Quantum confined peptide assemblies with tunable visible to near-infrared spectral range

Quantum confined (QC) materials have favorable photoluminescent properties, yet are less bioavailable. Here, the authors developed aromatic cyclo-dipeptides that assemble into quantum dots and organize into biocompatible QC supramolecular structures suitable for in vivo imaging and optoelectronics.

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Autores principales: Kai Tao, Zhen Fan, Leming Sun, Pandeeswar Makam, Zhen Tian, Mark Ruegsegger, Shira Shaham-Niv, Derek Hansford, Ruth Aizen, Zui Pan, Scott Galster, Jianjie Ma, Fan Yuan, Mingsu Si, Songnan Qu, Mingjun Zhang, Ehud Gazit, Junbai Li
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/e69c1ec7353b49b78fce28fed9b858fc
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spelling oai:doaj.org-article:e69c1ec7353b49b78fce28fed9b858fc2021-12-02T15:33:41ZQuantum confined peptide assemblies with tunable visible to near-infrared spectral range10.1038/s41467-018-05568-92041-1723https://doaj.org/article/e69c1ec7353b49b78fce28fed9b858fc2018-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-05568-9https://doaj.org/toc/2041-1723Quantum confined (QC) materials have favorable photoluminescent properties, yet are less bioavailable. Here, the authors developed aromatic cyclo-dipeptides that assemble into quantum dots and organize into biocompatible QC supramolecular structures suitable for in vivo imaging and optoelectronics.Kai TaoZhen FanLeming SunPandeeswar MakamZhen TianMark RuegseggerShira Shaham-NivDerek HansfordRuth AizenZui PanScott GalsterJianjie MaFan YuanMingsu SiSongnan QuMingjun ZhangEhud GazitJunbai LiNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-11 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kai Tao
Zhen Fan
Leming Sun
Pandeeswar Makam
Zhen Tian
Mark Ruegsegger
Shira Shaham-Niv
Derek Hansford
Ruth Aizen
Zui Pan
Scott Galster
Jianjie Ma
Fan Yuan
Mingsu Si
Songnan Qu
Mingjun Zhang
Ehud Gazit
Junbai Li
Quantum confined peptide assemblies with tunable visible to near-infrared spectral range
description Quantum confined (QC) materials have favorable photoluminescent properties, yet are less bioavailable. Here, the authors developed aromatic cyclo-dipeptides that assemble into quantum dots and organize into biocompatible QC supramolecular structures suitable for in vivo imaging and optoelectronics.
format article
author Kai Tao
Zhen Fan
Leming Sun
Pandeeswar Makam
Zhen Tian
Mark Ruegsegger
Shira Shaham-Niv
Derek Hansford
Ruth Aizen
Zui Pan
Scott Galster
Jianjie Ma
Fan Yuan
Mingsu Si
Songnan Qu
Mingjun Zhang
Ehud Gazit
Junbai Li
author_facet Kai Tao
Zhen Fan
Leming Sun
Pandeeswar Makam
Zhen Tian
Mark Ruegsegger
Shira Shaham-Niv
Derek Hansford
Ruth Aizen
Zui Pan
Scott Galster
Jianjie Ma
Fan Yuan
Mingsu Si
Songnan Qu
Mingjun Zhang
Ehud Gazit
Junbai Li
author_sort Kai Tao
title Quantum confined peptide assemblies with tunable visible to near-infrared spectral range
title_short Quantum confined peptide assemblies with tunable visible to near-infrared spectral range
title_full Quantum confined peptide assemblies with tunable visible to near-infrared spectral range
title_fullStr Quantum confined peptide assemblies with tunable visible to near-infrared spectral range
title_full_unstemmed Quantum confined peptide assemblies with tunable visible to near-infrared spectral range
title_sort quantum confined peptide assemblies with tunable visible to near-infrared spectral range
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/e69c1ec7353b49b78fce28fed9b858fc
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