材料科学
石墨烯
热传导
电子设备和系统的热管理
数码产品
纳米技术
热导率
制作
光电子学
热的
光热治疗
极端环境
热辐射
发射率
消散
等离子体子
灵活性(工程)
对流
红外线的
极端紫外线
极寒
温度循环
自然对流
辐射
柔性电子器件
气凝胶
紫外线
作者
Hengrui Gu,Wei Gu,Kerui LI,Chengyi Hou,Qinghong Zhang,Kerui Li,HongZhi Wang
标识
DOI:10.1002/adfm.202523590
摘要
ABSTRACT Graphene paper with lightweight, excellent mechanical flexibility and strength, and high temperature tolerance is promising for efficient thermal management of advanced electronics in extreme environments. Yet, challenges exist in endowing a graphene paper with high thermal radiation and convection beyond thermal conduction by a facile fabrication to improve the heat‐dissipation efficiency. Herein, inspired by the bumpy‐structural skin on desert lizards, we develop tri‐mode integrated graphene paper (termed 3MI‐GP) with biomimetic densely‐distributed “micro‐radiators” for heat dissipation through a simple, custom‐design crumpled‐template method. The distributed micro‐radiators induce plasmonic resonance in the infrared region to enhance emissivity from 0.50 to 0.91, and the anti‐counter‐rotating vortex pair to achieve 51.1 W m −1 K −1 natural convection coefficient while preserving exceptional thermal conductivity (1030 W m −1 K −1 ). Consequently, the 3MI‐GP enables the temperature decrease of 61.6 C from 350 C, and remains stable after vacuum high/low temperature cycling (−196∼200 C) and ultraviolet irradiation (600 W m −2 for 14 days), indicating their excellent cooling ability in extreme environments. Notably, the 3MI‐GP demonstrates great heat dissipation efficacy in frameless motors applied in anthropomorphic robotic systems, with temperature reduction of 28.5 C under operational loads.
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