3D visualization of additive occlusion and tunable full-spectrum fluorescence in calcite

Introducing organic guests to a crystal is a convenient way to tailor its properties. Here, the authors occlude fluorescent dyes within calcite to reveal that additives can occupy distinct zones of a crystal, and strategically embed green, blue, and red dyes to create white fluorescent calcite.

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Autores principales: David C. Green, Johannes Ihli, Paul D. Thornton, Mark A. Holden, Bartosz Marzec, Yi-Yeoun Kim, Alex N. Kulak, Mark A. Levenstein, Chiu Tang, Christophe Lynch, Stephen E. D. Webb, Christopher J. Tynan, Fiona C. Meldrum
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/724c470570fe4508b101ca0330a81e59
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spelling oai:doaj.org-article:724c470570fe4508b101ca0330a81e592021-12-02T17:31:17Z3D visualization of additive occlusion and tunable full-spectrum fluorescence in calcite10.1038/ncomms135242041-1723https://doaj.org/article/724c470570fe4508b101ca0330a81e592016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13524https://doaj.org/toc/2041-1723Introducing organic guests to a crystal is a convenient way to tailor its properties. Here, the authors occlude fluorescent dyes within calcite to reveal that additives can occupy distinct zones of a crystal, and strategically embed green, blue, and red dyes to create white fluorescent calcite.David C. GreenJohannes IhliPaul D. ThorntonMark A. HoldenBartosz MarzecYi-Yeoun KimAlex N. KulakMark A. LevensteinChiu TangChristophe LynchStephen E. D. WebbChristopher J. TynanFiona C. MeldrumNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-13 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
David C. Green
Johannes Ihli
Paul D. Thornton
Mark A. Holden
Bartosz Marzec
Yi-Yeoun Kim
Alex N. Kulak
Mark A. Levenstein
Chiu Tang
Christophe Lynch
Stephen E. D. Webb
Christopher J. Tynan
Fiona C. Meldrum
3D visualization of additive occlusion and tunable full-spectrum fluorescence in calcite
description Introducing organic guests to a crystal is a convenient way to tailor its properties. Here, the authors occlude fluorescent dyes within calcite to reveal that additives can occupy distinct zones of a crystal, and strategically embed green, blue, and red dyes to create white fluorescent calcite.
format article
author David C. Green
Johannes Ihli
Paul D. Thornton
Mark A. Holden
Bartosz Marzec
Yi-Yeoun Kim
Alex N. Kulak
Mark A. Levenstein
Chiu Tang
Christophe Lynch
Stephen E. D. Webb
Christopher J. Tynan
Fiona C. Meldrum
author_facet David C. Green
Johannes Ihli
Paul D. Thornton
Mark A. Holden
Bartosz Marzec
Yi-Yeoun Kim
Alex N. Kulak
Mark A. Levenstein
Chiu Tang
Christophe Lynch
Stephen E. D. Webb
Christopher J. Tynan
Fiona C. Meldrum
author_sort David C. Green
title 3D visualization of additive occlusion and tunable full-spectrum fluorescence in calcite
title_short 3D visualization of additive occlusion and tunable full-spectrum fluorescence in calcite
title_full 3D visualization of additive occlusion and tunable full-spectrum fluorescence in calcite
title_fullStr 3D visualization of additive occlusion and tunable full-spectrum fluorescence in calcite
title_full_unstemmed 3D visualization of additive occlusion and tunable full-spectrum fluorescence in calcite
title_sort 3d visualization of additive occlusion and tunable full-spectrum fluorescence in calcite
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/724c470570fe4508b101ca0330a81e59
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