Abstract:
A new open-framework zinc phosphate, [NH3(CH2)(2)NH(CH2)(2)NH3](2+)2[Zn2PO4(HPO4)](-), possessing a layered architecture and consisting of alternating inorganic and organic layers, stabilized by multipoint hydrogen bonding has been synthesized hydrothermally, It has the following crystal data: monoclinic space group C2/c, a = 25.075(5) Angstrom, b = 5.127(1) Angstrom, c = 17.726(4) Angstrom, beta = 125.4(1)degrees, V = 1857.6(6) Angstrom(3), Z = 8, M = 748.3(1), D-calc = 2.06 g cm(-3), MoK alpha, and R-F = 0.04. The structure is made up of ZnO4 and PO4 tetrahedra linked though vertexes, The connectivity between the two units creates a layered structure with steps, the layers consisting of three- and four-membered rings only. This is the first; instance of such a network in open-framework zinc phosphates. The exclusive presence of three-membered ring chains creates steps in the layers as well as an infinite number of Zn-O-Zn one-dimensional chains. Hydrogen bond interactions between the inorganic layers give rise to pseudo 10-membered ring channels, in which the diprotonated diethyelenetriamine molecules reside. The unusual T atom (T being Zn or P) connectivity in this material suggests the possibility of synthesizing many such materials with novel connectivities and networks.