石墨烯
共轭体系
纳米技术
材料科学
电子设备和系统的热管理
碳纳米管
导电体
焦耳加热
热传导
热的
纳米复合材料
纳米纤维
热液循环
纳米棒
自组装
热稳定性
混合材料
离子液体
产量(工程)
化学工程
离子键合
纳米结构
制作
焦耳(编程语言)
传热
作者
Meng Lan,Xiaohua Jia,Rui Tian,Lei Feng,Dan Shao,Haojie Song
出处
期刊:Carbon
[Elsevier]
日期:2024-01-22
卷期号:219: 118850-118850
被引量:20
标识
DOI:10.1016/j.carbon.2024.118850
摘要
The formation of heat conduction pathway is the key to fulfill the demand for versatile thermal management. However, constructing a three-dimensional (3D) thermal bridge in a single step is challenging and entails the critical co-dispersion of multiple fillers. Here we propose a simple and controllable method to assemble conjugated hybrids of 1D carbon nanotubes (CNTs) with 2D graphene through hydrothermal centrifugation. In addition to armoring CNTs through the conjugation effect, ionic liquid crystals (ILC) assisted the CNTs to exfoliate graphite, facilitating the co-dispersion of the binary material. Remarkably, the resulting graphene/CNTs (GC) hybrids acquire hydrophilicity from the ILC and manifest diverse states depending on the water content, including octopus-like blocks, self-limiting gels, high-concentration slurries, and dilute dispersions. Hybrid nanocomposite papers containing ANF nanofibers with 3D thermally conductive bridges yield exceptional photothermal conversion performance and Joule heating performance, rendering them suitable for flexible wearable applications. The multistate GC hybrids presented here afford a novel reference for the one-step construction of 3D thermally conductive bridges.
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