Growing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability

High-volume, low-cost production of graphene is pivotal for the industrial advance of this 2D material. Here, the authors make use of naturally occurring diatomite as a 3D substrate for graphene growth, obtaining non-planar porous graphene structures after removal of the silica templates.

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Autores principales: Ke Chen, Cong Li, Liurong Shi, Teng Gao, Xiuju Song, Alicja Bachmatiuk, Zhiyu Zou, Bing Deng, Qingqing Ji, Donglin Ma, Hailin Peng, Zuliang Du, Mark Hermann Rümmeli, Yanfeng Zhang, Zhongfan Liu
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/9849ce8886a04bfe8bd07384c51beacb
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spelling oai:doaj.org-article:9849ce8886a04bfe8bd07384c51beacb2021-12-02T15:35:24ZGrowing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability10.1038/ncomms134402041-1723https://doaj.org/article/9849ce8886a04bfe8bd07384c51beacb2016-11-01T00:00:00Zhttps://doi.org/10.1038/ncomms13440https://doaj.org/toc/2041-1723High-volume, low-cost production of graphene is pivotal for the industrial advance of this 2D material. Here, the authors make use of naturally occurring diatomite as a 3D substrate for graphene growth, obtaining non-planar porous graphene structures after removal of the silica templates.Ke ChenCong LiLiurong ShiTeng GaoXiuju SongAlicja BachmatiukZhiyu ZouBing DengQingqing JiDonglin MaHailin PengZuliang DuMark Hermann RümmeliYanfeng ZhangZhongfan LiuNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ke Chen
Cong Li
Liurong Shi
Teng Gao
Xiuju Song
Alicja Bachmatiuk
Zhiyu Zou
Bing Deng
Qingqing Ji
Donglin Ma
Hailin Peng
Zuliang Du
Mark Hermann Rümmeli
Yanfeng Zhang
Zhongfan Liu
Growing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability
description High-volume, low-cost production of graphene is pivotal for the industrial advance of this 2D material. Here, the authors make use of naturally occurring diatomite as a 3D substrate for graphene growth, obtaining non-planar porous graphene structures after removal of the silica templates.
format article
author Ke Chen
Cong Li
Liurong Shi
Teng Gao
Xiuju Song
Alicja Bachmatiuk
Zhiyu Zou
Bing Deng
Qingqing Ji
Donglin Ma
Hailin Peng
Zuliang Du
Mark Hermann Rümmeli
Yanfeng Zhang
Zhongfan Liu
author_facet Ke Chen
Cong Li
Liurong Shi
Teng Gao
Xiuju Song
Alicja Bachmatiuk
Zhiyu Zou
Bing Deng
Qingqing Ji
Donglin Ma
Hailin Peng
Zuliang Du
Mark Hermann Rümmeli
Yanfeng Zhang
Zhongfan Liu
author_sort Ke Chen
title Growing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability
title_short Growing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability
title_full Growing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability
title_fullStr Growing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability
title_full_unstemmed Growing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability
title_sort growing three-dimensional biomorphic graphene powders using naturally abundant diatomite templates towards high solution processability
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/9849ce8886a04bfe8bd07384c51beacb
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