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Highly Fluorinated Barium Titanate Nanoparticle Dispersion for Fabrication of Lithographically Patterned Thin Films

机译:高氟化钛酸钡纳米粒子分散体的光刻图案化薄膜的制造

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摘要

We report the synthesis, characterization, and photopatterning of high- inorganic nanoparticles that are covered with highly fluorinated carboxylic acid and, as a result, are solution-processable in fluorous liquids. Barium titanate (BTO) nanoparticles, 7–8 nm in diameter, were prepared under solvothermal conditions and were surface-modified with perfluoroalkyl ether-type carboxylic acid molecules via ligand-exchange reactions. Thin films with a high dielectric constant (9.27 at 1 kHz) were achieved by spin-coating homogeneous solutions of BTO nanoparticles in a fluorous solvent (HFE-7500). Additionally, electron-beam lithography and photolithography were applied to the thin films of BTO nanoparticles, yielding BTO patterns with scales of 300 nm and 5 μm, respectively. Thus, an approach for a chemically non-damaging solution process of inorganic materials for device implementation was successfully demonstrated.
机译:我们报道了被高度氟化的羧酸所覆盖的高无机纳米颗粒的合成,表征和光图案化,因此可以在含氟液体中进行溶液加工。在溶剂热条件下制备直径7-8 nm的钛酸钡(BTO)纳米颗粒,并通过配体交换反应用全氟烷基醚型羧酸分子进行表面改性。通过将BTO纳米粒子的均相溶液旋涂在含氟溶剂(HFE-7500)中,可以获得具有高介电常数(1 kHz下为9.27)的薄膜。此外,将电子束光刻和光刻技术应用于BTO纳米颗粒的薄膜,分别得到300 nm和5μm规模的BTO图案。因此,成功地证明了用于装置实现的无机材料的化学无损溶液处理方法。

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