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基于ITO/Al/ITO结构的红外-可见光兼容隐身薄膜制备与性能研究

Properties of Infrared-Visible Compatible Stealth Films Based on ITO/Al/ITO Structures

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【作者】 谷东董玲杨季薇李海平李杰朱归胜徐华蕊

【Author】 GU Dong;DONG Ling;YANG Jiwei;LI Haiping;LI Jie;ZHU Guisheng;XU Huarui;Guangxi Key Laboratory of Information Materials, Engineering Research Center of Electronic Information Materials and Devices,Ministry of Education, School of Materials Science and Engineering, Guilin University of Electronic Science and Technology;School of Petroleum and Chemical Engineering, Beibu Gulf University;

【通讯作者】 朱归胜;

【机构】 桂林电子科技大学材料科学与工程学院电子信息材料与器件教育部工程研究中心广西信息材料重点实验室北部湾大学石油与化工学院

【摘要】 红外-可见光兼容隐身材料因突破单波段隐身材料的局限,能够应对多波段侦察技术而备受关注。本文利用直流磁控溅射制备了具有不同厚度Al间隔层的ITO/Al/ITO复合薄膜。通过多膜层间的表面和界面效应及多波段光学耦合等光学效应协同作用,获得了一种可见光高透过与红外高反射的ITO/Al/ITO复合薄膜。XRD表征结果显示,Al层的插入改善了ITO薄膜的结晶性。良好的晶体结构有助于载流子的运动,与载流子迁移率为11.1 cm2·V-1·s-1的双层ITO薄膜相比,复合薄膜的载流子迁移率提升到24.2 cm2·V-1·s-1。Al层溅射时间9和12 s的复合薄膜的可见光透过率和红外光反射率均大于80%。

【Abstract】 Infrared-visible compatible stealth materials have attracted much attention for breaking through the limitation of single-band stealth materials and being able to cope with multi-band reconnaissance technology. In this paper, ITO/Al/ITO composite films with different thicknesses of Al spacer layers were prepared by DC magnetron sputtering. Through the synergistic effect of optical effects such as surface and interface effects and multi-band optical coupling among multiple film layers, a kind of ITO/Al/ITO composite film with high visible light transmission and high infrared reflection is obtained. XRD characterization results show that, the insertion of the Al layer improves the crystallinity of the ITO film, the good crystal structure contributes to the movement of carriers, and the carrier mobility of the composite film is enhanced to 24. 2 cm2·V-1·s-1 compared with that of the bilayer ITO film, which has a carrier mobility of 11. 1 cm2·V-1·s-1. The visible light transmittance and infrared light reflectance of the composite films with Al layer sputtering time of 9 and 12 s are both greater than 80%.

【基金】 国家自然科学基金(62354007,U21A2065);广西科技计划项目(AD23023013,AA21077018);桂林市创新平台和人才计划(20220120-1)
  • 【文献出处】 人工晶体学报 ,Journal of Synthetic Crystals , 编辑部邮箱 ,2025年09期
  • 【分类号】TB383.2
  • 【下载频次】39
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