Department of Energy and Materials Engineering, Dongguk University , Seoul 04620, Republic of Korea.
ACS Appl Mater Interfaces. 2017 Oct 4;9(39):34305-34313. doi: 10.1021/acsami.7b08987. Epub 2017 Sep 19.
High electrical conductivity of metal oxide thin films needs uniform surface coverage, which has been the issue for the thin films based on electrospun nanofibers (NFs) that have advantage over the sputtered/spin-coated films with respect to large surface area and mechanical flexibility. Herein, we investigated a reduction in the sheet resistance of electrospun indium tin oxide (ITO) NF films with improved surface coverage. We found that the surface coverage depends significantly on the electrospinnable polymer concentration in the precursor solutions, especially after post-hot-plate annealing following the infrared radiation furnace treatment. The postannealing process increases crystallinity and oxygen vacancies. However, with a higher PVP content, it makes the surface of ITO NFs more prominently rough as a result of the formation of larger sphere-shaped ITO particles on the NF surface, which gives rise to poor surface coverage. A less poly(vinylpyrrolidone) (PVP) content in ITO NF films by electrospinning for short deposition times was found to improve surface coverage even after postannealing. The sheet resistance notably decreases, down to as low as 350 Ω/sq, with a high transmittance of over 90%. Our study provides an understanding on how to achieve high electrical conductivity of ITO NF films with high surface coverage, which can be utilized for the optoelectronic and sensing applications.
金属氧化物薄膜需要具有均匀的表面覆盖率才能实现高导电性,这一直是基于电纺纳米纤维(NFs)的薄膜面临的问题,与溅射/旋涂薄膜相比,电纺 NF 薄膜具有更大的表面积和更好的机械柔韧性。在此,我们研究了通过改善表面覆盖率来降低电纺氧化铟锡(ITO)NF 薄膜的方阻值。我们发现,表面覆盖率显著依赖于前驱体溶液中的可纺聚合物浓度,尤其是在红外辐射炉处理后进行热板退火之后。后退火过程会增加结晶度和氧空位。然而,较高的 PVP 含量会使 ITO NF 的表面更加粗糙,因为在 NF 表面上形成了更大的球形 ITO 颗粒,从而导致表面覆盖率较差。通过电纺较短的沉积时间,在 ITO NF 薄膜中使用较少的聚(乙烯基吡咯烷酮)(PVP)可以提高表面覆盖率,即使在后退火之后也是如此。薄膜的方阻值显著降低,低至 350 Ω/sq,同时透光率超过 90%。我们的研究提供了一种理解途径,即如何实现具有高表面覆盖率的 ITO NF 薄膜的高导电性,这可用于光电和传感应用。