...
首页> 外文期刊>Clays and clay minerals >NATIVE MORPHOLOGY OF HYDRATED SPHEROIDAL HALLOYSITE OBSERVED BY ENVIRONMENTAL TRANSMISSION ELECTRON MICROSCOPY
【24h】

NATIVE MORPHOLOGY OF HYDRATED SPHEROIDAL HALLOYSITE OBSERVED BY ENVIRONMENTAL TRANSMISSION ELECTRON MICROSCOPY

机译:环境透射电子显微镜观察的水合球形脂质体的天然形态

获取原文
获取原文并翻译 | 示例

摘要

Natural mineral materials such as tabular and spheroidal halloysites have recently been suggested as candidates for intercalating metal ions or organic molecules. Their potential use as nanoadsorbents is related to their porous structure and water content. Although the two morphologies can coexist in natural deposits, spheroidal halloysites remain poorly characterized whereas much literature exists on tubular halloysites. The present study investigates the native morphology, internal porous structure, and behavior upon dehydration of spheroidal halloysite from Opotiki (New Zealand). This mineral was characterized in its natural hydrated state using a transmission electron microscope equipped with an environmental cell (EC-TEM). The sample was placed in a sealed block in which water vapor-saturated air circulated at a pressure of 30 Torr. The observed particles consisted of almost complete spheroids displaying polyhedral external surfaces. 1: 1 layers stack concentrically as a pore-free, onion-like structure. The dynamic processes of dehydration created by slow depressurization of the cell resulted in a decrease in the layer-to-layer distance (d(001)) from similar to 10 angstrom to similar to 7 angstrom due to the loss of interlayer water molecules. Irreversible formation of spurious ` internal pores' was recorded during this process. These pores were not indigenous to the hydrated 10 angstrom halloysite and resulted from the collapse of the native layers. They cannot account for the physical chemical properties of spheroidal halloysite. Spheroidal halloysites would have a lower propensity for intercalating ions or molecules than tubular halloysites. Isolated facets were also observed in high-resolution-TEM and displayed a pseudo-hexagonal morphology. The three-dimensional microstructure of the spheroid appeared bent along the three pseudo equivalent yi directions of the kaolinite-like single layers. An analogy with polyhedral serpentine has allowed the proposal of a formation process of hydrated spheroidal halloysite triggered by enrichment in divalent ions in the growth system.
机译:近年来,天然矿物材料,例如板状和球形的埃洛石,已被建议用作嵌入金属离子或有机分子的候选材料。它们作为纳米吸附剂的潜在用途与其多孔结构和水含量有关。尽管两种形态可以共存于自然沉积物中,但球形埃洛石的特征仍然很差,而关于管状埃洛石的文献很多。本研究调查了来自Opotiki(新西兰)的球形埃洛石脱水后的天然形态,内部多孔结构和行为。使用配备有环境池(EC-TEM)的透射电子显微镜对该矿物以其天然水合状态进行了表征。将样品放置在密封的试块中,使水蒸气饱和的空气在30 Torr的压力下循环。观察到的粒子由显示多面体外表面的几乎完整的球体组成。 1:1层同心堆叠为无孔洋葱状结构。由于层间水分子的损失,细胞缓慢降压产生的动态脱水过程导致层间距离(d(001))从相似的10埃减小到相似的7埃。在此过程中记录了伪造的“内部孔”的不可逆形成。这些孔不是水合的10埃埃洛石的固有孔,而是由天然层的塌陷造成的。它们不能解释球状埃洛石的物理化学性质。球状埃洛石比管状埃洛石具有更低的离子或分子插入倾向。还可以在高分辨率TEM中观察到孤立的小面,并显示出伪六边形的形态。球状体的三维微观结构沿高岭石状单层的三个假等效yi方向弯曲。与多面体蛇纹石的类比允许提出水合球状埃洛石的形成过程,该过程由生长系统中二价离子的富集触发。

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