Highly enantioselective photo-polymerization enhanced by chiral nanoparticles and in situ photopatterning of chirality

Chiral nanoparticles are capable of ultrasensitive detection, characterization, and asymmetric synthesis of chiral organic and biological molecules. Here, the authors use silver nanoparticles modified with cysteine, as the sole chiral source, and unpolarized UV light, to form polydiacetylene with hi...

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Autores principales: Chenlu He, Zeyu Feng, Sizhen Shan, Mengqiao Wang, Xin Chen, Gang Zou
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/4652ec3a3daf461382456c4e705b9750
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spelling oai:doaj.org-article:4652ec3a3daf461382456c4e705b97502021-12-02T14:41:03ZHighly enantioselective photo-polymerization enhanced by chiral nanoparticles and in situ photopatterning of chirality10.1038/s41467-020-15082-62041-1723https://doaj.org/article/4652ec3a3daf461382456c4e705b97502020-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15082-6https://doaj.org/toc/2041-1723Chiral nanoparticles are capable of ultrasensitive detection, characterization, and asymmetric synthesis of chiral organic and biological molecules. Here, the authors use silver nanoparticles modified with cysteine, as the sole chiral source, and unpolarized UV light, to form polydiacetylene with high chiral asymmetry from achiral diacetylene monomers.Chenlu HeZeyu FengSizhen ShanMengqiao WangXin ChenGang ZouNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Chenlu He
Zeyu Feng
Sizhen Shan
Mengqiao Wang
Xin Chen
Gang Zou
Highly enantioselective photo-polymerization enhanced by chiral nanoparticles and in situ photopatterning of chirality
description Chiral nanoparticles are capable of ultrasensitive detection, characterization, and asymmetric synthesis of chiral organic and biological molecules. Here, the authors use silver nanoparticles modified with cysteine, as the sole chiral source, and unpolarized UV light, to form polydiacetylene with high chiral asymmetry from achiral diacetylene monomers.
format article
author Chenlu He
Zeyu Feng
Sizhen Shan
Mengqiao Wang
Xin Chen
Gang Zou
author_facet Chenlu He
Zeyu Feng
Sizhen Shan
Mengqiao Wang
Xin Chen
Gang Zou
author_sort Chenlu He
title Highly enantioselective photo-polymerization enhanced by chiral nanoparticles and in situ photopatterning of chirality
title_short Highly enantioselective photo-polymerization enhanced by chiral nanoparticles and in situ photopatterning of chirality
title_full Highly enantioselective photo-polymerization enhanced by chiral nanoparticles and in situ photopatterning of chirality
title_fullStr Highly enantioselective photo-polymerization enhanced by chiral nanoparticles and in situ photopatterning of chirality
title_full_unstemmed Highly enantioselective photo-polymerization enhanced by chiral nanoparticles and in situ photopatterning of chirality
title_sort highly enantioselective photo-polymerization enhanced by chiral nanoparticles and in situ photopatterning of chirality
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/4652ec3a3daf461382456c4e705b9750
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AT zeyufeng highlyenantioselectivephotopolymerizationenhancedbychiralnanoparticlesandinsituphotopatterningofchirality
AT sizhenshan highlyenantioselectivephotopolymerizationenhancedbychiralnanoparticlesandinsituphotopatterningofchirality
AT mengqiaowang highlyenantioselectivephotopolymerizationenhancedbychiralnanoparticlesandinsituphotopatterningofchirality
AT xinchen highlyenantioselectivephotopolymerizationenhancedbychiralnanoparticlesandinsituphotopatterningofchirality
AT gangzou highlyenantioselectivephotopolymerizationenhancedbychiralnanoparticlesandinsituphotopatterningofchirality
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