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热解法制备碳纳米管及其在散热涂层中的应用研究
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作者 吴学红 韦新 +4 位作者 侯加文 吕财 刘勇 刘鹤 常志娟 《化工学报》 EI CSCD 北大核心 2024年第9期3360-3368,共9页
热管理在电子器件运行中起着至关重要的作用,在电子器件表面涂覆散热涂层可以有效强化辐射换热。以生物质为原材料制备碳纳米管(s-CNTs)并应用于散热涂层中,并测试其热性能。实验结果表明,反应前后均研磨比反应前研磨的s-CNTs平均孔径小... 热管理在电子器件运行中起着至关重要的作用,在电子器件表面涂覆散热涂层可以有效强化辐射换热。以生物质为原材料制备碳纳米管(s-CNTs)并应用于散热涂层中,并测试其热性能。实验结果表明,反应前后均研磨比反应前研磨的s-CNTs平均孔径小27.6%,TEM表征s-CNTs管径在50~100 nm;当s-CNTs质量分数达到6%时,制备的涂层平均辐射率达到了0.9146;涂覆s-CNT散热涂层从100℃降为室温时,降温速率高达20℃/min。因此,s-CNTs纳米涂层在电子器件散热方面具有较好的应用前景。 展开更多
关键词 生物质 复合材料 辐射 热解法 碳纳米管涂层
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碳纳米管用于聚合物基复合材料健康监测的研究进展 被引量:12
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作者 卢少微 冯春林 +3 位作者 聂鹏 王晓强 熊需海 马克明 《航空材料学报》 CAS CSCD 北大核心 2015年第2期12-20,共9页
碳纳米管因其优异的机电特性,在聚合物基复合材料的健康监测方面具有广泛的应用前景。综述聚合物基复合材料中碳纳米管传感的最新进展:碳纳米管与树脂共混、碳纳米管涂层纤维、碳纳米线和碳纳米纸。利用碳纳米管传感网络来监测结构应变... 碳纳米管因其优异的机电特性,在聚合物基复合材料的健康监测方面具有广泛的应用前景。综述聚合物基复合材料中碳纳米管传感的最新进展:碳纳米管与树脂共混、碳纳米管涂层纤维、碳纳米线和碳纳米纸。利用碳纳米管传感网络来监测结构应变损伤是不同碳纳米管传感的核心原理。碳纳米纸可以解决碳纳米管与树脂共混时的难分散、碳纳米管涂层纤维的协同变形和碳纳米线的全结构监测等问题,为碳纳米管传感工程化应用提供了条件。实现碳纳米管传感在聚合物基复合材料健康监测领域的工程化应用是未来的发展方向。 展开更多
关键词 碳纳米管 碳纳米管涂层纤维 纳米线 纳米 聚合物基复合材料 健康监测
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Corrosion resistance of self-healing three-dimensional Ti/Al-doped TiO_(2)nanotubes Ti_(3)AlC_(2)coating deposited by magnetron sputtered on copper
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作者 WANG Guo-qing WANG Ning +5 位作者 HU Yi-teng WANG Jing GAO Chuan-hui WANG Jie XUE Jun-jie YAN Ke-xin 《Journal of Central South University》 2025年第3期867-881,共15页
Copper is a versatile material,commonly utilized in power transmission and electronic devices,but its relative high reactivity necessitates a long-lasting protective technique.Here,we report a method that combines pla... Copper is a versatile material,commonly utilized in power transmission and electronic devices,but its relative high reactivity necessitates a long-lasting protective technique.Here,we report a method that combines plasma-enhanced non-equilibrium magnetron sputtering physical vapor deposition(PEUMS-PVD)and anodization to construct a self-healing three-dimensional Ti/Al-doped TiO_(2)nanotubes/Ti_(3)AlC_(2)coating on the surface of Cu substrates.This novel strategy enhances the corrosion resistance of copper substrates in marine environments,with corrosion current densities of up to 4.5643×10^(−8)A/cm^(2).Among them,the doping of nano-aluminum particles makes the coating self-healing.The mechanistic analysis of the corrosion behaviors during early immersion experiments was conducted using electrochemical noise,and revealed that during the initial stages of coating immersion,uniform corrosion predominates,with a minor occurrence of localized corrosion. 展开更多
关键词 magnetron sputtering TiO_(2)nanotubes Ti_(3)AlC_(2)coating corrosion resistance performance
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Increased photo-catalytic removal of sulfur using titania/MWCNT composite 被引量:1
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作者 Molood Barmala Abdolsamad Zarringhalam Moghadam Mohammad Reza Omidkhah 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第5期1066-1070,共5页
Titania coating of multi wall carbon nano tube(MWCNT) was carried out by sol-gel method in order to improve its photo catalytic properties.The effect of MWCNT/TiO_2 mass to volume ratio on adsorption ability,reaction ... Titania coating of multi wall carbon nano tube(MWCNT) was carried out by sol-gel method in order to improve its photo catalytic properties.The effect of MWCNT/TiO_2 mass to volume ratio on adsorption ability,reaction rate and photo-catalytic removal efficiency of dibenzothiophene(DBT) from n-hexane solution was investigated using a 9 W UV lamp.The results show that the addition of nanotubes improves the photo-catalytic properties of TiO_2 by two factors;however,the DBT removal rate versus MWCNT content is found to follow a bimodal pattern.Two factors are observed to affect the removal rate of DBT and produce two optimum values for MWCNT content.First,large quantities of MWCNTs prevent light absorption by the solution and decrease removal efficiency.By contrast,a low dosage of MWCNT causes recombination of the electron holes,which also decreases the DBT removal rate.The optimum MWCNT contents in the composite are found to be 0.25 g and 0.75 g MWCNT per 80 m L of sol. 展开更多
关键词 photo oxidation DESULFURIZATION SOL-GEL TITANIA multi wall carbon nano tube (MWCNT)
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