...
首页> 外文期刊>CERAMICS INTERNATIONAL >Morphological, surface and optical properties of spin-coated IrOx films; influence of spin speed, annealing and (Cr, La) codoping
【24h】

Morphological, surface and optical properties of spin-coated IrOx films; influence of spin speed, annealing and (Cr, La) codoping

机译:旋涂IROX薄膜的形态学,表面和光学性质; 旋转速度,退火和(CR,LA)编排的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Iridium oxide (IrOx) is a fascinating metal oxide with superior chemical/physical properties. The present report is an attempt to tune the surface and optical properties of II % to widen its industrial and technological applications. The influences of substrates' rotational speed (RS), annealing temperature (AT), Cr-doping and (Cr, La) codoping on the surface morphology and wettability, structural as well as the optical properties of spin-coated IrOx films are discussed. Raman spectra of the films show a characteristic phonon mode at 552 cm(-1) , arising from the Ir-O-x stretching and influenced significantly by the preparative conditions (RS and AT) as well as (Cr, La) codoping. Energy-dispersive X-ray spectra were obtained to confirm the chemical compositions of prepared IrOx nanostructure thin films. Field emission-scanning electron microscopy images reveal the growth of un-doped, Cr-doped and (Cr, La) codoped nanorod-like IrO x structures. The annealed film at 500 degrees C and Cr-doped films showed the nanoporous nature of the grown nanorod-like structures. The films are hydrophilic and follow the Wenzel model. The wetting ability is enhanced by decreasing RS and increasing AT. Increasing RS results in increasing the transmittance (T%) due to decreasing the films' thickness. At wavelength lambda= 10(3) nm, the deposited film shows T% = 53.2 and the film annealed at 500 degrees C exhibits T% = 44.3. The optical band gap (E7) increased with increasing RS and decreased with increasing AT. Cr-doping redshifted E-g(OP) from 2.95 to 2.85 eV, while codoping with La blue shifted E-g(OP) to 3.14 eV. The effect of Cr and La doping on the optical constants of IrOx films was investigated and compared with those of other transition metal oxide films because no data are available in the literature for IrOx films.
机译:氧化铱(IROX)是一种迷人的金属氧化物,具有优异的化学/物理性质。本报告是试图调整II%的表面和光学性质,以扩大其工业和技术应用。讨论了基材的转速(RS),退火温度(AT),CR掺杂和(CR,LA)对表面形态和润湿性,结构以及旋涂的IROX膜的光学性质的影响。薄膜的拉曼光谱显示在552cm(-1)的特征声子模式,由IR-O-X拉伸而引起的,由制备条件(RS和AT)以及(CR,LA)编排显着影响。获得能量分散X射线光谱以确认制备的IROX纳米结构薄膜的化学组成。场发射扫描电子显微镜图像揭示了不掺杂,Cr掺杂和(Cr,La)编排的纳米棒状IRO X结构的生长。 500摄氏度和Cr掺杂薄膜的退火膜显示出生长的纳米棒状结构的纳米多孔性质。薄膜是亲水的,并遵循温革模型。通过降低卢比并增加润湿能力并增加。增加的RS导致由于降低薄膜厚度而增加透射率(T%)。在波长λ= 10(3)nm处,沉积的膜显示T%= 53.2,并且在500℃下退火的薄膜表现出T%= 44.3。光带隙(E7)随着Rs的增加而增加并且随着升级的增加而降低。将Redsing Redshifted E-G(OP)从2.95到2.85 eV,同时用La Blue转换E-G(OP)至3.14 EV。研究Cr和La掺杂对IROX膜的光学常数的影响,并与其他过渡金属氧化物膜的光学常数进行比较,因为在IROX薄膜的文献中没有任何数据。

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