User:Wayne Decatur/mof dev

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(New page: Nobel for metal–organic frameworks <StructureSection load='1d66' size='500' frame='true' side='right' caption='The N-terminal amino acids of Gal4p bound to DNA (1d66)' scene='70/7019...)
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Nobel for metal–organic frameworks
Nobel for metal–organic frameworks
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<StructureSection load='1d66' size='500' frame='true' side='right' caption='The N-terminal amino acids of Gal4p bound to DNA ([[1d66]])' scene='70/701975/1d66_firstglance/2' >
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<StructureSection load='1d66' size='500' frame='true' side='right' caption='A Metal–organic framework structure: the CSD entry WUTXUH' scene='10/1092924/Csd_entry_wutxuh_basics/1' >
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==Background==
==Background==
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The ???? <scene name='70/701975/1d66_firstglance_zn_binding/2'>????</scene>.<br>
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<scene name='10/1092924/Csd_entry_wutxuh_basics/1'>The CSD entry WUTXUH</scene>.<br>
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Revision as of 18:35, 8 October 2025

Nobel for metal–organic frameworks

A Metal–organic framework structure: the CSD entry WUTXUH

Drag the structure with the mouse to rotate


Technical Details

Built using [the Jmol Crystal Symmetry Explorer https://chemapps.stolaf.edu/jmol/jsmol/jcse/explore.htm] to examine [CSD Entry: WUTXUH

https://www.ccdc.cam.ac.uk/structures/Search?Ccdcid=WUTXUH&DatabaseToSearch=CSD].

Reference

  • Xia Z, Li F, Xu L, Feng P. A stable and highly selective metalloporphyrin based framework for the catalytic oxidation of cyclohexene. Dalton Trans. 2020 Aug 18;49(32):11157-11162. PMID:32744270 doi:10.1039/d0dt01420f

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Wayne Decatur

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