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金纳米薄膜面向导热系数的实验研究 被引量:1
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作者 曹炳阳 张清光 +4 位作者 张兴 Takahashi Koji Ikuta Tatsuya 乔文明 fujii motoo 《自然科学进展》 北大核心 2006年第11期1506-1510,共5页
基于电子束-物理气相沉积法制备纳米薄膜的悬浮工艺,采用一维稳态恒热流加热法实验测量了80—300K厚度为23nm金薄膜的面向导热系数.研究表明金纳米薄膜的面向导热系数有非常显著的尺寸效应:金纳米薄膜的面向导热系数大大低于体材料的... 基于电子束-物理气相沉积法制备纳米薄膜的悬浮工艺,采用一维稳态恒热流加热法实验测量了80—300K厚度为23nm金薄膜的面向导热系数.研究表明金纳米薄膜的面向导热系数有非常显著的尺寸效应:金纳米薄膜的面向导热系数大大低于体材料的值,并且导热系数随温度的升高而增大,这一趋势与体材料导热系数的温度依赖性相反;同时,金纳米薄膜的Lorenz数大约为体材料值的3倍,并且随着温度的升高有减小的趋势,表明Wiedemann-Franz定律对于金纳米薄膜不再适用. 展开更多
关键词 纳米薄膜 面向导热系数 尺寸效应 Wiedemann-Franz定律
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Experimental Studies on Thermal and Electrical Properties of Platinum Nanofilms 被引量:5
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作者 张兴 张清光 +3 位作者 曹炳阳 fujii motoo TAKAHASHI Koji IKUTA Tatsuya 《Chinese Physics Letters》 SCIE CAS CSCD 2006年第4期936-938,共3页
We experimentally studied the in-plane thermal and electrical properties of a suspended platinum nanofilm in thickness of 15 nm. The measured results show that the in-plane thermal conductivity, the electrical conduct... We experimentally studied the in-plane thermal and electrical properties of a suspended platinum nanofilm in thickness of 15 nm. The measured results show that the in-plane thermal conductivity, the electrical conductivity and the resistance-temperature coefficient of the studied nanofilm are much less than those of the bulk material, while the Lorenz number is greater than the bulk value. Comparing with the results reported previously for the platinum nanofilm in thickness of 28 nm, we further find that the in-plane thermal conductivity, the electrical conductivity and the resistance-temperature coefficient decrease with the decreasing thickness of the nanotilm, while the Lorenz number increases with the decreasing thickness of the nanofilm. These results indicate that strong size effects exist on the in-plane thermal and electrical properties of platinum nanofilms. 展开更多
关键词 TRANSPORT CONDUCTIVITY SUPERLATTICES PHONON
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Charge and Heat Transport in Polycrystalline Metallic Nanostructures
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作者 张兴 TAKAHASHI Koji fujii motoo 《Chinese Physics Letters》 SCIE CAS CSCD 2008年第9期3360-3363,共4页
Metals are typically good conductors in which the abilities to transport charge and to transport heat can be related through the Wiedemann-Franz law. Here we report on an abnormal charge and heat transport in polycrys... Metals are typically good conductors in which the abilities to transport charge and to transport heat can be related through the Wiedemann-Franz law. Here we report on an abnormal charge and heat transport in polycrystalline metallic nanostructures in which the ability to transport charge is weakened more obviously than that to transport heat. We attribute it to the influence of the internal grain boundaries and have formulated a novel relation to predict the thermal conductivity. The Wiedemann-Franz law is then modified to account for the influence of the grain boundaries on the charge and heat transport with the predictions now agreeing well with the measured results. 展开更多
关键词 the power-law exponents PRECIPITATION durative abrupt precipitation change
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