Oriented graphene nanoribbons embedded in hexagonal boron nitride trenches

Graphene nanoribbons are promising candidates for 2D material electrical interconnects; however, the top-down fabrication of nanoribbons has remained a challenge. Here, Chenet al. have used a hexagonal boron nitride template to grow narrow, integrated graphene nanoribbons with small bandgaps.

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Autores principales: Lingxiu Chen, Li He, Hui Shan Wang, Haomin Wang, Shujie Tang, Chunxiao Cong, Hong Xie, Lei Li, Hui Xia, Tianxin Li, Tianru Wu, Daoli Zhang, Lianwen Deng, Ting Yu, Xiaoming Xie, Mianheng Jiang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/811710cd812941d08ddb83ea9b354e50
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spelling oai:doaj.org-article:811710cd812941d08ddb83ea9b354e502021-12-02T17:06:17ZOriented graphene nanoribbons embedded in hexagonal boron nitride trenches10.1038/ncomms147032041-1723https://doaj.org/article/811710cd812941d08ddb83ea9b354e502017-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms14703https://doaj.org/toc/2041-1723Graphene nanoribbons are promising candidates for 2D material electrical interconnects; however, the top-down fabrication of nanoribbons has remained a challenge. Here, Chenet al. have used a hexagonal boron nitride template to grow narrow, integrated graphene nanoribbons with small bandgaps.Lingxiu ChenLi HeHui Shan WangHaomin WangShujie TangChunxiao CongHong XieLei LiHui XiaTianxin LiTianru WuDaoli ZhangLianwen DengTing YuXiaoming XieMianheng JiangNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-6 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lingxiu Chen
Li He
Hui Shan Wang
Haomin Wang
Shujie Tang
Chunxiao Cong
Hong Xie
Lei Li
Hui Xia
Tianxin Li
Tianru Wu
Daoli Zhang
Lianwen Deng
Ting Yu
Xiaoming Xie
Mianheng Jiang
Oriented graphene nanoribbons embedded in hexagonal boron nitride trenches
description Graphene nanoribbons are promising candidates for 2D material electrical interconnects; however, the top-down fabrication of nanoribbons has remained a challenge. Here, Chenet al. have used a hexagonal boron nitride template to grow narrow, integrated graphene nanoribbons with small bandgaps.
format article
author Lingxiu Chen
Li He
Hui Shan Wang
Haomin Wang
Shujie Tang
Chunxiao Cong
Hong Xie
Lei Li
Hui Xia
Tianxin Li
Tianru Wu
Daoli Zhang
Lianwen Deng
Ting Yu
Xiaoming Xie
Mianheng Jiang
author_facet Lingxiu Chen
Li He
Hui Shan Wang
Haomin Wang
Shujie Tang
Chunxiao Cong
Hong Xie
Lei Li
Hui Xia
Tianxin Li
Tianru Wu
Daoli Zhang
Lianwen Deng
Ting Yu
Xiaoming Xie
Mianheng Jiang
author_sort Lingxiu Chen
title Oriented graphene nanoribbons embedded in hexagonal boron nitride trenches
title_short Oriented graphene nanoribbons embedded in hexagonal boron nitride trenches
title_full Oriented graphene nanoribbons embedded in hexagonal boron nitride trenches
title_fullStr Oriented graphene nanoribbons embedded in hexagonal boron nitride trenches
title_full_unstemmed Oriented graphene nanoribbons embedded in hexagonal boron nitride trenches
title_sort oriented graphene nanoribbons embedded in hexagonal boron nitride trenches
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/811710cd812941d08ddb83ea9b354e50
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