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纳米Cu/SiO2薄膜制备及其性能 被引量:2
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作者 张明朝 陈卫东 李玲 《四川师范大学学报(自然科学版)》 CAS 北大核心 2020年第4期521-527,共7页
采用热蒸发在载玻片和SiO2衬底上沉积约5. 12 nm的Cu薄膜,再用退火炉分别进行100、200、300、400和500℃等5个温度退火,得到不同温度下的纳米Cu薄膜.用原子力显微镜和紫外-可见分光光度计研究不同退火温度对纳米Cu薄膜表面形貌、粒子分... 采用热蒸发在载玻片和SiO2衬底上沉积约5. 12 nm的Cu薄膜,再用退火炉分别进行100、200、300、400和500℃等5个温度退火,得到不同温度下的纳米Cu薄膜.用原子力显微镜和紫外-可见分光光度计研究不同退火温度对纳米Cu薄膜表面形貌、粒子分布和光学性质的影响.实验结果表明:当纳米Cu薄膜在载玻片上生长Cu颗粒阵列时,需要将退火温度控制在200℃左右;若使纳米Cu薄膜在SiO2薄膜表面也能生长Cu颗粒阵列,退火温度比没有沉积SiO2薄膜的衬底高100℃,此时纳米Cu颗粒对应方均根粗糙度为7. 20 nm、峰高(Skewness)为1. 75,以及偏态(Kurtosis)为5. 67,仅透射率略低9%.这样的Cu颗粒阵列更利于做超结构薄膜与完美吸收的顶层纳米金属颗粒.当退火温度为500℃时,载玻片上生长Cu薄膜的透射率出现一个相对稳定的波段,该工艺条件制备出来的纳米Cu薄膜,可以用来制作一些微型芯片,而SiO2薄膜表面生长使纳米Cu薄膜对应方均根粗糙度为6. 25 nm、峰高为0. 57,以及偏态为2. 66.这样的Cu颗粒阵列不仅能够做大频率光电波吸收,还可以用作全固态电池中电解质上层的导电层. 展开更多
关键词 Cu薄膜阵列 方均根粗糙度 退火温度 透射率
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Morphology characteristics of joint surface in rock mass
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作者 胡建华 阮德修 +1 位作者 罗先伟 周科平 《Journal of Central South University》 SCIE EI CAS 2012年第10期2918-2925,共8页
In order to quantify the characteristics of the surface of jointed rock mass,new equipment,the three-dimensional laser surface topography instrument,was used to accurately measure surface morphology of joints.Scan pic... In order to quantify the characteristics of the surface of jointed rock mass,new equipment,the three-dimensional laser surface topography instrument,was used to accurately measure surface morphology of joints.Scan pictures and parameters were obtained to describe the rock joint surface characteristics,for example,the height frequency of surface,and mean square roughness.Using the method of fractal dimension,the values of joint roughness coefficient(JRC) were calculated based on the above parameters.It could access to the joint surface rock sample morphology of the main parameters of characteristic.The maximum peak height is 2.692 mm in the test joint plane.The maximum profile height is 4.408 mm.JRC value is 6.38 by fractal dimension computing.It belongs to the smooth joint surface.The results show that it is a kind of the effective method to quantitatively evaluate the surface topography by the three-dimensional laser surface topography instrument and the fractal dimension method.According to the results,during the process of underground large-scale mining,safe measures to prevent slip failure of the joint plane by controlling surface tension and shear mechanical response were proposed. 展开更多
关键词 joint surface morphology characteristic fi'actal dimension joint roughness coefficient
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