The effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene

Two cyclotriveratrylene-based ligands H3L1 and H3L2 have been synthesised using microwave heating and used in the formation of 1 [Zn2(L1)(DMA)2(CH3COO)] and 2 [Zn6(L2)4(DMA)6(H2O)5] (DMA = N,N-dimethylacetamide). 1 displays an unusual trigonal paddlewheel node geometry, while Zn(II) paddlewheels are...

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Main Authors: Martin, Adam D., Easun, Timothy L., Argent, Stephen P., Lewis, William, Blake, Alexander J., Schröder, Martin
Format: Article
Published: Royal Society of Chemistry 2016
Online Access:https://eprints.nottingham.ac.uk/38947/
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author Martin, Adam D.
Easun, Timothy L.
Argent, Stephen P.
Lewis, William
Blake, Alexander J.
Schröder, Martin
author_facet Martin, Adam D.
Easun, Timothy L.
Argent, Stephen P.
Lewis, William
Blake, Alexander J.
Schröder, Martin
author_sort Martin, Adam D.
building Nottingham Research Data Repository
collection Online Access
description Two cyclotriveratrylene-based ligands H3L1 and H3L2 have been synthesised using microwave heating and used in the formation of 1 [Zn2(L1)(DMA)2(CH3COO)] and 2 [Zn6(L2)4(DMA)6(H2O)5] (DMA = N,N-dimethylacetamide). 1 displays an unusual trigonal paddlewheel node geometry, while Zn(II) paddlewheels are observed in 2. However the stacking of CTV molecules in 1 is replaced by an uncommon molecular capsule structure in 2.
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institution University of Nottingham Malaysia Campus
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publishDate 2016
publisher Royal Society of Chemistry
recordtype eprints
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spelling nottingham-389472020-05-04T18:20:50Z https://eprints.nottingham.ac.uk/38947/ The effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene Martin, Adam D. Easun, Timothy L. Argent, Stephen P. Lewis, William Blake, Alexander J. Schröder, Martin Two cyclotriveratrylene-based ligands H3L1 and H3L2 have been synthesised using microwave heating and used in the formation of 1 [Zn2(L1)(DMA)2(CH3COO)] and 2 [Zn6(L2)4(DMA)6(H2O)5] (DMA = N,N-dimethylacetamide). 1 displays an unusual trigonal paddlewheel node geometry, while Zn(II) paddlewheels are observed in 2. However the stacking of CTV molecules in 1 is replaced by an uncommon molecular capsule structure in 2. Royal Society of Chemistry 2016-11-16 Article PeerReviewed Martin, Adam D., Easun, Timothy L., Argent, Stephen P., Lewis, William, Blake, Alexander J. and Schröder, Martin (2016) The effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene. CrystEngComm, 19 . pp. 603-607. ISSN 1466-8033 http://pubs.rsc.org/en/Content/ArticleLanding/2017/CE/C6CE01965J#!divAbstract doi:10.1039/C6CE01965J doi:10.1039/C6CE01965J
spellingShingle Martin, Adam D.
Easun, Timothy L.
Argent, Stephen P.
Lewis, William
Blake, Alexander J.
Schröder, Martin
The effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene
title The effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene
title_full The effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene
title_fullStr The effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene
title_full_unstemmed The effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene
title_short The effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene
title_sort effect of carboxylate position on the structure of a metal organic framework derived from cyclotriveratrylene
url https://eprints.nottingham.ac.uk/38947/
https://eprints.nottingham.ac.uk/38947/
https://eprints.nottingham.ac.uk/38947/