Dipartimento di Ingegneria Industriale, Università di Padova, Via Marzolo, 9, 35131 Padova, Italy.
J Am Chem Soc. 2013 Mar 6;135(9):3439-48. doi: 10.1021/ja307960z. Epub 2013 Feb 21.
We present a new colloidal synthesis of gallium-doped zinc oxide nanocrystals that are transparent in the visible and absorb in the near-infrared. Thermal decomposition of zinc stearate and gallium nitrate after hot injection of the precursors in a mixture of organic amines leads to nanocrystals with tunable properties according to gallium amount. Substitutional Ga(3+) ions trigger a plasmonic resonance in the infrared region resulting from an increase in the free electrons concentration. These nanocrystals can be deposited by spin coating, drop casting, and spray coating resulting in homogeneous and high-quality thin films. The optical transmission of the Ga-ZnO nanoparticle assemblies in the visible is greater than 90%, and at the same time, the near-infrared absorption of the nanocrystals is maintained in the films as well. Several strategies to improve the films electrical and optical properties have been presented, such as UV treatments to remove the organic compounds responsible for the observed interparticle resistance and reducing atmosphere treatments on both colloidal solutions and thin films to increase the free carriers concentration, enhancing electrical conductivity and infrared absorption. The electrical resistance of the nanoparticle assemblies is about 30 kΩ/sq for the as-deposited, UV-exposed films, and it drops down to 300 Ω/sq after annealing in forming gas at 450 °C, comparable with state of the art tin-doped indium oxide coatings deposited from nanocrystal inks.
我们提出了一种新的胶体合成方法,用于制备掺镓氧化锌纳米晶,这些纳米晶在可见光范围内透明,在近红外光范围内吸收。在将前驱体混合物热注入有机胺混合物中后,通过硬脂酸锌和硝酸镓的热分解,根据镓的含量,可得到具有可调性质的纳米晶。替代 Ga(3+) 离子在红外区域引发等离子体共振,这是由于自由电子浓度的增加。这些纳米晶可以通过旋涂、滴铸和喷涂沉积,从而得到均匀且高质量的薄膜。Ga-ZnO 纳米颗粒组装体在可见光下的光透射率大于 90%,同时,纳米晶在薄膜中的近红外吸收也得以保持。我们提出了几种改善薄膜的光电性能的策略,例如用紫外线处理去除导致观察到的颗粒间电阻的有机化合物,以及对胶体溶液和薄膜进行还原气氛处理,以增加自由载流子浓度,提高电导率和红外吸收。在未经紫外线照射的薄膜中,纳米颗粒组装体的电阻约为 30 kΩ/sq,而在 450°C 的还原气氛中退火后,电阻降至 300 Ω/sq,可与用纳米晶油墨沉积的最先进的掺锡氧化铟涂层相媲美。