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Cyclic Structural Transformations from Crystalline to Crystalline to Amorphous Phases and Magnetic Properties of a Mn(II)-Based Metal-Organic Framework

Authors
Lee, Han GeulJo, HyunaEom, SunhwiKang, Dong WonKang, MinjungHilgar, JeremyRinehart, Jeffrey D.Moon, DohyunHong, Chang Seop
Issue Date
6월-2018
Publisher
AMER CHEMICAL SOC
Citation
CRYSTAL GROWTH & DESIGN, v.18, no.6, pp.3360 - 3365
Indexed
SCIE
SCOPUS
Journal Title
CRYSTAL GROWTH & DESIGN
Volume
18
Number
6
Start Page
3360
End Page
3365
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/75442
DOI
10.1021/acs.cgd.8b00064
ISSN
1528-7483
Abstract
A three-dimensional Mn(II) framework, [Mn-2(H2L)(L)(0.5)(MeOH)(DEF)]center dot 0.1MeOH center dot 0.1DEF center dot 1.4H(2)O (1; H4L, = 2,3-dioxido-1,4-benzenedicarboxylic acid), was synthesized under solvothermal conditions in diethylformamide/methanol (DEF/MeOH), where the Mn centers adopt octahedral and unusual pentagonal bipyramidal geometries. The ligand H4L was subject to deprotonation to create mu(4)-H2L2- and mu(6)-L4- anionic bridges, leading to the construction of a coordination network. The MeOH exchange process of crystalline 1 allowed for another crystalline phase (1a), which reversibly returned to the original crystalline state upon resolvation in DEF/MeOH. After evacuation of la, the amorphous phase 1b was irreversibly formed, followed by the restoration of the original phase 1 upon resolvation in DEF/MeOH. Consequently, this framework underwent cyclic structural transformations from the crystalline (1) to crystalline (1a) to amorphous (1b) and back to crystalline (1) phase, which are unique transformations for soft coordination networks. Magnetic measurements demonstrated that antiferromagnetic interactions were operative between the Mn(II) ions and were effectively mediated by the oxygen moieties of the mu(6)-L4- bridge.
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