Ihli Johannes, Levenstein Mark A, Kim Yi-Yeoun, Wakonig Klaus, Ning Yin, Tatani Aikaterini, Kulak Alexander N, Green David C, Holler Mirko, Armes Steven P, Meldrum Fiona C
Paul Scherrer Institut , 5232 Villigen , Switzerland . Email:
School of Mechanical Engineering , University of Leeds , Leeds , LS2 9JT , UK.
Chem Sci. 2019 Nov 15;11(2):355-363. doi: 10.1039/c9sc04670d. eCollection 2020 Jan 14.
Single crystals containing nanoparticles represent a unique class of nanocomposites whose properties are defined by both their compositions and the structural organization of the dispersed phase in the crystalline host. Yet, there is still a poor understanding of the relationship between the synthesis conditions and the structures of these materials. Here ptychographic X-ray computed tomography is used to visualize the three-dimensional structures of two nanocomposite crystals - single crystals of calcite occluding diblock copolymer worms and vesicles. This provides unique information about the distribution of the copolymer nano-objects within entire, micron-sized crystals with nanometer spatial resolution and reveals how occlusion is governed by factors including the supersaturation and calcium concentration. Both nanocomposite crystals are seen to exhibit zoning effects that are governed by the solution composition and interactions of the additives with specific steps on the crystal surface. Additionally, the size and shape of the occluded vesicles varies according to their location within the crystal, and therefore the solution composition at the time of occlusion. This work contributes to our understanding of the factors that govern nanoparticle occlusion within crystalline materials, where this will ultimately inform the design of next generation nanocomposite materials with specific structure/property relationships.
包含纳米颗粒的单晶代表了一类独特的纳米复合材料,其性质由它们的组成以及晶态主体中分散相的结构组织所决定。然而,目前对于这些材料的合成条件与结构之间的关系仍了解不足。在此,叠层X射线计算机断层扫描被用于可视化两种纳米复合晶体的三维结构——包埋二嵌段共聚物蠕虫和囊泡的方解石单晶。这提供了关于共聚物纳米物体在整个微米级晶体中分布的独特信息,具有纳米级空间分辨率,并揭示了包埋作用是如何受诸如过饱和度和钙浓度等因素控制的。两种纳米复合晶体均表现出受溶液组成以及添加剂与晶体表面特定台阶相互作用所支配的分区效应。此外,被包埋囊泡的大小和形状根据其在晶体内的位置而变化,因而也随包埋时的溶液组成而改变。这项工作有助于我们理解控制晶体材料中纳米颗粒包埋的因素,最终将为具有特定结构/性质关系的下一代纳米复合材料的设计提供依据。