Chem. J. Chinese Universities ›› 2020, Vol. 41 ›› Issue (4): 811.doi: 10.7503/cjcu20190596

• Polymer Chemistry • Previous Articles     Next Articles

Visible-light-sensitive Versatile Fluorescent Brightener-based Photoinitiating Systems

ZUO Xiaoling1,*(),WU Chong2,HUANG Anrong3,LUO Jiaolian1,4,LI Zhuyu1,WANG Meng1,ZHOU Ying1,YU Hongna1,GUO Jianbing1,*()   

  1. 1. College of Materials Science and Engineering, Guizhou Minzu University, Guiyang 550025, China
    2. College of Pharmacy, Guizhou University of Traditional Chinese Medicine, Guiyang 550025, China
    3. National Engineering Research Center for Compounding and Modification of Polymeric Materials, Guiyang 550014, China
    4. Special and Key Laboratory of Guizhou Provincial High Education for Green Energy-Saving Materials, Guizhou Minzu University, Guiyang 550025, China
  • Received:2019-11-18 Online:2020-04-10 Published:2020-02-10
  • Contact: Xiaoling ZUO,Jianbing GUO E-mail:shanghai0401@163.com;guojianbing_1015@126.com
  • Supported by:
    † Supported by the Youth Science and Technology Talent Growth Project of Education Department of Guizhou Province, China([2018]144);the Fund of Guizhou Minzu University, China([2019]YB23);the Guizhou Provincial High-level Innovative Talents Project, China(2016[5667]);the Guizhou Provincial High-level Innovative Talents Project, China(No.2016[5667])

Abstract:

Five kinds of commercial fluorescent brighteners containing different fluorophores were investiga-ted, i.e. 4,4'-bis(2-benzoxazolyl)stilbene(BBS), diethylamino-4-methylcoumarin(C 1), bis-(triazinylamino)-stilbene disulphonic(CBUS 450), 4,4'-bis(2-sodium sulphonate styryl)biphenyl(CBS X) and 1,4-bis(2-benzoxazolyl)naphthalene(OB 7), the two-component photoinitiating systems including these fluorescent brighteners and diphenyliodonium hexafluorophosphate(IOD) and the three-component photoinitiating systems including these brighteners, IOD and optionally N-vinyl carbazole or amine were formed, respectively, both of them photoinitiated the free radical photopolymerization for the preparation of polyacrylates and the concomitant cationic/radical photopolymerization for the formation of an interpenetrating polymer network upon visible-light light-emitting diode(LED) exposure. The light absorption abilities of fluorescent brighteners were characterized by UV-visible spectrometer, the photochemical properties of them were analyzed by fluorescence spectrometer and electron spin resonance, the photoinitiation efficiencies of the photoinitiating systems were monitored by real-time Fourier transform infrared spectroscopy, meanwhile, the fracture surface morphology and surface morphology of the products obtained from the concomitant cationic/radical photopolymerization of epoxides/acrylates blends were observed and analyzed by scanning electron microscope and atomic force microscope, respectively. The results showed that fluorescent brighteners could be used as a versatile high-performance photoinitiator under visible-light LED, among them, the two-component and three-component photoinitiating systems based on naphthalene-benzoxazole OB 7, sulfonated triazinylstilbenes CBUS 450, sulfonated stilbene-biphenyl CBS X and coumarin C 1 exhibited quite excellent photoinitiating abilities even under air.

Key words: Visible-light light-emitting diode(LED), Fluorescent brightener, Interpenetrating polymer network, Free radical photopolymerization, Concomitant cationic/radical photopolymerization

CLC Number: 

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