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首页> 外文期刊>Journal of Applied Physics >Optical and elastic properties of diamond-like carbon with metallic inclusions: A theoretical study
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Optical and elastic properties of diamond-like carbon with metallic inclusions: A theoretical study

机译:具有金属夹杂物的类金刚石碳的光学和弹性性质:理论研究

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A tough material commonly used in coatings is diamond-like carbon (DLC), that is, amorphous carbon with content in four-fold coordinated C higher than ∼70%, and its composites with metal inclusions. This study aims to offer useful guidelines for the design and development of metal-containing DLC coatings for solar collectors, where the efficiency of the collector depends critically on the performance of the absorber coating. We use first-principles calculations based on density functional theory to study the structural, electronic, optical, and elastic properties of DLC and its composites with Ag and Cu inclusions at 1.5% and 3.0% atomic concentration, to evaluate their suitability for solar thermal energy harvesting. We find that with increasing metal concentration optical absorption is significantly enhanced while at the same time, the composite retains good mechanical strength: DLC with 70–80% content in four-fold coordinated C and small metal concentrations (<3 at. %) will show high absorption in the visible (absorption coefficients higher than 105 cm-1) and good mechanical strength (bulk and Young's modulus higher than 300 and 500 GPa, respectively).
机译:涂料中常用的一种坚韧材料是类金刚石碳(DLC),即四元配位碳含量高于70%的无定形碳,及其与金属夹杂物的复合材料。这项研究旨在为太阳能集热器的含金属DLC涂层的设计和开发提供有用的指导,其中集热器的效率主要取决于吸收剂涂层的性能。我们使用基于密度泛函理论的第一性原理计算来研究DLC及其在1.5%和3.0%原子浓度的Ag和Cu夹杂物的复合材料的结构,电子,光学和弹性性能,以评估其对太阳能的适用性收获。我们发现,随着金属浓度的增加,光吸收显着增强,而复合材料仍保持良好的机械强度:DLC在四重配位C中含量为70-80%,并且金属浓度较小(<3 at。%)在可见光中表现出较高的吸收率(吸收系数高于10 5 cm -1 )和良好的机械强度(体积和杨氏模量分别高于300和500 GPa)。

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