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Frontiers of Chemical Science and Engineering

ISSN 2095-0179

ISSN 2095-0187(Online)

CN 11-5981/TQ

邮发代号 80-969

2019 Impact Factor: 3.552

Frontiers of Chemical Engineering in China  2009, Vol. 3 Issue (2): 182-185   https://doi.org/10.1007/s11705-009-0062-3
  RESEARCH ARTICLE 本期目录
Investigation of electrochemical degradation and application of e-paper dyes in organic solvents
Investigation of electrochemical degradation and application of e-paper dyes in organic solvents
Luhai LI(), Ming WANG, Yi FANG, Shunan QIAO
Beijing Institute of Graphic Communication; Beijing Major Laboratory of Printing & Packaging Materials and Technology, Beijing 102600, China
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Abstract

To avoid environmental pollution due to organic dye solutions, the electrophoresis and degradation of dye in organic solvents such as alcohol were investigated. Many dyes were tested in the Indium tin oxide (ITO) electrode driving cell, and about 15 dyes moved under voltage driving. Both the curves of ultraviolet-visible (UV-Vis) and infrared (IR) spectra of the electrophoresis samples showed that the metal complexes Red 04 and Acid Black 1 were degradable in alcohol solution by electrochemical reaction. The cyclic volt-ampere curves of the samples from the electrochemical working station proved that electrochemical reactions took place. Based on the analysis of UV-Vis and IR spectra, the electrochemical degradation products of azo and metal complex azo dyes at lower voltage driving (1-5 V) in organic solvents are oxidized azobenzene, not hydrazine, which was found in the electrochemical degradation of dye water solutions. When the ITO electrode is modified by a polyimide (PI) film to a thickness less than 4 μm, the electrochemical degradation of the dye in alcohol solution will not appear in the cyclic volt-ampere curves. A dye electrophoresis in organic solution flexible prototype e-paper display was formed and the display picture is shown.

Key wordselectrochemical degradation    electrophoresis    e-paper    oxidized azobenzene group
收稿日期: 2008-05-17      出版日期: 2009-06-05
Corresponding Author(s): LI Luhai,Email:liluhai@bigc.edu.cn   
 引用本文:   
. Investigation of electrochemical degradation and application of e-paper dyes in organic solvents[J]. Frontiers of Chemical Engineering in China, 2009, 3(2): 182-185.
Luhai LI, Ming WANG, Yi FANG, Shunan QIAO. Investigation of electrochemical degradation and application of e-paper dyes in organic solvents. Front Chem Eng Chin, 2009, 3(2): 182-185.
 链接本文:  
https://academic.hep.com.cn/fcse/CN/10.1007/s11705-009-0062-3
https://academic.hep.com.cn/fcse/CN/Y2009/V3/I2/182
Fig.1  
Fig.2  
wavenumber/cm–1groups
1468-1360 (vs.) Extend vibration1494.7 (vs.) Obey extend vibration Ar–N=N–
PV1558.4 (vs.) Sym extend vibration1332.7 (s) Asym extend vibration Ar–NO2
1417.6 (vs.) anti phenyl –C=N extension1261-1377 Extension N→OAr–N=N(→O)
Tab.1  
Fig.3  
Fig.4  
Fig.5  
Fig.6  
Fig.7  
No.dyepyridineaniline alcoholalcoholxylene aniline
1Acid redν (–)a)ν (–)
2Acid black 1ν (–)ν (–)ν (–)
3Acid black 210ν (–)ν (–)
4Acid black 234ν (–)ν (–)
5MCb) blue 06ν (–)ν (–)ν (–)ν (–)
6MC blue red 04ν (–)ν (–)ν (–)ν (–)
7MC yellow20ν (–)ν (–)ν (–)ν (–)
8MC black 20ν (–)ν (–)ν (–)
9MC red 06ν (–)ν (–)ν (–)
10MC brown 02ν (–)ν (–)
11MC green 20ν (–)ν (–)ν (–)
12MC blue 03ν (–)ν (–)ν (+)c)ν (–)
13MC violet 08ν (–)ν (+)
Tab.2  
Fig.8  
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2 Comiskey B, Albert J D, Yoshizawa H. An electrophoretic ink for all printed reflective electronic displays. Nature , 1998 (394), 16: 253
3 Li L H, Wang M, Li Y Y. A Study on protected ITO electrode for e-paper. Asia Display 2007, March, 1688-1692
4 Yu L, Jian P L. Acta Scientiarun Naturalium Universities Sunyatseni, 1997, l36(2): 131-132 (in Chinese)
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