Ethyl cellulose/carbonized spent coffee ground-based biocomposites for superior hydrophobicity and electric protection performance

COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING(2024)

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摘要
Endowing naturally-derived electric protection materials with hydrophobicity is required to guarantee their service reliability under harsh environments and eco-friendly disposal. Herein, a conductive biocomposite was designed and fabricated using a melt-processable ethyl cellulose (EC) matrix, and a carbonized spent coffee ground (CSCG) filler with a nitrogen-doped sp(2) hybridized carbon structure. In terms of functional groups, defects, and crystal structure, CSCG prepared at 1000 C-degrees was the best suited for improving the electrical conductivity and electromagnetic interference shielding effectiveness (EMI SE) of the fabricated composites. The EC composite containing 70 wt% CSCG prepared at 1000 C-degrees exhibited an electrical conductivity of 6.79 x 10(1) S/m, an EMI SE/thickness of 13.2 dB/mm, and a water contact angle of similar to 104(degrees). Therefore, the material design strategy used in this study can provide insight into the development of naturally-derived electric protection materials with hydrophobicity.
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关键词
A. Cellulose,A. Polymer-matrix composites (PMCs),B. Electrical properties,B. Porosity
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