z-logo
Premium
Electrochromic Properties of Electrospun Fibers Based on Bis‐Thiomethylcyclohexanone Derivatives
Author(s) -
Turgut Cin Günseli,
Nohut Maşlakcı Neslihan,
Biçer Abdullah,
Yakalı Gül,
Uygun Öksüz Ayşegül
Publication year - 2019
Publication title -
chemistryselect
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.437
H-Index - 34
ISSN - 2365-6549
DOI - 10.1002/slct.201903640
Subject(s) - electrochromism , materials science , electrospinning , methyl methacrylate , scanning electron microscope , poly(methyl methacrylate) , cyclohexanone , indium tin oxide , hybrid material , chemical engineering , electrochromic devices , polymer chemistry , nuclear chemistry , composite material , polymer , nanotechnology , organic chemistry , electrode , copolymer , chemistry , thin film , catalysis , engineering
In this work, the electrochromic (EC) application of the hybrid fibers based on bis‐thiomethylcyclohexanone derivatives is evaluated. For this purpose, two new bis‐thiomethylcyclohexanone derivatives, 2,6‐bis(phenyl(phenylthio)methyl)cyclohexanone ( PPTMC ) and 2,6‐bis((2,6‐dichlorophenyl)(phenylthio)methyl)cyclohexanone (CPPTMC), were synthesized by thio‐Michael addition and characterized by spectroscopic methods and X‐ray diffraction. The hybrid fibers based on bis‐thiomethylcyclohexanone and poly(methyl methacrylate) ( PMMA ) were successfully prepared with electrospinning. The surface morphology and elemental compositions of these hybrid fibers were investigated by scanning electron microscopy (SEM) and energy dispersive X‐ray spectroscopy (EDS). The electrochemical, optical and electrochromic behaviors of indium tin oxide (ITO) glass substrates coated with those fibers were evaluated using spectrophotometry techniques. Moreover, the electrochromic devices (ECDs) based on PPTMC‐ PMMA and CPPTMC‐ PMMA hybrid fibers showed reversible color change from the transparent state to light brown by switching from +3.0 to −3.0 V. The calculated coloration efficiency of the hybrid fibers based on PPTMC‐ PMMA was found to be 207.27 cm 2 /C whereas a higher coloration efficiency was obtained for the hybrid fibers based on CPPTMC‐ PMMA (273.31 cm 2 /C). Our results show that hybrid fibers based on PPTMC‐ PMMA and CPPTMC‐ PMMA are potential materials for optical and electrochromic applications.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here