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Reaction of chloroauric acid with histidine in microdroplets yields a catalytic Au–(His)(2) complex

An aqueous solution containing histidine (His, 100 μM) and chloroauric acid (HAuCl(4), 10 μM) is electrosprayed (−4.5 kV) from a capillary (50 μm in diameter) with N(2) nebulizing gas (120 psi). The resulting microdroplets entered a mass spectrometer with a 2 cm flight path. The mass spectrum record...

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Autores principales: Luo, Kai, Li, Jia, Cao, Yufei, Liu, Chengyuan, Ge, Jun, Chen, Hao, Zare, Richard N.
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/PMC8157187/
https://www.ncbi.nlm.nih.gov/pubmed/34084419
http://dx.doi.org/10.1039/c9sc06221a
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author Luo, Kai
Li, Jia
Cao, Yufei
Liu, Chengyuan
Ge, Jun
Chen, Hao
Zare, Richard N.
author_facet Luo, Kai
Li, Jia
Cao, Yufei
Liu, Chengyuan
Ge, Jun
Chen, Hao
Zare, Richard N.
author_sort Luo, Kai
collection PubMed
description An aqueous solution containing histidine (His, 100 μM) and chloroauric acid (HAuCl(4), 10 μM) is electrosprayed (−4.5 kV) from a capillary (50 μm in diameter) with N(2) nebulizing gas (120 psi). The resulting microdroplets entered a mass spectrometer with a 2 cm flight path. The mass spectrum recorded in negative ion mode showed several peaks including the Au(5) nanocluster with the major one being [Au + 2His–2H](−), which is a catalytically active species. The reaction time was less 1 ms, and the yield of [Au + 2His–2H](−) was 76%. In contrast, the bulk reaction for the same concentration run at room temperature for 2 h did not produce this species but instead formed Au(10) nanocluster. When a solution of water and acetonitrile (1 : 1) containing indoline (100 mM) and the phenylacetylene (200 mM) as well as histidine and chloroauric acid at the same concentrations as above was electrosprayed, the mass spectrum showed the formation of the intermediate [Au + 2His + phenylacetylene + H](+). Upon collecting the microdroplets, the 4-methyl-4,6-diphenyl-1,2-dihydro-4H-pyrrolo[3,2,1-ij] quinolone product was observed by (1)H nuclear magnetic resonance and liquid chromatography with a yield of 44%. The microdroplet synthesis using the Au–(His)(2) complex as a catalyst was scaled up using room-temperature ultrasonic nebulization to produce the product at the rate of 35 mg min(−1), which is semi-preparative and demonstrates the promise of using microdroplet reactions for chemical synthesis.
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spelling pubmed-81571872021-06-02 Reaction of chloroauric acid with histidine in microdroplets yields a catalytic Au–(His)(2) complex Luo, Kai Li, Jia Cao, Yufei Liu, Chengyuan Ge, Jun Chen, Hao Zare, Richard N. Chem Sci Chemistry An aqueous solution containing histidine (His, 100 μM) and chloroauric acid (HAuCl(4), 10 μM) is electrosprayed (−4.5 kV) from a capillary (50 μm in diameter) with N(2) nebulizing gas (120 psi). The resulting microdroplets entered a mass spectrometer with a 2 cm flight path. The mass spectrum recorded in negative ion mode showed several peaks including the Au(5) nanocluster with the major one being [Au + 2His–2H](−), which is a catalytically active species. The reaction time was less 1 ms, and the yield of [Au + 2His–2H](−) was 76%. In contrast, the bulk reaction for the same concentration run at room temperature for 2 h did not produce this species but instead formed Au(10) nanocluster. When a solution of water and acetonitrile (1 : 1) containing indoline (100 mM) and the phenylacetylene (200 mM) as well as histidine and chloroauric acid at the same concentrations as above was electrosprayed, the mass spectrum showed the formation of the intermediate [Au + 2His + phenylacetylene + H](+). Upon collecting the microdroplets, the 4-methyl-4,6-diphenyl-1,2-dihydro-4H-pyrrolo[3,2,1-ij] quinolone product was observed by (1)H nuclear magnetic resonance and liquid chromatography with a yield of 44%. The microdroplet synthesis using the Au–(His)(2) complex as a catalyst was scaled up using room-temperature ultrasonic nebulization to produce the product at the rate of 35 mg min(−1), which is semi-preparative and demonstrates the promise of using microdroplet reactions for chemical synthesis. The Royal Society of Chemistry 2020-01-31 /pmc/articles/PMC8157187/ /pubmed/34084419 http://dx.doi.org/10.1039/c9sc06221a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Luo, Kai
Li, Jia
Cao, Yufei
Liu, Chengyuan
Ge, Jun
Chen, Hao
Zare, Richard N.
Reaction of chloroauric acid with histidine in microdroplets yields a catalytic Au–(His)(2) complex
title Reaction of chloroauric acid with histidine in microdroplets yields a catalytic Au–(His)(2) complex
title_full Reaction of chloroauric acid with histidine in microdroplets yields a catalytic Au–(His)(2) complex
title_fullStr Reaction of chloroauric acid with histidine in microdroplets yields a catalytic Au–(His)(2) complex
title_full_unstemmed Reaction of chloroauric acid with histidine in microdroplets yields a catalytic Au–(His)(2) complex
title_short Reaction of chloroauric acid with histidine in microdroplets yields a catalytic Au–(His)(2) complex
title_sort reaction of chloroauric acid with histidine in microdroplets yields a catalytic au–(his)(2) complex
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157187/
https://www.ncbi.nlm.nih.gov/pubmed/34084419
http://dx.doi.org/10.1039/c9sc06221a
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