Exceptionally high work density of a ferroelectric dynamic organic crystal around room temperature

Organic electronics requires dynamic materials, however, most of them have small strokes and operate at high temperatures. Here, the authors describe organic crystal that repeatedly expands and contracts nearly half its length around room temperature.

Bibliographic Details
Main Authors: Durga Prasad Karothu, Rodrigo Ferreira, Ghada Dushaq, Ejaz Ahmed, Luca Catalano, Jad Mahmoud Halabi, Zainab Alhaddad, Ibrahim Tahir, Liang Li, Sharmarke Mohamed, Mahmoud Rasras, Panče Naumov
Format: Article
Language:English
Published: Nature Portfolio 2022-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-30541-y
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author Durga Prasad Karothu
Rodrigo Ferreira
Ghada Dushaq
Ejaz Ahmed
Luca Catalano
Jad Mahmoud Halabi
Zainab Alhaddad
Ibrahim Tahir
Liang Li
Sharmarke Mohamed
Mahmoud Rasras
Panče Naumov
author_facet Durga Prasad Karothu
Rodrigo Ferreira
Ghada Dushaq
Ejaz Ahmed
Luca Catalano
Jad Mahmoud Halabi
Zainab Alhaddad
Ibrahim Tahir
Liang Li
Sharmarke Mohamed
Mahmoud Rasras
Panče Naumov
author_sort Durga Prasad Karothu
collection DOAJ
description Organic electronics requires dynamic materials, however, most of them have small strokes and operate at high temperatures. Here, the authors describe organic crystal that repeatedly expands and contracts nearly half its length around room temperature.
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language English
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publishDate 2022-05-01
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spelling doaj.art-8a9773f9029944598e24811b63b7d5412022-12-22T00:36:05ZengNature PortfolioNature Communications2041-17232022-05-0113111010.1038/s41467-022-30541-yExceptionally high work density of a ferroelectric dynamic organic crystal around room temperatureDurga Prasad Karothu0Rodrigo Ferreira1Ghada Dushaq2Ejaz Ahmed3Luca Catalano4Jad Mahmoud Halabi5Zainab Alhaddad6Ibrahim Tahir7Liang Li8Sharmarke Mohamed9Mahmoud Rasras10Panče Naumov11Smart Materials Lab, New York University Abu DhabiSmart Materials Lab, New York University Abu DhabiDivision of Engineering, New York University Abu DhabiSmart Materials Lab, New York University Abu DhabiSmart Materials Lab, New York University Abu DhabiSmart Materials Lab, New York University Abu DhabiSmart Materials Lab, New York University Abu DhabiSmart Materials Lab, New York University Abu DhabiSmart Materials Lab, New York University Abu DhabiDepartment of Chemistry, Green Chemistry & Materials Modelling Laboratory, Khalifa University of Science and TechnologyDivision of Engineering, New York University Abu DhabiSmart Materials Lab, New York University Abu DhabiOrganic electronics requires dynamic materials, however, most of them have small strokes and operate at high temperatures. Here, the authors describe organic crystal that repeatedly expands and contracts nearly half its length around room temperature.https://doi.org/10.1038/s41467-022-30541-y
spellingShingle Durga Prasad Karothu
Rodrigo Ferreira
Ghada Dushaq
Ejaz Ahmed
Luca Catalano
Jad Mahmoud Halabi
Zainab Alhaddad
Ibrahim Tahir
Liang Li
Sharmarke Mohamed
Mahmoud Rasras
Panče Naumov
Exceptionally high work density of a ferroelectric dynamic organic crystal around room temperature
Nature Communications
title Exceptionally high work density of a ferroelectric dynamic organic crystal around room temperature
title_full Exceptionally high work density of a ferroelectric dynamic organic crystal around room temperature
title_fullStr Exceptionally high work density of a ferroelectric dynamic organic crystal around room temperature
title_full_unstemmed Exceptionally high work density of a ferroelectric dynamic organic crystal around room temperature
title_short Exceptionally high work density of a ferroelectric dynamic organic crystal around room temperature
title_sort exceptionally high work density of a ferroelectric dynamic organic crystal around room temperature
url https://doi.org/10.1038/s41467-022-30541-y
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