Issue 1, 2003

Assembly of one-dimensional AlP2O83− chains into three-dimensional MAlP2O8·C2N2H9 frameworks through transition metal cations (M = Ni2+, Co2+ and Fe2+)

Abstract

Three-dimensional (3D) MAlP2O8·C2N2H9 open-frameworks have been successfully generated from 1D AlP2O83− chains using transition metal cations M2+ (M = Ni, Co and Fe). The 1D AlP2O83− chain compound whose chain structure is made up of corner-sharing Al2P2 four-membered rings is prepared solvothermally using ethylenediamine as a template; to the reactant mixture in which the one-dimensional AlP2O83− chain compound has already crystallized, transition metal cations are added. Structural analysis indicates that the terminal oxygen atoms attached to the one-dimensional AlP2O83− chains are exclusively coordinated to M2+ forming O–M–O bonds. XRD, DRS, ICP, CHN and Mössbauer techniques have been used to characterise the products. This work provides a new approach to the synthesis of 3D open-frameworks through the assembly of low-dimensional structures via transition metal cations.

Graphical abstract: Assembly of one-dimensional AlP2O83− chains into three-dimensional MAlP2O8·C2N2H9 frameworks through transition metal cations (M = Ni2+, Co2+ and Fe2+)

Article information

Article type
Paper
Submitted
22 Jul 2002
Accepted
31 Oct 2002
First published
29 Nov 2002

Dalton Trans., 2003, 99-103

Assembly of one-dimensional AlP2O83− chains into three-dimensional MAlP2O8·C2N2H9 frameworks through transition metal cations (M = Ni2+, Co2+ and Fe2+)

K. Wang, J. Yu, Y. Song and R. Xu, Dalton Trans., 2003, 99 DOI: 10.1039/B207142H

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