Hydrothermal synthesis and characterization of a series of luminescent Ag() coordination polymers with two new multidentate bis-(1,2,3-triazole) ligands: structural diversity, polymorphism and photoluminescent sensing

In this work, two new multidentate bis-(1,2,3-triazole) ligands 1-(4-(2 H -1,2,3-triazol-2-yl)butyl)-1 H -1,2,3-triazole (L 1 ) and 1,6-bis(2 H -1,2,3-triazol-2-yl)hexane (L 2 ) have been designed and synthesized. Under hydrothermal conditions, a series of luminescent Ag( i ) coordination polymers,...

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Veröffentlicht in:CrystEngComm 2016-01, Vol.18 (35), p.664-6652
Hauptverfasser: Huo, Jian Zhong, Su, Xiu Mei, Wu, Xiang Xia, Liu, Yuan Yuan, Ding, Bin
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Su, Xiu Mei
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Ding, Bin
description In this work, two new multidentate bis-(1,2,3-triazole) ligands 1-(4-(2 H -1,2,3-triazol-2-yl)butyl)-1 H -1,2,3-triazole (L 1 ) and 1,6-bis(2 H -1,2,3-triazol-2-yl)hexane (L 2 ) have been designed and synthesized. Under hydrothermal conditions, a series of luminescent Ag( i ) coordination polymers, namely, {[Ag(L 1 ) 2 ](PF 6 )} n ( 1 ), {[Ag 2 (L 1 ) 2 (bbtr)](BF 4 ) 2 } n ( 2 ), {[Ag 2 (L 1 ) 2 (bbtr)](BF 4 ) 2 } n ( 3 ), {[Ag 2 (L 1 ) 2 (bbtr)](PF 6 ) 2 } n ( 4 ) and [Ag 2 (L 2 )(NO 3 ) 2 ] n ( 5 ) (bbtr = 1,4-di(1,2,3-triazol-1-yl)butane) can be isolated. For 1 , bidentate L 1 ligands bridge neighboring Ag( i ) ions, forming a 1D tubular framework. Further, when L 1 and bbtr are used to react with AgBF 4 , two scarcely reported mixed-ligand polymorphic cluster-based Ag I frameworks, 2 (1D) and 3 (2D), can be isolated under different reaction temperatures. Further, free BF 4 anions within the crystalline framework of 2 can be exchanged with PF 6 anions to generate the anion exchanged crystalline product {[Ag 2 (L 1 ) 2 (bbtr)](PF 6 ) 2 } n ( 4 ) in a single-crystal-to-single-crystal (SCSC) manner. For 5 , tetradentate L 2 ligands bridge neighboring Ag I centers, leading to a 3D coordination polymer. The solid state luminescence properties of 15 have been investigated, indicating strong fluorescent emissions. Additionally, luminescence measurements illustrate that complex 5 exhibits highly selective and sensitive luminescence sensing of Cr 2 O 7 2 ions in aqueous solutions with high quenching efficiency ( K sv = 1.53 10 4 L mol 1 ) and low detection limit (0.23 M (S/N = 3)), which make it a promising candidate for sensing Cr 2 O 7 2 anion pollutants in the actual measurement process. 5 is the first coordination polymer based on a bis-(1,2,3-triazole) derivative as luminescent probes of Cr 2 O 7 2 ions in aqueous solutions. In this work, a series of luminescent Ag( i ) coordination polymers with two new bis-(1,2,3-triazole) ligands have been prepared and characterized.
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Under hydrothermal conditions, a series of luminescent Ag( i ) coordination polymers, namely, {[Ag(L 1 ) 2 ](PF 6 )} n ( 1 ), {[Ag 2 (L 1 ) 2 (bbtr)](BF 4 ) 2 } n ( 2 ), {[Ag 2 (L 1 ) 2 (bbtr)](BF 4 ) 2 } n ( 3 ), {[Ag 2 (L 1 ) 2 (bbtr)](PF 6 ) 2 } n ( 4 ) and [Ag 2 (L 2 )(NO 3 ) 2 ] n ( 5 ) (bbtr = 1,4-di(1,2,3-triazol-1-yl)butane) can be isolated. For 1 , bidentate L 1 ligands bridge neighboring Ag( i ) ions, forming a 1D tubular framework. Further, when L 1 and bbtr are used to react with AgBF 4 , two scarcely reported mixed-ligand polymorphic cluster-based Ag I frameworks, 2 (1D) and 3 (2D), can be isolated under different reaction temperatures. Further, free BF 4 anions within the crystalline framework of 2 can be exchanged with PF 6 anions to generate the anion exchanged crystalline product {[Ag 2 (L 1 ) 2 (bbtr)](PF 6 ) 2 } n ( 4 ) in a single-crystal-to-single-crystal (SCSC) manner. For 5 , tetradentate L 2 ligands bridge neighboring Ag I centers, leading to a 3D coordination polymer. The solid state luminescence properties of 15 have been investigated, indicating strong fluorescent emissions. Additionally, luminescence measurements illustrate that complex 5 exhibits highly selective and sensitive luminescence sensing of Cr 2 O 7 2 ions in aqueous solutions with high quenching efficiency ( K sv = 1.53 10 4 L mol 1 ) and low detection limit (0.23 M (S/N = 3)), which make it a promising candidate for sensing Cr 2 O 7 2 anion pollutants in the actual measurement process. 