학술논문

Important Counteranion Effect on Adsorption Efficacity of Hydrogen Sulfide by Silver(I)-Dithione Coordination Polymers.
Document Type
Academic Journal
Author
Soleymani-Babadi S; Department of Chemistry, Faculty of Sciences, Shahid Chamran University of Ahvaz, Ahvaz 6135783151, Iran.; Salahshournia B; Département de Chimie, Université de Sherbrooke, Sherbrooke, Québec J1K 2R1, Canada.; Environmental Engineering Laboratory, Faculty of Engineering, University of Sherbrooke, Sherbrooke, Québec J1K 2R1, Canada.; Beheshti A; Department of Chemistry, Faculty of Sciences, Shahid Chamran University of Ahvaz, Ahvaz 6135783151, Iran.; Bahrani-Pour M; Department of Chemistry, Faculty of Sciences, Shahid Chamran University of Ahvaz, Ahvaz 6135783151, Iran.; Arefi-Nasab H; Department of Chemical Engineering, Amirkabir University of Technology, Tehran Polytechnic, Tehran 15875-4413, Iran.; Mayer P; MU München Department Chemie, Butenandtstr 5-13, München (D)81377, Germany.; Fortin D; Département de Chimie, Université de Sherbrooke, Sherbrooke, Québec J1K 2R1, Canada.; Cabana H; Environmental Engineering Laboratory, Faculty of Engineering, University of Sherbrooke, Sherbrooke, Québec J1K 2R1, Canada.; Harvey PD; Département de Chimie, Université de Sherbrooke, Sherbrooke, Québec J1K 2R1, Canada.
Source
Publisher: American Chemical Society Country of Publication: United States NLM ID: 101504991 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1944-8252 (Electronic) Linking ISSN: 19448244 NLM ISO Abbreviation: ACS Appl Mater Interfaces Subsets: PubMed not MEDLINE; MEDLINE
Subject
Language
English
Abstract
Four new coordination polymers (CPs) have been prepared and evaluated for their efficacy in adsorbing hydrogen sulfide. The reactions of the structurally flexible assembling dithione ligand, L , with different silver(I) salts lead to four new metal-organic coordination architectures (CPs I , III , V , and VIII ) exhibiting either one- or two-dimensional networks. CP I , 2D-[(Ag 2 Cl 2 ) L ] n , exhibits a linear series of rhomboid (S) 2 Ag(μ 2 -Cl) 2 Ag(S) 2 secondary building units (SBUs) where S is one of the thione functions of L , altogether forming a 2D-network. CP III , 2D-[(AgI) L ] n , is built upon parallel staircase-shaped 1D-[Ag 23 -I) 2 ] n SBUs bridged by S atoms of L that form a 2D-grid. CP V, 2D-[(Ag L )(NO 3 )] n , presents parallel 1D-folded S-shaped [Ag L ] n + chains linked by strong argentophilic Ag···Ag interactions, forming a 2D-scaffolding. CP VIII , 1D-[(Ag 2 L 3 )(Cr 2 O 7 )] n , shows 1D-zigzag [{Ag(η 22 ,η-μ,μ- L )} 2 ] n 2 n + chains accompanied by Cr 2 O 7 2- counteranions. The adsorption isotherms of H 2 S gas by these new CPs were examined and compared to those of related CPs [(Ag 2 Br 2 ) L ] n ( II ), [(AgCN) 4 L ] n ( IV ), [(Ag 2 L )(CF 3 SO 3 ) 2 ] n ( VI ), and [(Ag 2 L )(NO 3 )(ClO 4 )] n ( VII ). Among the tested polymers, the 3D-CP IV featuring cyanide anions exhibits the highest adsorption capacity of the CPs studied in this work. In order to determine the reason for this marked difference, density functional theory (DFT) computations were used. All in all, it turns out that the electrostatic interactions (CN - ···H-SH) are significantly stronger than the O - ···H-SH ones. This investigation provides a valuable conceptual tool for other designs of CPs and MOFs having the purpose of capturing toxic gases.