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首页> 外文期刊>Nanoscale >Understanding ZIF particle chemical etching dynamics and morphology manipulation: in situ liquid phase electron microscopy and 3D electron tomography application
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Understanding ZIF particle chemical etching dynamics and morphology manipulation: in situ liquid phase electron microscopy and 3D electron tomography application

机译:了解ZIF颗粒化学刻蚀动力学和形态学操作:原位液相电子显微镜和三维电子断层扫描应用

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In situ liquid phase transmission electron microscopy (TEM) and three-dimensional electron tomography are powerful tools for investigating the growth mechanism of MOFs and understanding the factors that influence their particle morphology. However, their combined application to the study of MOF etching dynamics is limited due to the challenges of the technique such as sample preparation, limited field of view, low electron density, and data analysis complexity. In this research, we present a study employing in situ liquid phase TEM to investigate the etching mechanism of colloidal zeolitic imidazolate framework (ZIF) nanoparticles. The etching process involves two distinct stages, resulting in the development of porous structures as well as partially and fully hollow morphologies. The etching process is induced by exposure to an acid solution, and both in situ and ex situ experiments demonstrate that the outer layer etches faster leading to overall volume shrinking (stage I) while the inner layer etches faster giving a hollow morphology (stage II), although both the outer layer and inner layer have been etched in the whole process. 3D electron tomography was used to quantify the properties of the hollow structures which show that the ZIF-67 crystal etching rate is larger than that of the ZIF-8 crystal at the same pH value. This study provides valuable insights into MOF particle morphology control and can lead to the development of novel MOF-based materials with tailored properties for various applications.
机译:原位液相透射电子显微镜(TEM)和三维电子层析成像是研究MOFs生长机理和了解影响其颗粒形貌的因素的有力工具。然而,由于样品制备、视场有限、电子密度低和数据分析复杂性等技术的挑战,它们在MOF刻蚀动力学研究中的综合应用受到限制。在这项研究中,我们提出了一项采用原位液相透射电镜研究胶体沸石咪唑酸盐骨架(ZIF)纳米颗粒的蚀刻机理的研究。蚀刻过程涉及两个不同的阶段,导致多孔结构以及部分和完全空心形态的发展。蚀刻过程是通过暴露于酸溶液引起的,原位和非原位实验都表明,外层蚀刻速度更快,导致整体体积缩小(第一阶段),而内层蚀刻速度更快,形成空心形态(第二阶段),尽管外层和内层都在整个过程中被蚀刻。采用三维电子断层扫描对中空结构进行定量分析,结果表明,在相同pH值下,ZIF-67晶体的刻蚀速率大于ZIF-8晶体。这项研究为MOF颗粒形态控制提供了宝贵的见解,并可能导致开发具有针对各种应用的定制性能的新型MOF基材料。

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