碲化铋
材料科学
半导体
碳纳米管
热导率
热电效应
纳米技术
纳米管
纳米材料
复合材料
铋
纳米复合材料
纳米颗粒
标度系数
热电材料
涂层
热稳定性
光电子学
多孔性
介孔材料
布基纸
电阻率和电导率
渗透(战争)
穿透深度
弹道传导
作者
Xiaona Yang,Xiao Yang,Xinyi Chen,Minzhi Du,Yong Du,Ting Zhang,Haisheng Chen,Kun Zhang
出处
期刊:Small
[Wiley]
日期:2025-09-30
卷期号:21 (47): e07156-e07156
标识
DOI:10.1002/smll.202507156
摘要
Abstract Directly mixing or coating inorganic semiconductors with fibrous nanomaterials offers a route to flexible thermoelectric filaments (TEFs), but this approach usually results in nanocomposites with low electrical conductivity, high thermal conductivity, and compromised mechanical flexibility. Here, a strategy to create a 3D penetration network of inorganic semiconductors within carbon nanotube filaments (CNTFs) is developed, resulting in high zT and mechanical stability. Highly porous hydroxylated CNTFs (HCNTFs) formed by hydrogen peroxide treatment allow the radial penetration of bismuth telluride nanoparticles into HCNTFs via dip‐coating. The 3D penetration network of inorganic semiconductors within HCNTFs does not deteriorate carrier transport but suppresses thermal transport due to abundant nanograins and mesopores in hybrid TEFs. The thermal conductivity remains low (≈1–2 W m −1 K −1 ), comparable to pure bismuth telluride, while the power factor doubles compared to conventional coated samples, resulting in one order of magnitude higher zT values (up to 0.34 for p ‐type and 0.14 for n ‐type at 303 K), making it one of the best CNT‐based hybrid TE materials. It exhibits outstanding flexibility and stability without delamination after 2000 bending cycles. A 3D flexible TE textile, fabricated by embroidering p–n segmented TEFs into knitted fabric, demonstrates potential applications for a remote fire alarm system.
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