Ag(I) and Hg(II) coordination polymers decorated from fully benzimidazole substituted cyclotriphosphazene ligand and adsorption behaviour against Methylene Blue

Author:

Pendar Afranur1,Duyar Ceyda2,Zorlu Yunus1,Davarcı Derya1

Affiliation:

1. Gebze Technical University

2. Afyon Kocatepe University

Abstract

Abstract Herein, we reported new two coordination polymers, {[Ag(L)](CH3PhSO3)](CH3CN)4}n (cp-1) and {[Hg(L)](Cl2)](CH3CN)2}n(cp-2), were synthesized from hexapodal benzimidazole substituted cyclotriphosphazene, (L). L was characterised by 1H NMR, 31P NMR and mass analysis. Structure of each isolated compounds were determined by single crystal X-ray crystallography. In cp-1, L has a κ3N coordination mode by connecting three Ag(I) ions to constitute a 2D coordination framework whereas the ligand in cp-2 displays κ2N coordination mode via linking four Hg(II) ions together to create a 1D coordination polymer. Topologically, cp-1 has a 3-connected uninodal net having the point symbol {4.82}. Dye adsorption studies of coordination polymers was performed out using UV-Vis. absorption spectroscopy. Adsorption experiments show that cp-1 and cp-2 removes the cationic methylene blue (MB) from water but shows no adsorption behaviour toward the anionic methyl orange (MO) and tartrazine (E102).

Publisher

Research Square Platform LLC

Reference58 articles.

1. A. Karmakar, A. Paul, I.R.M. Santos, P.M.R. Santos, E.P. Sabatini, A.V. Gurbanov, M. F. C. Guedes da Silva, A.J.L. Pombeiro, Highly efficient adsorptive removal of organic dyes from aqueous solutions using polyaromatic group-containing Zn(II)-based coordination polymers. Cryst. Growth Des. 22, 2248–2265 (2022)

2. Photocatalytic degradation of organic dyes using covalent triazine-based framework;Zhuang Y;Mater. Res. Bull.,2022

3. Low cost adsorbents for the removal of organic pollutants from wastewater;Ali I;J. Environ. Manage.,2012

4. Effects of textile dyes on health and the environment and bioremediation potential of living organisms;Lellis B;Biotechnol. Res. Innov.,2019

5. El Harfi, Textile finishing dyes and their impact on aquatic environs;Berradi M;Heliyon,2019

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