Please use this identifier to cite or link to this item: /library/oar/handle/123456789/18951
Title: Tailoring graphene to achieve negative Poisson's ratio properties
Authors: Grima, Joseph N.
Winczewski, Szymon
Mizzi, Luke
Grech, Michael C.
Cauchi, Reuben
Gatt, Ruben
Attard, Daphne
Wojciechowski, Krzysztof W.
Rybicki, Jaroslaw
Keywords: Graphene
Elasticity
Chemical models
Issue Date: 2015-02
Publisher: Wiley-VCH
Citation: Grima, J. N., Winczewski, S., Mizzi, L., Grech, M. C., Cauchi, R., Gatt, R., ... Rybicki, J. (2015). Tailoring graphene to achieve negative Poisson's ratio properties, Advanced Materials, 27(8), 1455-1459.
Abstract: Graphene can be made auxetic through the introduction of vacancy defects. This results in the thinnest negative Poisson's ratio material at ambient conditions known so far, an effect achieved via a nanoscale de-wrinkling mechanism that mimics the behavior at the macroscale exhibited by a crumpled sheet of paper when stretched.
Description: ճ󾱲ɴǰɲڳܲԻٳѲٲdzܲԳڴǰԳԻձ𳦳ԴDZDzٳdzܲٳ&;-2012–061ʰ𳦳(ѷ).ճ󾱲𲹰ɲܱǰٱ貹ʳ-ҰԴڰٰܳٳܰ.ճܳٳǰٱڳܱԴǷɱ岵ٳմ𳾾dzܳٱԳٰһ岹Բ(մ)ԻʴdzԲܱdzܳپԲԻٷɴǰ쾱ԲԳٱ(ʰ䳧)��ڴǰDZ徱ԲٳdzܳٱپԻٳڲپ.ܾ賾ԳdzܰٳdzܲٳܰDZ𲹲𲵾DzԲٱ𱹱DZ賾ԳܲԻ,ʰ𳦳ٹ-080“AܱdzܳپԲǰٴǰڴǰٳԾٲǴѲٲ”ɲܲ.
URI: https://www.um.edu.mt/library/oar//handle/123456789/18951
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