Issue 44, 2017

Pseudopolymorphism based on 1D metallacyclic chains constructed from an angular zwitterionic ditopic diacid organic linker

Abstract

The reaction of Cd(NO3)2·4H2O and 4-carboxy-1-(4-carboxybenzyl)pyridinium bromide (H2LBr) under different reaction conditions generates two pseudopolymorphs, {[Cd(L)2]·2H2O}⊃C3H6O () and {[Cd(L)2]·2H2O}⊃3H2O (). Crystal structure analysis reveals that complexes and feature an essentially identical 1D metallacyclic chain structure, and their structural differences mainly stem from different packing modes of the identical 2D sheets, consisting of identical 1D metallacyclic chains linked via π⋯π interactions. Corresponding to the different packing modes, complexes and have distinctly different space groups: the acentric orthorhombic space group Fdd2 for and the centric monoclinic space group I2/c for . For acentric crystals, modest powder second-harmonic-generation (SHG) efficiency is observed at room temperature.

Graphical abstract: Pseudopolymorphism based on 1D metallacyclic chains constructed from an angular zwitterionic ditopic diacid organic linker

Supplementary files

Article information

Article type
Paper
Submitted
30 Aug 2017
Accepted
17 Oct 2017
First published
18 Oct 2017

CrystEngComm, 2017,19, 6686-6693

Pseudopolymorphism based on 1D metallacyclic chains constructed from an angular zwitterionic ditopic diacid organic linker

Y. Huang, Z. Li, H. Chen, H. Cheng, Y. Wang, Y. Ren, Y. Zhao and L. Liu, CrystEngComm, 2017, 19, 6686 DOI: 10.1039/C7CE01568B

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