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合成纳米多孔地质材料的纳米制造:从纳米级分辨率 3D 成像到纳米 3D 打印数字(页岩)岩。

Nanofabrication of synthetic nanoporous geomaterials: from nanoscale-resolution 3D imaging to nano-3D-printed digital (shale) rock.

机构信息

Department of Chemical Engineering, University of Utah, Salt Lake City, UT, USA.

出版信息

Sci Rep. 2020 Dec 9;10(1):21596. doi: 10.1038/s41598-020-78467-z.

Abstract

Advances in imaging have made it possible to view nanometer and sub-nanometer structures that are either synthesized or that occur naturally. It is believed that fluid dynamic and thermodynamic behavior differ significantly at these scales from the bulk. From a materials perspective, it is important to be able to create complex structures at the nanometer scale, reproducibly, so that the fluid behavior may be studied. New advances in nanoscale-resolution 3D-printing offer opportunities to achieve this goal. In particular, additive manufacturing with two-photon polymerization allows creation of intricate structures. Using this technology, a creation of the first nano-3D-printed digital (shale) rock is reported. In this paper, focused ion beam-scanning electron microscopy (FIB-SEM) nano-tomography image dataset was used to reconstruct a high-resolution digital rock 3D model of a Marcellus Shale rock sample. Porosity of this 3D model has been characterized and its connected/effective pore system has been extracted and nano-3D-printed. The workflow of creating this novel nano-3D-printed digital rock 3D model is described in this paper.

摘要

成像技术的进步使得观察纳米和亚纳米级的合成或天然结构成为可能。人们认为,在这些尺度上,流体动力学和热力学行为与整体有很大的不同。从材料的角度来看,能够以可重复的方式在纳米尺度上创建复杂的结构是很重要的,这样就可以研究流体的行为。纳米级分辨率 3D 打印的新进展为此提供了机会。特别是,双光子聚合的增材制造允许创建复杂的结构。使用这项技术,报告了第一个纳米 3D 打印数字(页岩)岩石的创建。在本文中,使用聚焦离子束扫描电子显微镜(FIB-SEM)纳米断层扫描图像数据集,重建了马塞勒斯页岩岩样的高分辨率数字岩石 3D 模型。对该 3D 模型的孔隙度进行了表征,并提取了其连通/有效孔隙系统并进行了纳米 3D 打印。本文描述了创建这种新型纳米 3D 打印数字岩石 3D 模型的工作流程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc4d/7725825/3f78d8a2f3e6/41598_2020_78467_Fig1_HTML.jpg

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