Issue 34, 2014

Co-doped NiO nanoflake array films with enhanced electrochromic properties

Abstract

Co-doped NiO electrochromic nanoflake array films grown on FTO with antireflection ability have been synthesized by low temperature chemical bath deposition. Co doping has an influence on the growth and electrochromic properties of NiO nanoflake arrays. Noticeably, all the films show a very high transmittance at the bleached state in the region of visible light. Compared to the undoped NiO, the 1% Co-doped NiO nanoflake array film exhibits outstanding electrochromism, including large transmittance modulation (88.3%), high coloration efficiency (47.7 cm2 C−1), fast switching speed (3.4 s and 5.4 s), excellent reversibility and cycling durability at a wavelength of 550 nm. The enhanced electrochromic performances can be attributed to the synergetic effect contribution from low crystallization, oblique nanoflake array configuration and improved p-type conductivity by appropriate Co doping.

Graphical abstract: Co-doped NiO nanoflake array films with enhanced electrochromic properties

Article information

Article type
Paper
Submitted
18 May 2014
Accepted
23 Jun 2014
First published
26 Jun 2014

J. Mater. Chem. C, 2014,2, 7013-7021

Author version available

Co-doped NiO nanoflake array films with enhanced electrochromic properties

J. Zhang, G. Cai, D. Zhou, H. Tang, X. Wang, C. Gu and J. Tu, J. Mater. Chem. C, 2014, 2, 7013 DOI: 10.1039/C4TC01033G

To request permission to reproduce material from this article, please go to the Copyright Clearance Center request page.

If you are an author contributing to an RSC publication, you do not need to request permission provided correct acknowledgement is given.

If you are the author of this article, you do not need to request permission to reproduce figures and diagrams provided correct acknowledgement is given. If you want to reproduce the whole article in a third-party publication (excluding your thesis/dissertation for which permission is not required) please go to the Copyright Clearance Center request page.

Read more about how to correctly acknowledge RSC content.

Social activity

Spotlight

Advertisements