Chiral recognition and enantiomer excess determination based on emission wavelength change of AIEgen rotor

Artificial receptors for chiral recognition are important in enantiomer excess analysis but current artificial detectors are based on fluorescence intensity changes only. Here the authors propose a different detection mechanism based on change of the fluorescence emission wavelength of an AIEgen rot...

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Autores principales: Ming Hu, Ying-Xue Yuan, Weizhou Wang, Dong-Mi Li, Hong-Chao Zhang, Bai-Xing Wu, Minghua Liu, Yan-Song Zheng
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/ddb6fe850e934fd4bb87da15a3666340
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spelling oai:doaj.org-article:ddb6fe850e934fd4bb87da15a36663402021-12-02T17:31:57ZChiral recognition and enantiomer excess determination based on emission wavelength change of AIEgen rotor10.1038/s41467-019-13955-z2041-1723https://doaj.org/article/ddb6fe850e934fd4bb87da15a36663402020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13955-zhttps://doaj.org/toc/2041-1723Artificial receptors for chiral recognition are important in enantiomer excess analysis but current artificial detectors are based on fluorescence intensity changes only. Here the authors propose a different detection mechanism based on change of the fluorescence emission wavelength of an AIEgen rotor.Ming HuYing-Xue YuanWeizhou WangDong-Mi LiHong-Chao ZhangBai-Xing WuMinghua LiuYan-Song ZhengNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ming Hu
Ying-Xue Yuan
Weizhou Wang
Dong-Mi Li
Hong-Chao Zhang
Bai-Xing Wu
Minghua Liu
Yan-Song Zheng
Chiral recognition and enantiomer excess determination based on emission wavelength change of AIEgen rotor
description Artificial receptors for chiral recognition are important in enantiomer excess analysis but current artificial detectors are based on fluorescence intensity changes only. Here the authors propose a different detection mechanism based on change of the fluorescence emission wavelength of an AIEgen rotor.
format article
author Ming Hu
Ying-Xue Yuan
Weizhou Wang
Dong-Mi Li
Hong-Chao Zhang
Bai-Xing Wu
Minghua Liu
Yan-Song Zheng
author_facet Ming Hu
Ying-Xue Yuan
Weizhou Wang
Dong-Mi Li
Hong-Chao Zhang
Bai-Xing Wu
Minghua Liu
Yan-Song Zheng
author_sort Ming Hu
title Chiral recognition and enantiomer excess determination based on emission wavelength change of AIEgen rotor
title_short Chiral recognition and enantiomer excess determination based on emission wavelength change of AIEgen rotor
title_full Chiral recognition and enantiomer excess determination based on emission wavelength change of AIEgen rotor
title_fullStr Chiral recognition and enantiomer excess determination based on emission wavelength change of AIEgen rotor
title_full_unstemmed Chiral recognition and enantiomer excess determination based on emission wavelength change of AIEgen rotor
title_sort chiral recognition and enantiomer excess determination based on emission wavelength change of aiegen rotor
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/ddb6fe850e934fd4bb87da15a3666340
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AT yingxueyuan chiralrecognitionandenantiomerexcessdeterminationbasedonemissionwavelengthchangeofaiegenrotor
AT weizhouwang chiralrecognitionandenantiomerexcessdeterminationbasedonemissionwavelengthchangeofaiegenrotor
AT dongmili chiralrecognitionandenantiomerexcessdeterminationbasedonemissionwavelengthchangeofaiegenrotor
AT hongchaozhang chiralrecognitionandenantiomerexcessdeterminationbasedonemissionwavelengthchangeofaiegenrotor
AT baixingwu chiralrecognitionandenantiomerexcessdeterminationbasedonemissionwavelengthchangeofaiegenrotor
AT minghualiu chiralrecognitionandenantiomerexcessdeterminationbasedonemissionwavelengthchangeofaiegenrotor
AT yansongzheng chiralrecognitionandenantiomerexcessdeterminationbasedonemissionwavelengthchangeofaiegenrotor
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