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Controlled hydrothermal temperature provides tunable permittivity and an improved electromagnetic absorption performance of reduced graphene oxide.


ABSTRACT: Reduced graphene oxide (RGO) has been prepared by a hydrothermal reduction method to explore the effects of reaction temperature on its permittivity and electromagnetic absorption (EA) performance. This study shows that by controlling the oxygen functional groups on the RGO surface it is also possible to obtain an ideal EA performance without any other decorated nanomaterials.

SUBMITTER: Xia Y 

PROVIDER: S-EPMC9086299 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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Controlled hydrothermal temperature provides tunable permittivity and an improved electromagnetic absorption performance of reduced graphene oxide.

Xia Yilu Y   Wang Jiankun J   Chen Chaochan C   Huo Da D   Wen Yue Y   Wang Wenyue W   Sun Mengxiao M   Xu Chang C   Xie Aming A   Wu Fan F   Feng Zhangqi Z  

RSC advances 20180925 58


Reduced graphene oxide (RGO) has been prepared by a hydrothermal reduction method to explore the effects of reaction temperature on its permittivity and electromagnetic absorption (EA) performance. This study shows that by controlling the oxygen functional groups on the RGO surface it is also possible to obtain an ideal EA performance without any other decorated nanomaterials. ...[more]

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