Cargando…

Ortho Effects of Tricarboxylate Linkers in Regulating Topologies of Rare-Earth Metal–Organic Frameworks

[Image: see text] A linker design strategy is developed to attain novel polynuclear rare-earth (RE) metal–organic frameworks (MOFs) with unprecedented topologies. We uncover the critical role of ortho-functionalized tricarboxylate ligands in directing the construction of highly connected RE MOFs. Th...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Fugang, Wang, Kun-Yu, Liu, Zhengyang, Han, Zongsu, Kuai, Dacheng, Fan, Weidong, Feng, Liang, Wang, Yutong, Wang, Xiaokang, Li, Yue, Yang, Zhentao, Wang, Rongming, Sun, Daofeng, Zhou, Hong-Cai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10207104/
https://www.ncbi.nlm.nih.gov/pubmed/37234108
http://dx.doi.org/10.1021/jacsau.2c00635
_version_ 1785046376293335040
author Li, Fugang
Wang, Kun-Yu
Liu, Zhengyang
Han, Zongsu
Kuai, Dacheng
Fan, Weidong
Feng, Liang
Wang, Yutong
Wang, Xiaokang
Li, Yue
Yang, Zhentao
Wang, Rongming
Sun, Daofeng
Zhou, Hong-Cai
author_facet Li, Fugang
Wang, Kun-Yu
Liu, Zhengyang
Han, Zongsu
Kuai, Dacheng
Fan, Weidong
Feng, Liang
Wang, Yutong
Wang, Xiaokang
Li, Yue
Yang, Zhentao
Wang, Rongming
Sun, Daofeng
Zhou, Hong-Cai
author_sort Li, Fugang
collection PubMed
description [Image: see text] A linker design strategy is developed to attain novel polynuclear rare-earth (RE) metal–organic frameworks (MOFs) with unprecedented topologies. We uncover the critical role of ortho-functionalized tricarboxylate ligands in directing the construction of highly connected RE MOFs. The acidity and conformation of the tricarboxylate linkers were altered by substituting with diverse functional groups at the ortho position of the carboxyl groups. For instance, the acidity difference between carboxylate moieties resulted in forming three hexanuclear RE MOFs with novel (3,3,3,10,10)-c wxl, (3,12)-c gmx, and (3,3,3,12)-c joe topologies, respectively. In addition, when a bulky methyl group was introduced, the incompatibility between the net topology and ligand conformation guided the co-appearance of hexanuclear and tetranuclear clusters, generating a novel 3-periodic MOF with a (3,3,8,10)-c kyw net. Interestingly, a fluoro-functionalized linker prompted the formation of two unusual trinuclear clusters and produced a MOF with a fascinating (3,8,10)-c lfg topology, which could be gradually replaced by a more stable tetranuclear MOF with a new (3,12)-c lee topology with extended reaction time. This work enriches the polynuclear clusters library of RE MOFs and unveils new opportunities to construct MOFs with unprecedented structural complexity and vast application potential.
format Online
Article
Text
id pubmed-10207104
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-102071042023-05-25 Ortho Effects of Tricarboxylate Linkers in Regulating Topologies of Rare-Earth Metal–Organic Frameworks Li, Fugang Wang, Kun-Yu Liu, Zhengyang Han, Zongsu Kuai, Dacheng Fan, Weidong Feng, Liang Wang, Yutong Wang, Xiaokang Li, Yue Yang, Zhentao Wang, Rongming Sun, Daofeng Zhou, Hong-Cai JACS Au [Image: see text] A linker design strategy is developed to attain novel polynuclear rare-earth (RE) metal–organic frameworks (MOFs) with unprecedented topologies. We uncover the critical role of ortho-functionalized tricarboxylate ligands in directing the construction of highly connected RE MOFs. The acidity and conformation of the tricarboxylate linkers were altered by substituting with diverse functional groups at the ortho position of the carboxyl groups. For instance, the acidity difference between carboxylate moieties resulted in forming three hexanuclear RE MOFs with novel (3,3,3,10,10)-c wxl, (3,12)-c gmx, and (3,3,3,12)-c joe topologies, respectively. In addition, when a bulky methyl group was introduced, the incompatibility between the net topology and ligand conformation guided the co-appearance of hexanuclear and tetranuclear clusters, generating a novel 3-periodic MOF with a (3,3,8,10)-c kyw net. Interestingly, a fluoro-functionalized linker prompted the formation of two unusual trinuclear clusters and produced a MOF with a fascinating (3,8,10)-c lfg topology, which could be gradually replaced by a more stable tetranuclear MOF with a new (3,12)-c lee topology with extended reaction time. This work enriches the polynuclear clusters library of RE MOFs and unveils new opportunities to construct MOFs with unprecedented structural complexity and vast application potential. American Chemical Society 2023-04-26 /pmc/articles/PMC10207104/ /pubmed/37234108 http://dx.doi.org/10.1021/jacsau.2c00635 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Li, Fugang
Wang, Kun-Yu
Liu, Zhengyang
Han, Zongsu
Kuai, Dacheng
Fan, Weidong
Feng, Liang
Wang, Yutong
Wang, Xiaokang
Li, Yue
Yang, Zhentao
Wang, Rongming
Sun, Daofeng
Zhou, Hong-Cai
Ortho Effects of Tricarboxylate Linkers in Regulating Topologies of Rare-Earth Metal–Organic Frameworks
title Ortho Effects of Tricarboxylate Linkers in Regulating Topologies of Rare-Earth Metal–Organic Frameworks
title_full Ortho Effects of Tricarboxylate Linkers in Regulating Topologies of Rare-Earth Metal–Organic Frameworks
title_fullStr Ortho Effects of Tricarboxylate Linkers in Regulating Topologies of Rare-Earth Metal–Organic Frameworks
title_full_unstemmed Ortho Effects of Tricarboxylate Linkers in Regulating Topologies of Rare-Earth Metal–Organic Frameworks
title_short Ortho Effects of Tricarboxylate Linkers in Regulating Topologies of Rare-Earth Metal–Organic Frameworks
title_sort ortho effects of tricarboxylate linkers in regulating topologies of rare-earth metal–organic frameworks
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10207104/
https://www.ncbi.nlm.nih.gov/pubmed/37234108
http://dx.doi.org/10.1021/jacsau.2c00635
work_keys_str_mv AT lifugang orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT wangkunyu orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT liuzhengyang orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT hanzongsu orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT kuaidacheng orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT fanweidong orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT fengliang orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT wangyutong orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT wangxiaokang orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT liyue orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT yangzhentao orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT wangrongming orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT sundaofeng orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks
AT zhouhongcai orthoeffectsoftricarboxylatelinkersinregulatingtopologiesofrareearthmetalorganicframeworks