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Three-Dimensional (3D) Conductive Network of CNT-Modified Short Jute Fiber-Reinforced Natural Rubber: Hierarchical CNT-Enabled Thermoelectric and Electrically Conductive Composite Interfaces

机译:CNT改性短捷纤维增强天然橡胶三维(3D)导电网络:支持分层CNT的热电和导电复合界面

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Jute fibers (JFs) coated with multiwall carbon nanotubes (MWCNTs) have been introduced in a natural rubber (NR) matrix creating a three-dimensional (3D) electrically conductive percolated network. The JF-CNT endowed electrical conductivity and thermoelectric properties to the final composites. CNT networks fully covered the fiber surfaces as shown by the corresponding scanning electron microscopy (SEM) analysis. NR/JF-CNT composites, at 10, 20 and 30 phr (parts per hundred gram of rubber) have been manufactured using a two-roll mixing process. The highest value of electrical conductivity ( σ ) was 81 S/m for the 30 phr composite. Thermoelectric measurements revealed slight differences in the Seebeck coefficient ( S ), while the highest power factor ( PF ) was 1.80 × 10 ?2 μW/m K ?2 for the 30 phr loading. The micromechanical properties and electrical response of the composite’s conductive interface have been studied in peak force tapping quantitative nanomechanical (PFT QNM) and conductive atomic force microscopy (c-AFM) mode. The JF-CNT create an electrically percolated network at all fiber loadings endowing electrical and thermoelectric properties to the NR matrix, considered thus as promising thermoelectric stretchable materials.
机译:涂覆有多壁碳纳米管(MWCNT)的黄麻纤维(JFS)已经在天然橡胶(NR)矩阵中引入了形成三维(3D)导电渗流网络。 JF-CNT赋予最终复合材料的电导率和热电性能。 CNT网络完全覆盖光纤表面,如相应的扫描电子显微镜(SEM)分析所示。使用双辊混合过程制造了10,20和30phr(每百克橡胶的零件)的NR / JF-CNT复合材料。对于30phph复合材料,电导率最高值(σ)为81 s / m。热电测量揭示了塞贝克系数的轻微差异,而最高功率因数(PF)为10×10?2μW/ mk≤2,用于30phr加载。已经在峰值攻丝定量纳米机械(PFT QNM)和导电原子力显微镜(C-AFM)模式中研究了复合材料导电界面的微机械性能和电气响应。 JF-CNT在赋予NR矩阵的所有纤维载体中产生电渗滤网,其作为NR基质,因此考虑是有前途的热电可伸展材料。

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