Controllable corrugation of chemically converted graphene sheets in water and potential applications for nanofiltration

Ling Qiu, Xuehua Zhang, Wenrong Yang, Yufei Wang, George Simon, Dan Li

Research output: Contribution to journalArticleResearchpeer-review

Abstract

A combination of AFM, SEM and permeation experiments suggests that the amplitude of corrugation of chemically converted graphene (CCG) sheets in water can be readily controlled by hydrothermal treatment, leading to a new class of permeation-tuneable nanofiltration membranes.
Original languageEnglish
Pages (from-to)5810 - 5812
Number of pages3
JournalChemical Communications
Volume47
Issue number20
DOIs
Publication statusPublished - 2011

Cite this

Qiu, Ling ; Zhang, Xuehua ; Yang, Wenrong ; Wang, Yufei ; Simon, George ; Li, Dan. / Controllable corrugation of chemically converted graphene sheets in water and potential applications for nanofiltration. In: Chemical Communications. 2011 ; Vol. 47, No. 20. pp. 5810 - 5812.
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abstract = "A combination of AFM, SEM and permeation experiments suggests that the amplitude of corrugation of chemically converted graphene (CCG) sheets in water can be readily controlled by hydrothermal treatment, leading to a new class of permeation-tuneable nanofiltration membranes.",
author = "Ling Qiu and Xuehua Zhang and Wenrong Yang and Yufei Wang and George Simon and Dan Li",
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volume = "47",
pages = "5810 -- 5812",
journal = "Chemical Communications",
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Controllable corrugation of chemically converted graphene sheets in water and potential applications for nanofiltration. / Qiu, Ling; Zhang, Xuehua; Yang, Wenrong; Wang, Yufei; Simon, George; Li, Dan.

In: Chemical Communications, Vol. 47, No. 20, 2011, p. 5810 - 5812.

Research output: Contribution to journalArticleResearchpeer-review

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T1 - Controllable corrugation of chemically converted graphene sheets in water and potential applications for nanofiltration

AU - Qiu, Ling

AU - Zhang, Xuehua

AU - Yang, Wenrong

AU - Wang, Yufei

AU - Simon, George

AU - Li, Dan

PY - 2011

Y1 - 2011

N2 - A combination of AFM, SEM and permeation experiments suggests that the amplitude of corrugation of chemically converted graphene (CCG) sheets in water can be readily controlled by hydrothermal treatment, leading to a new class of permeation-tuneable nanofiltration membranes.

AB - A combination of AFM, SEM and permeation experiments suggests that the amplitude of corrugation of chemically converted graphene (CCG) sheets in water can be readily controlled by hydrothermal treatment, leading to a new class of permeation-tuneable nanofiltration membranes.

UR - http://www.rsc.org/chemcomm

U2 - 10.1039/c1cc10720h

DO - 10.1039/c1cc10720h

M3 - Article

VL - 47

SP - 5810

EP - 5812

JO - Chemical Communications

JF - Chemical Communications

SN - 1359-7345

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