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喷墨打印制备高效发光 Eu 掺杂 ZrO 纳米结构。

Inkjet fabrication of highly efficient luminescent Eu-doped ZrO nanostructures.

机构信息

ITMO University, St. Petersburg, Russia.

出版信息

Nanoscale. 2017 Sep 14;9(35):13069-13078. doi: 10.1039/c7nr03175k.

Abstract

We have demonstrated for the first time an inkjet fabrication of highly efficient luminescent structures based on Eu-doped ZrO nanocrystals (3.4 ± 0.3 nm), with a refractive index close to the one of the bulk materials. The nanoparticles were synthesised using a nonhydrolytic method in benzyl alcohol where the particles were post treated using acetic acid, leading to the formation of a stable colloid. It was shown that the non-polar methyl group of the acetic acid is responsible for its penetration through the hydrophobic layer all the way through to the surface of the ZrO, leading to the cleavage of the Zr-OCHCH bond and the formation of surface acetate species and a concomitant decomposition of the zirconia superlattice. Hereby we show a new and efficient universal ink production through a multi-step process - starting from solvothermal synthesis, dispersion of nanocrystals in water, and adaptation of the rheological parameters of the resulting sols. Eventually, we were able to obtain inks that we used for the production of optical coatings, monolayer luminescent-protected holography and anti-counterfeiting printing. These structures, obtained at room temperature through inkjet printing, present dense xerogel structures with high optical transparency, a high refractive index and more efficient luminescence compared with the non-homogeneous structures produced as a mixture of rare-earth elements and nanocrystals.

摘要

我们首次展示了基于 Eu 掺杂 ZrO 纳米晶体(3.4 ± 0.3nm)的高效发光结构的喷墨制造,其折射率接近体材料的折射率。纳米粒子使用苄醇中的非水解方法合成,其中使用乙酸对颗粒进行后处理,导致形成稳定的胶体。结果表明,乙酸的非极性甲基基团负责其通过疏水性层一直穿透到 ZrO 的表面,导致 Zr-OCHCH 键的断裂和表面乙酸盐物种的形成以及氧化锆超晶格的伴随分解。在此,我们通过多步工艺展示了一种新的高效通用墨水生产方法 - 从溶剂热合成开始,将纳米晶体分散在水中,并调整所得溶胶的流变学参数。最终,我们能够获得用于生产光学涂层、单层发光保护全息图和防伪印刷的墨水。通过喷墨打印在室温下获得的这些结构具有致密的气凝胶结构,具有高光学透明度、高折射率和与作为稀土元素和纳米晶体混合物生产的非均匀结构相比更高效的发光性能。

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