Ovsianikov Aleksandr, Viertl Jacques, Chichkov Boris, Oubaha Mohamed, MacCraith Brian, Sakellari Ioanna, Giakoumaki Anastasia, Gray David, Vamvakaki Maria, Farsari Maria, Fotakis Costas
Nanotechnology Department, Laser Zentrum Hannover eV, Hannover, Germany.
ACS Nano. 2008 Nov 25;2(11):2257-62. doi: 10.1021/nn800451w.
Investigations into the structuring by two-photon polymerization of a nonshrinking, photosensitive, zirconium sol-gel material are presented. This hybrid material can be photostructured even when it contains up to 30 mol % of zirconium propoxide (ZPO); by varying the material's inorganic content, it is possible to modify and tune its refractive index. The introduction of ZPO significantly increases the photosensitivity of the resulting photopolymer. The fabricated three-dimensional photonic crystal structures demonstrate high resolution and a clear band-stop in the near-IR region. In contrast to common practice, no additional effort is required to precompensate for shrinkage or to improve the structural stability of the fabricated photonic crystals; this, combined with the possibility of tuning this material's optical, mechanical, and chemical properties, makes it suitable for a variety of applications by two-photon polymerization manufacturing.
本文介绍了对一种非收缩性、光敏性锆溶胶-凝胶材料进行双光子聚合结构化的研究。这种杂化材料即使含有高达30摩尔%的丙醇锆(ZPO)也能进行光结构化;通过改变材料的无机含量,可以改变和调节其折射率。ZPO的引入显著提高了所得光聚合物的光敏性。所制备的三维光子晶体结构在近红外区域表现出高分辨率和明显的带阻。与常规做法不同,无需额外努力来预先补偿收缩或提高所制备光子晶体的结构稳定性;这一点,再加上能够调节这种材料的光学、机械和化学性质,使其适用于双光子聚合制造的各种应用。