...
首页> 外文期刊>Chemical science >Aerosol-assisted route to low-E transparent conductive gallium-doped zinc oxide coatings from pre-organized and halogen-free precursor
【24h】

Aerosol-assisted route to low-E transparent conductive gallium-doped zinc oxide coatings from pre-organized and halogen-free precursor

机译:来自预组织和无卤素前体的气溶胶辅助途径到低E透明导电镓掺杂的氧化锌涂层

获取原文
           

摘要

Thermal control in low-emission windows is achieved by the application of glazings, which are simultaneously optically transparent in the visible and reflective in the near-infrared (IR). This phenomenon is characteristic of coatings with wide optical band gaps that have high enough charge carrier concentrations for the material to interact with electromagnetic radiation in the IR region. While conventional low-E coatings are composed of sandwiched structures of oxides and thin Ag films or of fluorinated SnO _(2) coatings, ZnO-based glazing offers an environmentally stable and economical alternative with competitive optoelectronic properties. In this work, gallium-doped zinc oxide (GZO) coatings with properties for low-E coatings that exceed industrial standards ( T _(visible) > 82%; R _(2500 nm) > 90%; λ _((plasma)) = 1290 nm; ρ = 4.7 × 10 ~(?4) Ω cm; R _(sh) = 9.4 Ω·□ ~(?1) ) are deposited through a sustainable and environmentally friendly halogen-free deposition route from [Ga(acac) _(3) ] and a pre-organized zinc oxide precursor [EtZnO ~(i) Pr] _(4) ( 1 ) via single-pot aerosol-assisted chemical vapor deposition. GZO films are highly (002)-textured, smooth and compact without need of epitaxial growth. The method herein describes the synthesis of coatings with opto-electronic properties commonly achievable only through high-vacuum methods, and provides an alternative to the use of pyrophoric ZnEt _(2) and halogenated SnO _(2) coatings currently used in low-emission glazing and photovoltaic technology.
机译:通过应用玻璃窗口来实现低发射窗中的热控制,这在近红外(IR)中的可见光和反射中同时光学透明。这种现象是具有宽光带间隙的涂层的特征,其具有足够高的电荷载体浓度,用于材料与IR区域中的电磁辐射相互作用。虽然常规的低E涂层由夹带的氧化物和薄Ag薄膜或氟化的SnO _(2)涂层组成,但基于ZnO的玻璃窗提供了具有竞争光电性质的环境稳定和经济的替代品。在这项工作中,掺杂掺杂的氧化锌(GZO)涂层,具有超过工业标准的低E涂层的性能(T _(可见)> 82%; R _(2500nm)> 90%;λ_((等离子体) )= 1290nm;ρ= 4.7×10〜(Δ4)ωcm; r _(sh)=9.4Ω·□〜(Δ1)通过从[ga的可持续和环保的无卤素沉积路线沉积(ACAC)_(3)]和预组织的氧化锌前体[EtznO〜(I)Pr] _(4)(1)通过单盆气溶胶辅助化学气相沉积。 GZO薄膜高度(002) - 无需外延生长,横构,光滑和紧凑。本文的方法描述了具有光电性质的涂层的合成,通常只能通过高真空方法可实现,并提供当前用于低排放中使用的发酵型Znet _(2)和卤化的SnO _(2)涂层的替代方法玻璃和光伏技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号