材料科学
热致变色
聚二甲基硅氧烷
硅橡胶
纳米复合材料
导电体
硅酮
复合材料
热稳定性
热导率
硫化
天然橡胶
化学工程
化学
有机化学
工程类
作者
Junbao Yan,Yuhan Cai,Hanwen Zhang,Mingyue Han,Xueyang Liu,Haojie Chen,Cui Hua Cheng,Lei Tong,Luoxin Wang,Hua Wang,Siwei Xiong
标识
DOI:10.1021/acsami.3c17947
摘要
Effective heat dissipation and real-time temperature monitoring are crucial for ensuring the long-term stable operation of modern, high-performance electronic products. This study proposes a silicon rubber polydimethylsiloxane (PDMS)-based nanocomposite with a rapid thermal response and high thermal conductivity. This nanocomposite enables both rapid heat dissipation and real-time temperature monitoring for high-performance electronic products. The reported material primarily consists of a thermally conductive layer (Al2O3/PDMS composites) and a reversible thermochromic layer (organic thermochromic material, graphene oxide, and PDMS nanocoating; OTM-GO/PDMS). The thermal conductivity of OTM-GO/Al2O3/PDMS nanocomposites reached 4.14 W m–1 K–1, reflecting an increase of 2200% relative to that of pure PDMS. When the operating temperature reached 35, 45, and 65 °C, the surface of OTM-GO/Al2O3/PDMS nanocomposites turned green, yellow, and red, respectively, and the thermal response time was only 30 s. The OTM-GO/Al2O3/PDMS nanocomposites also exhibited outstanding repeatability and maintained excellent color stability over 20 repeated applications.
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