Rapid Reconstruction of 3-D Membrane Pore Structure Using a Single 2-D Micrograph
Abstract
Conventional 2-D scanning electron microscopy (SEM) is commonly used to rapidly and qualitatively evaluate membrane pore structure. Quantitative 2-D analyses of pore sizes can be extracted from SEM, but without information about 3-D spatial arrangement and connectivity, which are crucial to the understanding of membrane pore structure. Meanwhile, experimental 3-D reconstruction via tomography is complex, expensive, and not easily accessible. Here, we employ data-science tools to demonstrate a proof-of-principle reconstruction of the 3-D structure of a membrane using a single 2-D image pulled from a 3-D tomographic data set. The reconstructed and experimental 3-D structures were then directly compared, with important properties such as mean pore radius, mean throat radius, coordination number and tortuosity differing by less than 15%. The developed algorithm will dramatically improve the ability of the membrane community to characterize membranes, accelerating the design and synthesis of membranes with desired structural and transport properties.
Cite
@article{arxiv.2301.10601,
title = {Rapid Reconstruction of 3-D Membrane Pore Structure Using a Single 2-D Micrograph},
author = {Hooman Chamani and Arash Rabbani and Kaitlyn P. Russell and Andrew L. Zydney and Enrique D. Gomez and Jason Hattrick-Simpers and Jay R. Werber},
journal= {arXiv preprint arXiv:2301.10601},
year = {2023}
}
Comments
36 pages including Supplementary Materials, 15 Figures and 2 Tables