跨尺度光热超构材料的跨波段红外光谱裁剪与应用
CSTR:
作者:
作者单位:

1.南京大学现代工程与应用科学学院;2.东南大学物理学院

作者简介:

通讯作者:

中图分类号:

基金项目:

国家重点研发计划项目(2024YFA1210500);国家自然科学基金项目(62375123);江苏省自然科学基金重点项目(BK20243009)


Cross-Band Infrared Spectral Tailoring and Application of Hierarchical Photothermal Metamaterials
Author:
Affiliation:

Fund Project:

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 资源附件
  • |
  • 文章评论
    摘要:

    红外光谱(0.78~30 μm)在物质检测、能源收集、环境感知、国防安全等领域发挥着重要作用。然而,传统材料受限于本征光学常数与热物性的强烈耦合,难以实现对红外光谱的独立、精准裁剪。近年来跨尺度光热超构材料的兴起,为解决这一挑战提供了全新范式。本文利用基于微纳结构设计的多维度、多物理场跨波段红外光谱调控机制,重点阐述了从微观电磁共振到宏观光谱、热场管理,回顾了光热超构材料在构建理想黑体与实现红外隐身方面的进展,并且深入探讨了其在辐射制冷与热光伏等能量应用中的突破。最后,我们展望了该领域在理论研究与工程应用(包括大面积制造工艺及极端环境适应性)等方面面临的挑战与机遇。

    Abstract:

    The infrared spectrum (0.78–30 μm) plays a vital role in materials detection, energy harvesting, environmental sensing, and national defense security. However, traditional materials, limited by the strong coupling between intrinsic optical constants and thermal properties, struggle to achieve independent and precise tailoring of the infrared spectrum. Recently, the emergence of hierarchical photothermal metamaterials has provided a novel paradigm to address this challenge. This paper explores a multi-dimensional, multi-physics cross-band infrared spectral modulation mechanism based on micro-nano structure design, focusing on the evolution from microscopic electromagnetic resonance to macroscopic spectral and thermal field management. It reviews the progress of photothermal metamaterials in constructing ideal blackbodies and achieving infrared camouflage, and delves into their breakthroughs in energy applications such as radiative cooling and thermophotovoltaics. Finally, we outline the challenges and opportunities facing this field in both theoretical research and engineering applications, including large-area manufacturing processes and adaptability to extreme environments.

    参考文献
    相似文献
    引证文献
引用本文

杨传浩,喻小强,周林.跨尺度光热超构材料的跨波段红外光谱裁剪与应用[J].红外,2026,47(1):17-29.

复制
分享
相关视频

文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2026-01-15
  • 最后修改日期:2026-02-07
  • 录用日期:2026-02-08
  • 在线发布日期: 2026-02-13
  • 出版日期:
文章二维码