...
【24h】

Growth-step-selective incorporation of boron on the calcite surface

机译:在方解石表面上选择生长步骤掺入硼

获取原文
获取原文并翻译 | 示例

摘要

Ion microprobe analyses of as-grown {101-bar4} faces of B-doped calcite single crystals show that boron oxyanions are incorporated differentially between nonequivalent vicinal faces that compose spiral growth hillocks. The step-selective incorporation pattern for boron anions is opposite to that observed for the tetrahedral anions SO_4~(2-) and SeO_4~(2-). Independent work has shown that a tetrahedrally coordinated boron species is preferentially incorporated at the surface during growth, yet the boron in the bulk calcite is predominantly trigonally coordinated. Hence, there is a change in nearest-neighbor coordination of boron at the surface during incorporation. A possible explanation for the step-selective incorporation of boron lies in a surface-site control over the mechanism or rate of this coordination change. The findings demonstrate that multiple, structurally distinct surface anion sites exist on calcite {101-bar4} faces, and inherent differences in these sites influence element incorporation and possibly surface kinetics. This behavior parallels the known differences for incorporation among surface cation sites and further confirms that trace and minor element partitioning is strongly affected by the structural aspects of mineral surfaces. Such site selectivity and associated effects on potential coordination changes may be intrinsic to crystal growth and impurity incorporation.
机译:B掺杂方解石单晶的{101-bar4}晶面生长的离子探针分析表明,含氧氧阴离子以不同的方式结合在组成螺旋形生长小丘的不等邻面之间。硼阴离子的分步选择结合模式与四面体阴离子SO_4〜(2-)和SeO_4〜(2-)观察到的相反。独立研究表明,在生长过程中,优先在表面结合了四面体配位的硼物种,而块状方解石中的硼主要是三角配位的。因此,在结合过程中,表面处硼的最近邻配位发生了变化。硼逐步掺入的一种可能解释是对这种配位变化的机理或速率的表面现场控制。研究结果表明,方解石{101-bar4}面上存在多个结构上不同的表面阴离子位点,这些位点的固有差异影响元素的掺入并可能影响表面动力学。这种行为与已知的表面阳离子位点之间的差异相似,并进一步证实了痕量元素和次要元素的分配受到矿物表面结构方面的强烈影响。这种位点选择性和对潜在配位变化的相关影响可能是晶体生长和杂质结合所固有的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号