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Two novel coordination compounds of Zn(Ⅱ) with Ph_3P+(CH_2)_2CO-_2(L), namely, [ZnL_4(H_2O)_2]·(ClO_4)_2·2H_2O(compound 1) and [Zn_2Cl_4(μ-L-O,O′)_2](compound 2), have been prepared. The single crystal X-ray structure analysis of these compounds indicates that in compound 1 the Zn(Ⅱ) atom is coordinated by four monodentate carboxylato groups on the equatorial plane and two aqua ligands occupy the axial coordination positions. The pendant oxygen atoms form strong hydrogen bonds with the aqua molecules which results in the stability of this structure. In compound 2, two Zn(Ⅱ) atoms are bridged by a pair of carboxylato groups, showing a skew-bridge mode, and thus enabling a long Zn(Ⅱ)…Zn(Ⅱ) separation. As we know, it is a dinuclear coordination compound with the longest Zn…Zn separation.
Two novel coordination compounds of Zn (Ⅱ) with Ph_3P + (CH_2) _2CO-_2 (L), namely, ZnL_4 (H_2O) _2] · (ClO_4) _2 · 2H_compound 1 and [Zn_2Cl_4 The single crystal X-ray structure analysis of these compounds indicates that in compound 1 the Zn (II) atom is coordinated by four monodentate carboxylato groups on the equatorial plane and two aqua ligands occupy the axial coordination positions. The pendant oxygen atoms form strong hydrogen bonds with the aqua molecules which results in the stability of this structure. In compound 2, two Zn (II) atoms are bridged by a pair of carboxylato groups, showing a skew- bridge mode, and thus enabling a long Zn (Ⅱ) ... Zn (Ⅱ) separation. As we know, it is a dinuclear coordination compound with the longest Zn ... Zn separation.