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一种测量单个纳米颗粒比热的焦耳加热-针尖增强拉曼闪光法
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作者 樊傲然 李秦宜 +1 位作者 马维刚 张兴 《科学通报》 EI CAS CSCD 北大核心 2018年第27期2896-2903,共8页
纳米颗粒在复合材料及纳米器件中有广泛的应用,研究单个纳米颗粒的性能对纳米科技的发展有至关重要的作用.然而,受限于传统测量方法的空间分辨率,目前尚未报道有效的测量单个纳米颗粒热物性的方法.本文利用焦耳加热和针尖增强拉曼闪光法... 纳米颗粒在复合材料及纳米器件中有广泛的应用,研究单个纳米颗粒的性能对纳米科技的发展有至关重要的作用.然而,受限于传统测量方法的空间分辨率,目前尚未报道有效的测量单个纳米颗粒热物性的方法.本文利用焦耳加热和针尖增强拉曼闪光法,设计了一种测量单个纳米颗粒比热的方法.将单个纳米颗粒放置在基底上,使用镀铂的探针作为加热器和温度探测器,探针接触纳米颗粒,通过稳态方法测量抽真空前后探针在同一温度下不同的发热量,即可通过比较求得纳米颗粒的对流换热系数;通过针尖增强拉曼散射方法,使用激光加热纳米颗粒,可获得纳米颗粒温度随时间变化曲线,结合稳态方法测定的对流换热系数,即可测定纳米颗粒的比热容和激光吸收率.分析可知,1 ns左右的激光脉冲分辨率即可满足常规状况下直径为100 nm的纳米颗粒比热的测量要求. 展开更多
关键词 纳米颗粒 测量方法 比热 拉曼闪光法
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Reduction in thermal conductivity of monolayer WS_(2) caused by substrate effect 被引量:2
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作者 Yufeng Zhang Qian Lv +5 位作者 aoran fan Lingxiao Yu Haidong Wang Weigang Ma Ruitao Lv Xing Zhang 《Nano Research》 SCIE EI CSCD 2022年第10期9578-9587,共10页
Understanding the substrate and temperature effect on thermal transport properties of transition metal dichalcogenides(TMDs)monolayers are crucial for their future applications.Herein,a dual-wavelength flash Raman(DF-... Understanding the substrate and temperature effect on thermal transport properties of transition metal dichalcogenides(TMDs)monolayers are crucial for their future applications.Herein,a dual-wavelength flash Raman(DF-Raman)method is used to measure the thermal conductivity of monolayer WS_(2) at a temperature range of 200–400 K.High measurement accuracy can be guaranteed in this method since the influence of both the laser absorption coefficient and temperature-Raman coefficient can be eliminated through normalization.The room-temperature thermal conductivity of suspended and supported WS_(2) are 28.5±2.1(30.3±2.0)and 15.4±1.9(16.9±2.1)W/(m·K),respectively,with a~50%reduction due to substrate effect.Molecular dynamics(MD)simulations reveal that the suppression of acoustic phonons is mainly responsible for the striking reduction.The behaviors of optical phonons are also unambiguously investigated using Raman spectroscopy,and the in-plane optical mode,E(Γ),is surprisingly found to be slightly enhanced while out-of-plane mode,A1g(Γ),is suppressed due to substrate interaction,mutually verified with MD results.Our study provides a solid understanding of the phonon transport behavior of WS_(2) with substrate interaction,which provides guidance for TMDs-based nanodevices. 展开更多
关键词 monolayer WS_(2) thermal conductivity substrate effect temperature effect dual-wavelength flash Raman(DF-Raman)method
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