Chitin-Based Functional Films for the Colorimetric Detection of Ethylene Glycol

  • Han, Dong Jin; 
  • Park, In Woo; 
  • Zhang, Chengmin; 
  • Heo, Kwang; 
  • Lee, Byung Yang
Citations

WEB OF SCIENCE

2
Citations

SCOPUS

1

초록

A new method is developed for producing large-area color thin films for the colorimetric detection of ethylene glycol. This method is based on thermal evaporation of chitin. This process enables easy manipulation of the thickness and color patterns of the film by using shadow masks and repeated evaporation. This film is used to demonstrate a colorimetric sensor for the detection of ethylene glycol gas. The use of chitin allows the manufacture of inexpensive and environment-friendly gas detectors. When the film is exposed to target gas, the film reacts with ethylene glycol and hydroxyl group on the chitin-film by etherification. Then the films undergo both chemical and structural changes, resulting in color changes at low ppm concentrations. It is able to compare the sensor reaction to gases with and without the hydroxyl group. The selectivity of the sensor is confirmed by analyzing the gas containing the hydroxyl group through the linear discriminant analysis (LDA) method. It is expected that the results will be utilized to provide low-cost and low-power systems for gas monitoring. Chitin-based color films on solid substrates by thermal evaporation.Varying the number of assembled layers changes the thickness and color of the chitin film. This film demonstrates a colorimetric sensor for the detection of ethylene glycol gas. The use of chitin allows the manufacture of inexpensive and environment-friendly gas detectors.image (c) 2024 WILEY-VCH GmbH

키워드

chitin; color thin film; colorimetric; gas sensor; OPTICAL-PROPERTIES; CHITOSAN; SENSOR; HYDROGELS; ACID
제목
Chitin-Based Functional Films for the Colorimetric Detection of Ethylene Glycol
저자
Han, Dong Jin; Park, In Woo; Zhang, Chengmin; Heo, Kwang; Lee, Byung Yang
DOI
10.1002/adem.202301796
발행일
2024-04
유형
Article
저널명
Advanced Engineering Materials
권
26
호
7