Controlling the volatility of the written optical state in electrochromic DNA liquid crystals

Electrochromism, the dependence of light absorption upon electronic control, finds a wide range of applications in smart materials. Here, Liu et al. show an electrochromic DNA–surfactant liquid crystal system that exhibits electrically tunable optical absorption and thermally tunable memory.

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Autores principales: Kai Liu, Justin Varghese, Jennifer Y. Gerasimov, Alexey O. Polyakov, Min Shuai, Juanjuan Su, Dong Chen, Wojciech Zajaczkowski, Alessio Marcozzi, Wojciech Pisula, Beatriz Noheda, Thomas T. M. Palstra, Noel A. Clark, Andreas Herrmann
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/314b9eef00594abca998b39e0473fb1e
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spelling oai:doaj.org-article:314b9eef00594abca998b39e0473fb1e2021-12-02T14:40:11ZControlling the volatility of the written optical state in electrochromic DNA liquid crystals10.1038/ncomms114762041-1723https://doaj.org/article/314b9eef00594abca998b39e0473fb1e2016-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms11476https://doaj.org/toc/2041-1723Electrochromism, the dependence of light absorption upon electronic control, finds a wide range of applications in smart materials. Here, Liu et al. show an electrochromic DNA–surfactant liquid crystal system that exhibits electrically tunable optical absorption and thermally tunable memory.Kai LiuJustin VargheseJennifer Y. GerasimovAlexey O. PolyakovMin ShuaiJuanjuan SuDong ChenWojciech ZajaczkowskiAlessio MarcozziWojciech PisulaBeatriz NohedaThomas T. M. PalstraNoel A. ClarkAndreas HerrmannNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-10 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kai Liu
Justin Varghese
Jennifer Y. Gerasimov
Alexey O. Polyakov
Min Shuai
Juanjuan Su
Dong Chen
Wojciech Zajaczkowski
Alessio Marcozzi
Wojciech Pisula
Beatriz Noheda
Thomas T. M. Palstra
Noel A. Clark
Andreas Herrmann
Controlling the volatility of the written optical state in electrochromic DNA liquid crystals
description Electrochromism, the dependence of light absorption upon electronic control, finds a wide range of applications in smart materials. Here, Liu et al. show an electrochromic DNA–surfactant liquid crystal system that exhibits electrically tunable optical absorption and thermally tunable memory.
format article
author Kai Liu
Justin Varghese
Jennifer Y. Gerasimov
Alexey O. Polyakov
Min Shuai
Juanjuan Su
Dong Chen
Wojciech Zajaczkowski
Alessio Marcozzi
Wojciech Pisula
Beatriz Noheda
Thomas T. M. Palstra
Noel A. Clark
Andreas Herrmann
author_facet Kai Liu
Justin Varghese
Jennifer Y. Gerasimov
Alexey O. Polyakov
Min Shuai
Juanjuan Su
Dong Chen
Wojciech Zajaczkowski
Alessio Marcozzi
Wojciech Pisula
Beatriz Noheda
Thomas T. M. Palstra
Noel A. Clark
Andreas Herrmann
author_sort Kai Liu
title Controlling the volatility of the written optical state in electrochromic DNA liquid crystals
title_short Controlling the volatility of the written optical state in electrochromic DNA liquid crystals
title_full Controlling the volatility of the written optical state in electrochromic DNA liquid crystals
title_fullStr Controlling the volatility of the written optical state in electrochromic DNA liquid crystals
title_full_unstemmed Controlling the volatility of the written optical state in electrochromic DNA liquid crystals
title_sort controlling the volatility of the written optical state in electrochromic dna liquid crystals
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/314b9eef00594abca998b39e0473fb1e
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