材料科学
导电体
复合材料
热导率
石墨烯
聚酰亚胺
碳纳米管
碳纤维
灵活性(工程)
纳米技术
复合数
图层(电子)
统计
数学
作者
Qiang Gao,Thomas Tran,Xiao-Jian Liao,Sabine Rosenfeldt,Chao Gao,Haoqing Hou,Markus Retsch,Seema Agarwal,Andreas Greiner
标识
DOI:10.1021/acsami.2c04136
摘要
Ultralight highly porous sponges are attractive for electronic devices due to superelasticity, outstanding resilience, and thermal insulation. However, fabricating an ultralight conductive sponge with low thermal conductivity, mechanical flexibility, and piezoresistivity, as well as adjustable heating behavior, is still a challenge. Here, an ultralight carbon nanofibrous sponge fabricated by pyrolyzing a graphene oxide coated polyimide sponge is reported. The resulting carbon sponge demonstrates a high electrical conductivity of 0.03-4.72 S m-1 and a low thermal conductivity of 0.027-0.038 W m-1 K-1 (20 °C, in ambient air), as well as a low density to ∼6 mg cm-3. Additionally, the sponge exhibits mechanical flexibility, stability, excellent piezoresistivity, and an adjustable heating behavior. Hence, it could be utilized as a sensing device, including thermal management, making them promising for use in smart sportswear, human-machine interfaces, and wearable healthcare devices.
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