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Reversible Water-Induced Structural and Magnetic Transformations and Selective Water Adsorption Properties of Poly(manganese 1,1′-ferrocenediyl-bis(H-phosphinate))
Authors
Büchner B.
Gerasimova T.
+11 more
Kaskel S.
Kataev V.
Kataeva O.
Katsyuba S.
Kovalenko V.
Krivolapov D.
Krupskaya Y.
Miluykov V.
Senkovska I.
Shekurov R.
Sinyashin O.
Publication date
1 January 2016
Publisher
Abstract
© 2016 American Chemical Society.A flexible and hydrolytically stable metal-organic framework [Mn(H2O)2(Fc(PHOO)2)·2H2O]n has been synthesized using ferrocene-based ligand bearing phosphinic groups (Fc(PHOOH)2 = 1,1′-ferrocenediyl-bis(H-phosphinic acid)). In this compound manganese atoms are bound by phosphinate fragments to give infinite chains, and the latter are interconnected by ferrocene groups to form two-dimensional coordination polymer. The elimination of both coordinated and lattice water molecules during heating up to 150 °C produced the compound, which is nonporous for nitrogen, but can selectively adsorb water over methanol and other solvents at 298 K. The reversible structural transformation during adsorption/desorption of water is also reflected in a change of magnetic properties of the metal-organic framework
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Kazan Federal University Digital Repository
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oai:dspace.kpfu.ru:net/105485
Last time updated on 07/05/2019
Kazan Federal University Digital Repository
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:dspace.kpfu.ru:net/143756
Last time updated on 07/05/2019