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Vertical Convective Coassembly of Refractory YSZ Inverse Opals from Crystalline Nanoparticles

机译:晶体纳米粒子难熔YSZ反蛋白石的垂直对流共组装

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摘要

A facile deposition method of 3D photonic crystals made of yttrium-stabilized zirconia (YSZ) was developed. YSZ nanoparticles with primary particle size below 10 nm and cubic crystalline phase were synthesized by hydrothermal treatment of solutions of zirconyl nitrate, yttrium nitrate and acetylacetone. Before coassembly with polystyrene (PS) microspheres, a dispersant Dolapix CE64 was added to the dialyzed sol of YSZ nanoparticles to render their surface negatively charged. Vertical convective coassembly resulted in 3D ordered YSZ/PS hybrid films, which were inverted at 500 °C in air to produce inverse opals. The linear shrinkage of the coatings was in the range 15-20%, below previously reported values for YSZ. The obtained coatings demonstrated pronounced photonic properties and retained their ordered structure after annealing at 1000 °C for 2 h. Increasing the filling fraction of crystalline nanoparticles in the templates should enable production of fully functional 3D photonic crystals for applications in high-temperature photonics.
机译:开发了一种由钇稳定的氧化锆(YSZ)制成的3D光子晶体的简便沉积方法。通过硝酸硝酸氧锆,硝酸钇和乙酰丙酮溶液的水热处理,合成了初级粒径小于10 nm且立方晶相的YSZ纳米粒子。在与聚苯乙烯(PS)微球共组装之前,将分散剂Dolapix CE64添加到YSZ纳米颗粒的渗析溶胶中,使其表面带负电。垂直对流共组装产生3D有序的YSZ / PS杂化膜,将其在500°C的空气中倒置以产生反蛋白石。涂层的线性收缩率在15-20%的范围内,低于先前报道的YSZ值。所获得的涂层表现出明显的光子特性,并在1000°C退火2 h后仍保持其有序结构。增加模板中结晶纳米颗粒的填充率将使能够生产用于高温光子学的全功能3D光子晶体。

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