dissolution left the prismatic surface reshaped to a hill-and-valley morphology, whereas the rhombohedral surface dissolved to form coalescing arrays of oval-shaped etch pits. (c) 2005 Elsevier Inc. All rights reserved.
机译:通过原子力显微镜研究了KOH / H2O溶液对棱柱形和菱形石英表面的溶解。测量了不同类别的表面特征(例如台阶,空隙和位错蚀刻坑)的溶解速率。棱柱形表面蚀刻的速度比菱面体表面快将近两个数量级,这主要是由于扩展缺陷(如位错)的数量和溶解速率的差异所致。由于存在不完美的孪晶边界,棱柱形表面的缺陷密度估计为50-100μm(-2),而菱形面仅具有类似于0.5-1.0μm(-2)的形状,大部分形式晶体空隙。由于在不同表面上形成的台阶的数量和密度的差异,在棱柱形表面上比在菱面体表面上蚀刻的晶体空隙快将近一个数量级。在没有延伸缺陷的情况下,两个表面都以相似的速率逐步溶解。在两个表面上的平均后退速度均相当(在棱柱形表面上近似3-5 nm / h,在菱形面上近似5-10 nm / h)。长时间的溶解使棱柱形表面重塑为丘陵和山谷的形态,而菱面体表面溶解以形成椭圆形蚀刻坑的聚结阵列。 (c)2005 Elsevier Inc.保留所有权利。

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