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Second Time-Scale Synthesis of High-Quality Graphite Films by Quenching for Effective Electromagnetic Interference Shielding

delete2020-02-19
delete62
PRE
AI
T
Tianya Zhou
C
Chuan Xu
H
Haopeng Liu
Q
Qinwei Wei
H
Han Wang
J
Jiangang Zhang
赵通 cover
赵通 (Tong Zhao)
刘智波 (Zhibo Liu)
X
Xuefeng Zhang
Y
You Zeng
成会明 cover
成会明 (Hui–Ming Cheng)
任文才 (Wencai Ren) *
DOI:10.1021/acsnano.9b08169delete
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Abstract

Abstract

En 中文
Graphite film has many remarkable properties and intriguing applications from energy storage, electromagnetic interference (EMI) shielding, and thermal management to ultraviolet lithography. However, the existing synthesis methods require an extremely high processing temperature of similar to 3000 degrees C and/or long processing time of typically hours. Here, we report an ultrafast synthesis of tens of nanometer-thick high-quality graphite films within a few seconds by quenching a hot Ni foil in ethanol. The vertical growth rate can reach over 64 nm s(-1), which is more than 2 orders of magnitude higher than those of the existing methods. Moreover, the films show excellent electrical conductivity (similar to 2.6 X 10(5) S/m) and mechanical strength (similar to 110 MPa) comparable to or even better than those synthesized by chemical vapor deposition. As an example, we demonstrate the potential of these graphite films for effective EMI shielding, which show a record absolute shielding effectiveness of 481,000 dB cm(2) g(-1), outperforming all the reported synthetic materials.
Keywords:
graphite film
liquid carbon source quenching
electrical conductivity
mechanical strength
flexible electromagnetic interference shielding
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ACS Nano cover
ACS Nano
IF:
16
Papers:
2.6W
Citations:
25.6W

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C
chinese academy of sciences
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54.9W
Papers: 44.5W
Citations: 703
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