简介概要

Lightweight and robust rGO/sugarcane derived hybrid carbon foams with outstanding EMI shielding performance

来源期刊:JOURNAL OF MATERIALS SCIENCE TECHNOLOG2020年第17期

论文作者:Lei Wang Xuetao Shi Junliang Zhang Yali Zhang Junwei Gu

文章页码:119 - 126

摘    要:Increasingly severe electromagnetic pollution is now in urgent need of materials with lightweight, excellent flame retardancy, and outstanding electromagnetic interference shielding effectiveness(EMI SE).Renewable source-derived carbon foams and graphene have attracted extensive attention due to their 3D porous structure and remarkable electrical conductivity(). In this work, annealed sugarcane(ASC)was prepared by removal of lignin from sugarcane via hydrothermal reaction, followed by annealing treatment. Then graphene oxide(GO) was filled by vacuum-assisted impregnation process and thermally annealed to obtain the ASC/reduced graphene oxide(rGO) hybrid foams. When the loading of rGO is 17 wt.%, the ASC/rGO hybrid foam(density, of 0.047 g/cm3) exhibits the optimal of 6.0 S/cm, EMI SE of 53 dB, specific SE(SSE = SE/)/thickness(t) of 3830 dB·cm2/g, and compressive strength of 1.33 MPa, which is 76%, 36%, 13% and 6% higher than those of ASC, respectively. Moreover, ASC/rGO presents excellent flame retardancy, thermal stability, and heat insulation, which remains constant under burning on an alcohol lamp and presents low thermal conductivity of 115.19 mW(m·K), close to the requirement for heat insulation. Synergistic effect of ASC and rGO not only significantly increase of ASC/rGO, but fully utilizes the capability of ASC and rGO to attenuate electromagnetic waves by virtue of unique porous structures and abundant interfaces. Such kind of lightweight EMI materials with excellent mechanical property, shielding performance, flame retardancy, and heat insulation is expected to tackle the key scientific and technical bottleneck problems of EMI materials, and will greatly expand the application of carbon nanomaterials in the field of aerospace industry.

详情信息展示

Lightweight and robust rGO/sugarcane derived hybrid carbon foams with outstanding EMI shielding performance

Lei Wang,Xuetao Shi,Junliang Zhang,Yali Zhang,Junwei Gu

Shaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University

摘 要:Increasingly severe electromagnetic pollution is now in urgent need of materials with lightweight, excellent flame retardancy, and outstanding electromagnetic interference shielding effectiveness(EMI SE).Renewable source-derived carbon foams and graphene have attracted extensive attention due to their 3D porous structure and remarkable electrical conductivity(). In this work, annealed sugarcane(ASC)was prepared by removal of lignin from sugarcane via hydrothermal reaction, followed by annealing treatment. Then graphene oxide(GO) was filled by vacuum-assisted impregnation process and thermally annealed to obtain the ASC/reduced graphene oxide(rGO) hybrid foams. When the loading of rGO is 17 wt.%, the ASC/rGO hybrid foam(density, of 0.047 g/cm3) exhibits the optimal of 6.0 S/cm, EMI SE of 53 dB, specific SE(SSE = SE/)/thickness(t) of 3830 dB·cm2/g, and compressive strength of 1.33 MPa, which is 76%, 36%, 13% and 6% higher than those of ASC, respectively. Moreover, ASC/rGO presents excellent flame retardancy, thermal stability, and heat insulation, which remains constant under burning on an alcohol lamp and presents low thermal conductivity of 115.19 mW(m·K), close to the requirement for heat insulation. Synergistic effect of ASC and rGO not only significantly increase of ASC/rGO, but fully utilizes the capability of ASC and rGO to attenuate electromagnetic waves by virtue of unique porous structures and abundant interfaces. Such kind of lightweight EMI materials with excellent mechanical property, shielding performance, flame retardancy, and heat insulation is expected to tackle the key scientific and technical bottleneck problems of EMI materials, and will greatly expand the application of carbon nanomaterials in the field of aerospace industry.

关键词:

<上一页 1 下一页 >

有色金属在线官网  |   会议  |   在线投稿  |   购买纸书  |   科技图书馆

中南大学出版社 技术支持 版权声明   电话:0731-88830515 88830516   传真:0731-88710482   Email:administrator@cnnmol.com

互联网出版许可证:(署)网出证(京)字第342号   京ICP备17050991号-6      京公网安备11010802042557号