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Sn1- x Sm x O2 微纳米纤维的红外发射率与激光吸收性能实验研究与第一性原理仿真
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作者单位:

1.陆军工程大学石家庄校区,河北 石家庄 050003;2.河北工业职业技术大学,河北 石家庄 050091

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河北省重点研发项目(No.21351501D),省部级科研项目(LJ20212C031165),陆军工程大学基础前沿科技创新项目


Laser Absorption and Infrared Emissivity of Sn1- x Sm x O2 Micro/Nano-Fibers: Experimental Study and First-Principles Simulation
Author:
Affiliation:

1.Shijiazhuang Campus, Army Engineering University of PLA, Shijiazhuang 050003, China;2.Hebei Vocational University of Industry and Technology, Shijiazhuang 050091, China

Fund Project:

Key Research and Development Program of Hebei Province (21351501D); Military Scientific Research Project (LJ20212C031165); Basic Frontier Science and Technology Innovation Project of Army Engineering University of PLA (KYSZJQZL2210)

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    摘要:

    采用静电纺丝法结合热处理工艺制备了Sn1-xSmxO2x=0%,8%,16%,24%,质量分数,下同)微纳米纤维,表征了产物的物相、形貌、激光吸收性能和红外发射率,同时基于密度泛函理论的第一性原理对比分析了Sn1-xSmxO2x=0%, 16%)的相关光电性质,进一步从电子结构角度解释了Sm3+掺杂对SnO2红外发射率和激光吸收的作用机理。结果表明:经600 ℃煅烧后,Sn1-xSmxO2均为单一金红石型结构,呈现出良好的纤维形貌,纤维相互交错,形成无规则三维网状结构,且各元素在纤维上分布均匀。随着Sm3+掺杂量的增大,产物在1064和1550 nm处的反射率逐渐降低,红外发射率先减小后增大。当x=16%时,在1064 nm处的反射率为53.9%,在1550 nm处的反射率为38.5%,在8?14 μm波段的红外发射率为0.749,为“薄轻宽强”的新型激光与红外兼容隐身材料提供了一定的理论与实践依据。

    Abstract:

    Sn1-xSmxO2 (x=0wt%, 8wt%, 16wt%, 24wt%) micro/nano-fibers were prepared by electrospinning combined with heat treatment. The phase, morphology, infrared emissivity, and laser absorption properties of the products were characterized. The first principles simulation based on density functional theory was used to compare and analyze the photoelectric properties of Sn1-xSmxO2 (x=0wt%, 16wt%) material, and the effect mechanism of Sm3+ doping on the infrared emissivity and laser absorption of SnO2 from the perspective of electronic structure was further clarified. Results show that after calcination at 600 °C, the calcined Sn1-xSmxO2 micro/nano-fibers all present the single rutile structure and show good fiber morphology. The fibers interlace with each other, forming irregular three-dimensional network structure, and the elements are evenly distributed on the fiber. With increasing the Sm3+ doping amount, the reflectivity of Sn1-xSmxO2 micro/nano-fibers is decreased gradually at wavelength of 1.06 and 1.55 μm, and the infrared emission is decreased firstly and then increased. When x=16wt%, the reflectivity at wavelength of 1064 nm is 53.9%, the reflectivity at wavelength of 1550 nm is 38.5%, and the infrared emissivity at wave band of 8?14 μm is 0.749, which provides a theoretical and practical basis for the thin, light, wide-band, and high-performance laser-infrared compatible stealth materials.

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夏元佳,赵芳,李志尊,程兆刚,许宝才.Sn1- x Sm x O2 微纳米纤维的红外发射率与激光吸收性能实验研究与第一性原理仿真[J].稀有金属材料与工程,2023,52(1):31~40.[Xia Yuanjia, Zhao Fang, Li Zhizun, Cheng Zhaogang, Xu Baocai. Laser Absorption and Infrared Emissivity of Sn1- x Sm x O2 Micro/Nano-Fibers: Experimental Study and First-Principles Simulation[J]. Rare Metal Materials and Engineering,2023,52(1):31~40.]
DOI:10.12442/j. issn.1002-185X.20220315

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  • 收稿日期:2022-04-15
  • 最后修改日期:2022-05-06
  • 录用日期:2022-05-07
  • 在线发布日期: 2023-02-09
  • 出版日期: 2023-02-08