4.6 Article

A novel blanket annealing process to achieve highly transparent and conducting Al doped ZnO thin films: Its mechanism and application in perovskite solar cells

Journal

SOLAR ENERGY
Volume 174, Issue -, Pages 815-825

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.solener.2018.09.017

Keywords

TCO; Blanket annealing; Zn diffusion; Perovskite solar cells

Categories

Funding

  1. US-India Partnership to Advance Clean Energy-Research (PACE-R) for the Solar Energy Research Institute for India and the United States (SERIIUS) - U.S. Department of Energy (Office of Science, Office of Basic Energy Sciences) [DE-AC36-08GO28308]
  2. US-India Partnership to Advance Clean Energy-Research (PACE-R) for the Solar Energy Research Institute for India and the United States (SERIIUS) - U.S. Department of Energy (Energy Efficiency and Renewable Energy, Solar Energy Technology Program) [DE-AC36-08GO28308]
  3. Government of India, through the Department of Science and Technology under Subcontract IUSSTF/JCERDC-SERIIUS/2012
  4. CSIR, India

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Achievement of high conductivity by doping an oxide thin film while maintaining its high visible transparency remains a challenge in the field of materials science and technology. Here we demonstrate a simple and novel technique to control compensating defects in Al doped ZnO (AZO) thin films involving a post-growth annealing process with Zn blanket. We also provide an in-depth understanding of the mechanism of achieving high conductivity. As low as 8.8 Omega/sq sheet resistance (resistivity 3.1 x 10(-4) Omega cm) with 90% visible transmission value and wherefrom a figure of merit (FOM) value of 6.5 x 10(-2) Omega-1 for a RF sputtered 350 nm AZO thin film can be achieved. Such very low sheet resistance has been attributed to a decrease in the number of compensating defects and lesser out diffusion of Zn in AZO. Application of the developed AZO film as conducting substrate has successfully been tested by fabricating perovskite solar cells on flexible Coming (R) Willow (R) Glass substrate. The present findings open up the possibility of enough high quality industrial-scale production of transparent conducting oxides (TCOs) bearing crucial significance from the perspective of transparent electrodes for solar cells.

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