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Application of temperature-controlled chiral hybrid structures constructed from copper(ii)-monosubstituted Keggin polyoxoanions and copper(ii)-organoamine complexes in enantioselective sensing of tartaric acid

Temperature usually occupies a crucial position in the construction of chiral compounds. By controlling the temperature of the reaction system, chiral and non-chiral compounds can be designed and synthesized. Given the above, three new chiral and non-chiral compounds based on copper(ii) monosubstitu...

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Autores principales: Yang, Mu-Xiu, Zhou, Meng-Jie, Cao, Jia-Peng, Han, Ye-Min, Hong, Ya-Lin, Xu, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9051601/
https://www.ncbi.nlm.nih.gov/pubmed/35492985
http://dx.doi.org/10.1039/d0ra01904f
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author Yang, Mu-Xiu
Zhou, Meng-Jie
Cao, Jia-Peng
Han, Ye-Min
Hong, Ya-Lin
Xu, Yan
author_facet Yang, Mu-Xiu
Zhou, Meng-Jie
Cao, Jia-Peng
Han, Ye-Min
Hong, Ya-Lin
Xu, Yan
author_sort Yang, Mu-Xiu
collection PubMed
description Temperature usually occupies a crucial position in the construction of chiral compounds. By controlling the temperature of the reaction system, chiral and non-chiral compounds can be designed and synthesized. Given the above, three new chiral and non-chiral compounds based on copper(ii) monosubstituted polyoxoanions and Cu(en) complexes (en = ethylenediamine), d/l-[Cu(H(2)O)(en)(2)](2){[Cu(H(2)O)(2)(en)][SiCuW(11)O(39)]}·5H(2)O (1, d-1 and l-1) and [Cu(H(2)O)(en)(2)]{[Cu(en)(2)](2)[SiCuW(11)O(39)]}·2.5H(2)O (2), were successfully synthesized under hydrothermal conditions. The main synthesis conditions of compound 1 (d-1 and l-1) and compound 2 are the same, however, the only difference is that the reaction temperatures are 80 °C and 140 °C, respectively. What's more, compounds 1 and 2 can form a 1D chiral chain by Cu–O and W/Cu–O–W/Cu bonds, respectively, and further obtain a 3D-supramolecular framework through hydrogen bonding interaction. Meanwhile, due to the asymmetry of chiral compound 1, optical second-harmonic generation (SHG) was used to investigate the second-order nonlinear optical effect and it was found that the observed SHG efficiency of compound 1 is 0.3 times that of urea. To further investigate the chiral properties, d-1 and l-1 were used in the electrochemical enantioselective sensing of d-/l-tartaric acid (d-/l-tart) molecules, respectively, which demonstrates that d-1 and l-1 have a good application prospect in sensing chiral substances.
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spelling pubmed-90516012022-04-29 Application of temperature-controlled chiral hybrid structures constructed from copper(ii)-monosubstituted Keggin polyoxoanions and copper(ii)-organoamine complexes in enantioselective sensing of tartaric acid Yang, Mu-Xiu Zhou, Meng-Jie Cao, Jia-Peng Han, Ye-Min Hong, Ya-Lin Xu, Yan RSC Adv Chemistry Temperature usually occupies a crucial position in the construction of chiral compounds. By controlling the temperature of the reaction system, chiral and non-chiral compounds can be designed and synthesized. Given the above, three new chiral and non-chiral compounds based on copper(ii) monosubstituted polyoxoanions and Cu(en) complexes (en = ethylenediamine), d/l-[Cu(H(2)O)(en)(2)](2){[Cu(H(2)O)(2)(en)][SiCuW(11)O(39)]}·5H(2)O (1, d-1 and l-1) and [Cu(H(2)O)(en)(2)]{[Cu(en)(2)](2)[SiCuW(11)O(39)]}·2.5H(2)O (2), were successfully synthesized under hydrothermal conditions. The main synthesis conditions of compound 1 (d-1 and l-1) and compound 2 are the same, however, the only difference is that the reaction temperatures are 80 °C and 140 °C, respectively. What's more, compounds 1 and 2 can form a 1D chiral chain by Cu–O and W/Cu–O–W/Cu bonds, respectively, and further obtain a 3D-supramolecular framework through hydrogen bonding interaction. Meanwhile, due to the asymmetry of chiral compound 1, optical second-harmonic generation (SHG) was used to investigate the second-order nonlinear optical effect and it was found that the observed SHG efficiency of compound 1 is 0.3 times that of urea. To further investigate the chiral properties, d-1 and l-1 were used in the electrochemical enantioselective sensing of d-/l-tartaric acid (d-/l-tart) molecules, respectively, which demonstrates that d-1 and l-1 have a good application prospect in sensing chiral substances. The Royal Society of Chemistry 2020-04-04 /pmc/articles/PMC9051601/ /pubmed/35492985 http://dx.doi.org/10.1039/d0ra01904f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yang, Mu-Xiu
Zhou, Meng-Jie
Cao, Jia-Peng
Han, Ye-Min
Hong, Ya-Lin
Xu, Yan
Application of temperature-controlled chiral hybrid structures constructed from copper(ii)-monosubstituted Keggin polyoxoanions and copper(ii)-organoamine complexes in enantioselective sensing of tartaric acid
title Application of temperature-controlled chiral hybrid structures constructed from copper(ii)-monosubstituted Keggin polyoxoanions and copper(ii)-organoamine complexes in enantioselective sensing of tartaric acid
title_full Application of temperature-controlled chiral hybrid structures constructed from copper(ii)-monosubstituted Keggin polyoxoanions and copper(ii)-organoamine complexes in enantioselective sensing of tartaric acid
title_fullStr Application of temperature-controlled chiral hybrid structures constructed from copper(ii)-monosubstituted Keggin polyoxoanions and copper(ii)-organoamine complexes in enantioselective sensing of tartaric acid
title_full_unstemmed Application of temperature-controlled chiral hybrid structures constructed from copper(ii)-monosubstituted Keggin polyoxoanions and copper(ii)-organoamine complexes in enantioselective sensing of tartaric acid
title_short Application of temperature-controlled chiral hybrid structures constructed from copper(ii)-monosubstituted Keggin polyoxoanions and copper(ii)-organoamine complexes in enantioselective sensing of tartaric acid
title_sort application of temperature-controlled chiral hybrid structures constructed from copper(ii)-monosubstituted keggin polyoxoanions and copper(ii)-organoamine complexes in enantioselective sensing of tartaric acid
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9051601/
https://www.ncbi.nlm.nih.gov/pubmed/35492985
http://dx.doi.org/10.1039/d0ra01904f
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