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Mixed Metal–Organic Framework Mixed-Matrix Membranes: Insights into Simultaneous Moisture-Triggered and Catalytic Delivery of Nitric Oxide using Cryo-scanning Electron Microscopy

[Image: see text] The fundamental chemical and structural diversity of metal–organic frameworks (MOFs) is vast, but there is a lack of industrial adoption of these extremely versatile compounds. To bridge the gap between basic research and industry, MOF powders must be formulated into more applicati...

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Autores principales: Ettlinger, Romy, Vornholt, Simon M., Roach, Madeline C., Tuttle, Robert R., Thai, Jonathan, Kothari, Maadhav, Boese, Markus, Holwell, Andy, Duncan, Morven J., Reynolds, Melissa, Morris, Russell E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10614190/
https://www.ncbi.nlm.nih.gov/pubmed/37818956
http://dx.doi.org/10.1021/acsami.3c11283
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author Ettlinger, Romy
Vornholt, Simon M.
Roach, Madeline C.
Tuttle, Robert R.
Thai, Jonathan
Kothari, Maadhav
Boese, Markus
Holwell, Andy
Duncan, Morven J.
Reynolds, Melissa
Morris, Russell E.
author_facet Ettlinger, Romy
Vornholt, Simon M.
Roach, Madeline C.
Tuttle, Robert R.
Thai, Jonathan
Kothari, Maadhav
Boese, Markus
Holwell, Andy
Duncan, Morven J.
Reynolds, Melissa
Morris, Russell E.
author_sort Ettlinger, Romy
collection PubMed
description [Image: see text] The fundamental chemical and structural diversity of metal–organic frameworks (MOFs) is vast, but there is a lack of industrial adoption of these extremely versatile compounds. To bridge the gap between basic research and industry, MOF powders must be formulated into more application-relevant shapes and/or composites. Successful incorporation of varying ratios of two different MOFs, CPO-27-Ni and CuBTTri, in a thin polymer film represents an important step toward the development of mixed MOF mixed-matrix membranes. To gain insight into the distribution of the two different MOFs in the polymer, we report their investigation by Cryo-scanning electron microscopy (Cryo-SEM) tomography, which minimizes surface charging and electron beam-induced damage. Because the MOFs are based on two different metal ions, Ni and Cu, the elemental maps of the MOF composite cross sections clearly identify the size and location of each MOF in the reconstructed 3D model. The tomography run was about six times faster than conventional focused ion beam (FIB)-SEM and the first insights to image segmentation combined with machine learning could be achieved. To verify that the MOF composites combined the benefits of rapid moisture-triggered release of nitric oxide (NO) from CPO-27-Ni with the continuous catalytic generation of NO from CuBTTri, we characterized their ability to deliver NO individually and simultaneously. These MOF composites show great promise to achieve optimal dual NO delivery in real-world medical applications.
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spelling pubmed-106141902023-10-31 Mixed Metal–Organic Framework Mixed-Matrix Membranes: Insights into Simultaneous Moisture-Triggered and Catalytic Delivery of Nitric Oxide using Cryo-scanning Electron Microscopy Ettlinger, Romy Vornholt, Simon M. Roach, Madeline C. Tuttle, Robert R. Thai, Jonathan Kothari, Maadhav Boese, Markus Holwell, Andy Duncan, Morven J. Reynolds, Melissa Morris, Russell E. ACS Appl Mater Interfaces [Image: see text] The fundamental chemical and structural diversity of metal–organic frameworks (MOFs) is vast, but there is a lack of industrial adoption of these extremely versatile compounds. To bridge the gap between basic research and industry, MOF powders must be formulated into more application-relevant shapes and/or composites. Successful incorporation of varying ratios of two different MOFs, CPO-27-Ni and CuBTTri, in a thin polymer film represents an important step toward the development of mixed MOF mixed-matrix membranes. To gain insight into the distribution of the two different MOFs in the polymer, we report their investigation by Cryo-scanning electron microscopy (Cryo-SEM) tomography, which minimizes surface charging and electron beam-induced damage. Because the MOFs are based on two different metal ions, Ni and Cu, the elemental maps of the MOF composite cross sections clearly identify the size and location of each MOF in the reconstructed 3D model. The tomography run was about six times faster than conventional focused ion beam (FIB)-SEM and the first insights to image segmentation combined with machine learning could be achieved. To verify that the MOF composites combined the benefits of rapid moisture-triggered release of nitric oxide (NO) from CPO-27-Ni with the continuous catalytic generation of NO from CuBTTri, we characterized their ability to deliver NO individually and simultaneously. These MOF composites show great promise to achieve optimal dual NO delivery in real-world medical applications. American Chemical Society 2023-10-11 /pmc/articles/PMC10614190/ /pubmed/37818956 http://dx.doi.org/10.1021/acsami.3c11283 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Ettlinger, Romy
Vornholt, Simon M.
Roach, Madeline C.
Tuttle, Robert R.
Thai, Jonathan
Kothari, Maadhav
Boese, Markus
Holwell, Andy
Duncan, Morven J.
Reynolds, Melissa
Morris, Russell E.
Mixed Metal–Organic Framework Mixed-Matrix Membranes: Insights into Simultaneous Moisture-Triggered and Catalytic Delivery of Nitric Oxide using Cryo-scanning Electron Microscopy
title Mixed Metal–Organic Framework Mixed-Matrix Membranes: Insights into Simultaneous Moisture-Triggered and Catalytic Delivery of Nitric Oxide using Cryo-scanning Electron Microscopy
title_full Mixed Metal–Organic Framework Mixed-Matrix Membranes: Insights into Simultaneous Moisture-Triggered and Catalytic Delivery of Nitric Oxide using Cryo-scanning Electron Microscopy
title_fullStr Mixed Metal–Organic Framework Mixed-Matrix Membranes: Insights into Simultaneous Moisture-Triggered and Catalytic Delivery of Nitric Oxide using Cryo-scanning Electron Microscopy
title_full_unstemmed Mixed Metal–Organic Framework Mixed-Matrix Membranes: Insights into Simultaneous Moisture-Triggered and Catalytic Delivery of Nitric Oxide using Cryo-scanning Electron Microscopy
title_short Mixed Metal–Organic Framework Mixed-Matrix Membranes: Insights into Simultaneous Moisture-Triggered and Catalytic Delivery of Nitric Oxide using Cryo-scanning Electron Microscopy
title_sort mixed metal–organic framework mixed-matrix membranes: insights into simultaneous moisture-triggered and catalytic delivery of nitric oxide using cryo-scanning electron microscopy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10614190/
https://www.ncbi.nlm.nih.gov/pubmed/37818956
http://dx.doi.org/10.1021/acsami.3c11283
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