Wang Zhaohui, Carter Jeffrey A, Lagutchev Alexei, Koh Yee Kan, Seong Nak-Hyun, Cahill David G, Dlott Dana D
School of Chemical Sciences, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Science. 2007 Aug 10;317(5839):787-90. doi: 10.1126/science.1145220.
At the level of individual molecules, familiar concepts of heat transport no longer apply. When large amounts of heat are transported through a molecule, a crucial process in molecular electronic devices, energy is carried by discrete molecular vibrational excitations. We studied heat transport through self-assembled monolayers of long-chain hydrocarbon molecules anchored to a gold substrate by ultrafast heating of the gold with a femtosecond laser pulse. When the heat reached the methyl groups at the chain ends, a nonlinear coherent vibrational spectroscopy technique detected the resulting thermally induced disorder. The flow of heat into the chains was limited by the interface conductance. The leading edge of the heat burst traveled ballistically along the chains at a velocity of 1 kilometer per second. The molecular conductance per chain was 50 picowatts per kelvin.
在单个分子层面,常见的热传输概念不再适用。当大量热量通过分子传输时,这是分子电子器件中的一个关键过程,能量由离散的分子振动激发携带。我们通过用飞秒激光脉冲对金进行超快加热,研究了通过锚定在金基底上的长链烃分子自组装单分子层的热传输。当热量到达链端的甲基时,一种非线性相干振动光谱技术检测到了由此产生的热致无序。进入链中的热流受到界面电导的限制。热脉冲的前沿以每秒1公里的速度沿链弹道式传播。每条链的分子电导为每开尔文50皮瓦。