5 is the first coordination polymer based on a bis-(1,2,3-triazole) derivative as luminescent probes of Cr 2 O 7 2 ions in aqueous solutions. 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Under hydrothermal conditions, a series of luminescent Ag( i ) coordination polymers, namely, {[Ag(L 1 ) 2 ](PF 6 )} n ( 1 ), {[Ag 2 (L 1 ) 2 (bbtr)](BF 4 ) 2 } n ( 2 ), {[Ag 2 (L 1 ) 2 (bbtr)](BF 4 ) 2 } n ( 3 ), {[Ag 2 (L 1 ) 2 (bbtr)](PF 6 ) 2 } n ( 4 ) and [Ag 2 (L 2 )(NO 3 ) 2 ] n ( 5 ) (bbtr = 1,4-di(1,2,3-triazol-1-yl)butane) can be isolated. For 1 , bidentate L 1 ligands bridge neighboring Ag( i ) ions, forming a 1D tubular framework. Further, when L 1 and bbtr are used to react with AgBF 4 , two scarcely reported mixed-ligand polymorphic cluster-based Ag I frameworks, 2 (1D) and 3 (2D), can be isolated under different reaction temperatures. Further, free BF 4 anions within the crystalline framework of 2 can be exchanged with PF 6 anions to generate the anion exchanged crystalline product {[Ag 2 (L 1 ) 2 (bbtr)](PF 6 ) 2 } n ( 4 ) in a single-crystal-to-single-crystal (SCSC) manner. For 5 , tetradentate L 2 ligands bridge neighboring Ag I centers, leading to a 3D coordination polymer. The solid state luminescence properties of 15 have been investigated, indicating strong fluorescent emissions. Additionally, luminescence measurements illustrate that complex 5 exhibits highly selective and sensitive luminescence sensing of Cr 2 O 7 2 ions in aqueous solutions with high quenching efficiency ( K sv = 1.53 10 4 L mol 1 ) and low detection limit (0.23 M (S/N = 3)), which make it a promising candidate for sensing Cr 2 O 7 2 anion pollutants in the actual measurement process. 5 is the first coordination polymer based on a bis-(1,2,3-triazole) derivative as luminescent probes of Cr 2 O 7 2 ions in aqueous solutions. 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Under hydrothermal conditions, a series of luminescent Ag( i ) coordination polymers, namely, {[Ag(L 1 ) 2 ](PF 6 )} n ( 1 ), {[Ag 2 (L 1 ) 2 (bbtr)](BF 4 ) 2 } n ( 2 ), {[Ag 2 (L 1 ) 2 (bbtr)](BF 4 ) 2 } n ( 3 ), {[Ag 2 (L 1 ) 2 (bbtr)](PF 6 ) 2 } n ( 4 ) and [Ag 2 (L 2 )(NO 3 ) 2 ] n ( 5 ) (bbtr = 1,4-di(1,2,3-triazol-1-yl)butane) can be isolated. For 1 , bidentate L 1 ligands bridge neighboring Ag( i ) ions, forming a 1D tubular framework. Further, when L 1 and bbtr are used to react with AgBF 4 , two scarcely reported mixed-ligand polymorphic cluster-based Ag I frameworks, 2 (1D) and 3 (2D), can be isolated under different reaction temperatures. Further, free BF 4 anions within the crystalline framework of 2 can be exchanged with PF 6 anions to generate the anion exchanged crystalline product {[Ag 2 (L 1 ) 2 (bbtr)](PF 6 ) 2 } n ( 4 ) in a single-crystal-to-single-crystal (SCSC) manner. For 5 , tetradentate L 2 ligands bridge neighboring Ag I centers, leading to a 3D coordination polymer. The solid state luminescence properties of 15 have been investigated, indicating strong fluorescent emissions. Additionally, luminescence measurements illustrate that complex 5 exhibits highly selective and sensitive luminescence sensing of Cr 2 O 7 2 ions in aqueous solutions with high quenching efficiency ( K sv = 1.53 10 4 L mol 1 ) and low detection limit (0.23 M (S/N = 3)), which make it a promising candidate for sensing Cr 2 O 7 2 anion pollutants in the actual measurement process. 5 is the first coordination polymer based on a bis-(1,2,3-triazole) derivative as luminescent probes of Cr 2 O 7 2 ions in aqueous solutions. In this work, a series of luminescent Ag( i ) coordination polymers with two new bis-(1,2,3-triazole) ligands have been prepared and characterized.</abstract><doi>10.1039/c6ce01275b</doi><tpages>13</tpages></addata></record>
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source Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection
subjects Anion exchanging
Coordination polymers
Crystal structure
Detection
Exchange
Ligands
Luminescence
Photoluminescence
title Hydrothermal synthesis and characterization of a series of luminescent Ag() coordination polymers with two new multidentate bis-(1,2,3-triazole) ligands: structural diversity, polymorphism and photoluminescent sensing
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