Issue 36, 2021

Metal–organic frameworks of linear trinuclear cluster secondary building units: structures and applications

Abstract

Secondary building units (SBUs) in metal–organic frameworks (MOFs) are essential from both a structural and performance perspective. While a variety of SBUs, such as paddlewheel CuII2, triangular CrIII3, tetrahedral ZnII4, and octahedral ZrIV6 have been extensively studied, the linear trinuclear SBUs (herein denoted as M3), though frequently encountered, are rarely discussed as a class. A literature survey reveals that M3 clusters are ubiquitous in discrete molecular entities as well as in MOFs. Unlike most other cluster types, however, they have an unprecedented metal diversity and ligand tolerance. The single-crystals of some M3-based MOFs are also sufficiently robust upon guest removal and exchange or multi-step post-modifications to enable catalytic mechanism elucidation. Some of these M3-based SBUs endow MOFs with stability under demanding conditions necessary, for example, in flue gas separation. Herein we review MOFs sustained by this common but under-appreciated class of SBUs and discuss applications of the resulting MOF motifs.

Graphical abstract: Metal–organic frameworks of linear trinuclear cluster secondary building units: structures and applications

Article information

Article type
Paper
Submitted
27 Jun 2021
Accepted
08 Aug 2021
First published
09 Aug 2021

Dalton Trans., 2021,50, 12692-12707

Metal–organic frameworks of linear trinuclear cluster secondary building units: structures and applications

M. Chao, Q. Li, W. Zhang and D. J. Young, Dalton Trans., 2021, 50, 12692 DOI: 10.1039/D1DT02140K

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