扭转
热导率
平面(几何)
石墨
材料科学
热的
电导率
凝聚态物理
几何学
物理
复合材料
热力学
数学
量子力学
作者
Bo Sun,Lu Zhao,Zitao Chen,Song Hu,Aomiao Zhi,Junqiao Wu,Feiyu Kang,Xuezeng Tian,Xiaokun Gu
出处
期刊:Research Square - Research Square
日期:2024-10-15
被引量:2
标识
DOI:10.21203/rs.3.rs-5186005/v1
摘要
Abstract Graphite is a cornerstone material in heat dissipation due to its exceptionally high in-plane thermal conductivity (~ 2000 W m− 1 K− 1). However, its low through-plane thermal conductivity remains a bottleneck for heat dissipation, typically limited to 5–9 W m− 1 K− 1. Here we reveal that graphite, when structure is optimized, delivers a record high through-plane thermal conductivity of up to 13.4 W m− 1 K− 1 at room temperature. This enhancement is achieved by reducing the helical twist within the graphite crystal structure. We demonstrate that while having minimal impact on in-plane conductivity, these twists significantly hinder heat-carrying phonons traveling through-plane. This work establishes a new benchmark for graphite's thermal properties and paves the way for unlocking its full potential in thermal management applications.
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