错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Printing of 3D photonic crystals in titania with complete bandgap across the visible spectrum

  • Wang Zhang,
  • Jiakang Min,
  • Hao Wang,
  • Hongtao Wang,
  • Xue Liang Li,
  • Son Tung Ha,
  • Biao Zhang,
  • Cheng-Feng Pan,
  • Hao Li,
  • Hailong Liu,
  • Hui Yin,
  • Xiaolong Yang,
  • Siqi Liu,
  • Xiaodong Xu,
  • Chaobin He,
  • Hui Ying Yang,
  • Joel K. W. Yang

摘要

A photonic bandgap is a range of wavelengths wherein light is forbidden from entering a photonic crystal, similar to the electronic bandgap in semiconductors. Fabricating photonic crystals with a complete photonic bandgap in the visible spectrum presents at least two important challenges: achieving a material refractive index > ~2 and a three-dimensional patterning resolution better than ~280 nm (lattice constant of 400 nm). Here we show an approach to overcome such limitations using additive manufacturing, thus realizing high-quality, high-refractive index photonic crystals with size-tunable bandgaps across the visible spectrum. We develop a titanium ion-doped resin (Ti-Nano) for high-resolution printing by two-photon polymerization lithography. After printing, the structures are heat-treated in air to induce lattice shrinkage and produce titania nanostructures. We attain three-dimensional photonic crystals with patterning resolution as high as 180 nm and refractive index of 2.4–2.6. Optical characterization reveals ~100% reflectance within the photonic crystal bandgap in the visible range. Finally, we show capabilities in defining local defects and demonstrate proof-of-principle applications in spectrally selective perfect reflectors and chiral light discriminators.