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Building a Cost-Efficient High-Pressure Cell for Online High-Field NMR and MRI Using Standard Static Probe Heads: An In Situ Demonstration on Clathrate Hydrate Formation

[Image: see text] High-pressure nuclear magnetic resonance (NMR) spectroscopy finds remarkable applications in catalysis, protein biochemistry and biophysics, analytical chemistry, material science, energy, and environmental control but requires expensive probe heads and/or sample cells. This contri...

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Autores principales: Houlleberghs, Maarten, Helsper, Shannon, Dom, Dirk, Dubroca, Thierry, Trociewitz, Bianca, Schurko, Robert W., Radhakrishnan, Sambhu, Breynaert, Eric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10666082/
https://www.ncbi.nlm.nih.gov/pubmed/37931115
http://dx.doi.org/10.1021/acs.analchem.3c03050
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author Houlleberghs, Maarten
Helsper, Shannon
Dom, Dirk
Dubroca, Thierry
Trociewitz, Bianca
Schurko, Robert W.
Radhakrishnan, Sambhu
Breynaert, Eric
author_facet Houlleberghs, Maarten
Helsper, Shannon
Dom, Dirk
Dubroca, Thierry
Trociewitz, Bianca
Schurko, Robert W.
Radhakrishnan, Sambhu
Breynaert, Eric
author_sort Houlleberghs, Maarten
collection PubMed
description [Image: see text] High-pressure nuclear magnetic resonance (NMR) spectroscopy finds remarkable applications in catalysis, protein biochemistry and biophysics, analytical chemistry, material science, energy, and environmental control but requires expensive probe heads and/or sample cells. This contribution describes the design, construction, and testing of a low-cost 5 mm NMR tube suitable for high-pressure NMR measurements of up to 30 MPa. The sample cell comprises a standard, 5 mm single-crystal sapphire tube that has been fitted to a section of a relatively inexpensive polyether ether ketone (PEEK) HPLC column. PEEK HPLC tubing and connectors enable integration with a gas rig or a standard HPLC pump located outside the stray field of the magnet. The cell is compatible with any 5 mm static NMR probe head, exhibits almost zero background in NMR experiments, and is compatible with any liquid, gas, temperature, or pressure range encountered in HPLC experimentation. A specifically designed transport case enables the safe handling of the pressurized tube outside the probe head. The performance of the setup was evaluated using in situ high-field NMR spectroscopy and MRI performed during the formation of bulk and nanoconfined clathrate hydrates occluding methane, ethane, and hydrogen.
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spelling pubmed-106660822023-11-23 Building a Cost-Efficient High-Pressure Cell for Online High-Field NMR and MRI Using Standard Static Probe Heads: An In Situ Demonstration on Clathrate Hydrate Formation Houlleberghs, Maarten Helsper, Shannon Dom, Dirk Dubroca, Thierry Trociewitz, Bianca Schurko, Robert W. Radhakrishnan, Sambhu Breynaert, Eric Anal Chem [Image: see text] High-pressure nuclear magnetic resonance (NMR) spectroscopy finds remarkable applications in catalysis, protein biochemistry and biophysics, analytical chemistry, material science, energy, and environmental control but requires expensive probe heads and/or sample cells. This contribution describes the design, construction, and testing of a low-cost 5 mm NMR tube suitable for high-pressure NMR measurements of up to 30 MPa. The sample cell comprises a standard, 5 mm single-crystal sapphire tube that has been fitted to a section of a relatively inexpensive polyether ether ketone (PEEK) HPLC column. PEEK HPLC tubing and connectors enable integration with a gas rig or a standard HPLC pump located outside the stray field of the magnet. The cell is compatible with any 5 mm static NMR probe head, exhibits almost zero background in NMR experiments, and is compatible with any liquid, gas, temperature, or pressure range encountered in HPLC experimentation. A specifically designed transport case enables the safe handling of the pressurized tube outside the probe head. The performance of the setup was evaluated using in situ high-field NMR spectroscopy and MRI performed during the formation of bulk and nanoconfined clathrate hydrates occluding methane, ethane, and hydrogen. American Chemical Society 2023-11-06 /pmc/articles/PMC10666082/ /pubmed/37931115 http://dx.doi.org/10.1021/acs.analchem.3c03050 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 Houlleberghs, Maarten
Helsper, Shannon
Dom, Dirk
Dubroca, Thierry
Trociewitz, Bianca
Schurko, Robert W.
Radhakrishnan, Sambhu
Breynaert, Eric
Building a Cost-Efficient High-Pressure Cell for Online High-Field NMR and MRI Using Standard Static Probe Heads: An In Situ Demonstration on Clathrate Hydrate Formation
title Building a Cost-Efficient High-Pressure Cell for Online High-Field NMR and MRI Using Standard Static Probe Heads: An In Situ Demonstration on Clathrate Hydrate Formation
title_full Building a Cost-Efficient High-Pressure Cell for Online High-Field NMR and MRI Using Standard Static Probe Heads: An In Situ Demonstration on Clathrate Hydrate Formation
title_fullStr Building a Cost-Efficient High-Pressure Cell for Online High-Field NMR and MRI Using Standard Static Probe Heads: An In Situ Demonstration on Clathrate Hydrate Formation
title_full_unstemmed Building a Cost-Efficient High-Pressure Cell for Online High-Field NMR and MRI Using Standard Static Probe Heads: An In Situ Demonstration on Clathrate Hydrate Formation
title_short Building a Cost-Efficient High-Pressure Cell for Online High-Field NMR and MRI Using Standard Static Probe Heads: An In Situ Demonstration on Clathrate Hydrate Formation
title_sort building a cost-efficient high-pressure cell for online high-field nmr and mri using standard static probe heads: an in situ demonstration on clathrate hydrate formation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10666082/
https://www.ncbi.nlm.nih.gov/pubmed/37931115
http://dx.doi.org/10.1021/acs.analchem.3c03050
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