arrow
返回

Evaluating 3D-printed bioseparation structures using multi-length scale tomography

delete2023-07-31
delete2
delete
OA
AI
T
Thomas F. Johnson
M
Mariachiara Conti
F
Francesco Iacoviello
P
Paul R. Shearing
J
James Pullen
S
Simone Dimartino
D
Daniel G. Bracewell *
DOI:10.1007/s00216-023-04866-6delete
delete原文链接
delete分享
delete收藏
查看原文
摘要

摘要

En 中文
X-ray computed tomography was applied in imaging 3D-printed gyroids used for bioseparation in order to visualize and characterize structures from the entire geometry down to individual nanopores. Methacrylate prints were fabricated with feature sizes of 500 mu m, 300 mu m, and 200 mu m, with the material phase exhibiting a porous substructure in all cases. Two X-ray scanners achieved pixel sizes from 5 mu m to 16 nm to produce digital representations of samples across multiple length scales as the basis for geometric analysis and flow simulation. At the gyroid scale, imaged samples were visually compared to the original computed-aided designs to analyze printing fidelity across all feature sizes. An individual 500 mu m feature, part of the overall gyroid structure, was compared and overlaid between design and imaged volumes, identifying individual printed layers. Internal subvolumes of all feature sizes were segmented into material and void phases for permeable flow analysis. Small pieces of 3D-printed material were optimized for nanotomographic imaging at a pixel size of 63 nm, with all three gyroid samples exhibiting similar geometric characteristics when measured. An average porosity of 45% was obtained that was within the expected design range, and a tortuosity factor of 2.52 was measured. Applying a voidage network map enabled the size, location, and connectivity of pores to be identified, obtaining an average pore size of 793 nm. Using Avizo XLAB at a bulk diffusivity of 7.00 x10(-11)m(2)s(-1) resulted in a simulated material diffusivity of 2.17 x 10(-11)m(2)s(-1) +/- 0.16 x 10(-11)m(2)s(-1).
Keyword:
X-ray imaging
3D printing
Gyroid
Flow simulation
Tortuosity
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

Analytical and Bioanalytical Chemistry 封面图
Analytical and Bioanalytical Chemistry
IF:
3.8
论文数:
1.8W
被引数:
3.5W

机构

U
University College London
学者数:
7.9W
论文数: 6.2W
被引数: 15.7W
U
university of london
学者数:
21.5W
论文数: 19.7W
被引数: 305
U
University of Edinburgh
学者数:
5.2W
论文数: 4.6W
被引数: 71
学者 查看更多机构
引用论文

引用论文

The Imaging Resolution and Knudsen Effect on the Mass Transport of Shale Gas Assisted by Multi-length Scale X-Ray Computed Tomography
err2019-12-19
err19
errOAAI
errIacoviello, Francesco; Lu, Xuekun; Mitchell, Thomas M.; Brett, Daniel J. L.; Shearing, Paul R.
err分享
err收藏
Robust and high-throughput lipidomic quantitation of human blood samples using flow injection analysis with tandem mass spectrometry for clinical use使用流动注射分析和串联质谱法对人血样品进行稳健且高通量的脂质组学定量,用于临床
err2023-01-04
err9
PREAI
errIdkowiak, Jakub; Jirasko, Robert; Kolarova, Denisa; Bartl, Josef; Hajek, Tomas; Antonelli, Michela; Vankova, Zuzana; Wolrab, Denise; Hrstka, Roman; Studentova, Hana; Melichar, Bohuslav; Peskova, Karolina; Holcapek, Michal
err分享
err收藏
Fouling of an Anion Exchange Chromatography Operation in a Monoclonal Antibody Process: Visualization and Kinetic Studies
err2013-03-31
err22
errOAAI
errClose, Edward J.; Salm, Jeffrey R.; Iskra, Timothy; Sorensen, Eva; Bracewell, Daniel G.
err分享
err收藏
Determination of the fibre orientation distribution of a mineral wool network and prediction of its transverse stiffness using X-ray tomography
err2018-01-23
err9
PREAI
errChapelle, Lucie; Lyckegaard, Allan; Kusano, Yukihiro; Gundlach, Carsten; Foldschack, Mathilde Rosendahl; Lybye, Dorthe; Brondsted, Povl
err分享
err收藏
err分享
err收藏
GENERATING A NETWORK OF INFORMATION DEPENDENCIES AUTOMATICALLY
err2012-09-13
err0
PREAI
errReid R. Senescu; Austen W. Head; Martin Steinert; Martin A. Fischer
err分享
err收藏
学者 查看更多内容