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Synthesis of azo-incorporated copolymers by C1/N2C1 copolymerization under microwave irradiation

Synthesis of azo-incorporated copolymers by C1/N2C1 copolymerization under microwave irradiation
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摘要 Catalyst-free copolymerization of ethyl diazoacetate(EDA) with carbethoxycarbene(CEC) has been achieved through two approaches:microwave irradiation and enzyme-assisted(Novozyme-435)system.The structure of the copolymer was characterized by MALDI-TOF MS(m/z from 2000 to 2450),which suggested that the main chain of the copolymer consisted of-CH(COOEt)- and-N=NCH(COOEt)- frameworks.Fourier transform infrared(FT1R) spectrometry,elemental analysis,and Raman spectrometry proved the incorporation of azo group in the copolymer.The results indicated that the CEC radicals were generated under microwave irradiation(with or without Novozyme-435) from EDA.The mechanism study described that the generation speed of CEC radical was faster than its polymerization,and the excess CEC radicals improved the activity of the N2C1 group,thus inducing some EDA molecules as radicals.The two kinds of radicals co-coupled to result in poIy(CEC-co-EDA) through the C1/N2C1 copolymerization,but the homopolymerization of CEC radical occurred quicker than its cocoupling with activated EDA. Catalyst-free copolymerization of ethyl diazoacetate(EDA) with carbethoxycarbene(CEC) has been achieved through two approaches:microwave irradiation and enzyme-assisted(Novozyme-435)system.The structure of the copolymer was characterized by MALDI-TOF MS(m/z from 2000 to 2450),which suggested that the main chain of the copolymer consisted of-CH(COOEt)- and-N=NCH(COOEt)- frameworks.Fourier transform infrared(FT1R) spectrometry,elemental analysis,and Raman spectrometry proved the incorporation of azo group in the copolymer.The results indicated that the CEC radicals were generated under microwave irradiation(with or without Novozyme-435) from EDA.The mechanism study described that the generation speed of CEC radical was faster than its polymerization,and the excess CEC radicals improved the activity of the N2C1 group,thus inducing some EDA molecules as radicals.The two kinds of radicals co-coupled to result in poIy(CEC-co-EDA) through the C1/N2C1 copolymerization,but the homopolymerization of CEC radical occurred quicker than its cocoupling with activated EDA.
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2014年第12期1601-1606,共6页 中国化学快报(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.21074097 and 21274112)
关键词 Carbene polymerization Microwave irradiation Copolymerization Enzyme Carbene polymerization Microwave irradiation Copolymerization Enzyme
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  • 1Qin, Xue,Yu, Hai Bo,Dai, Hong,Qin, Zhen Fang,Zhang, Xin,Bing, Gui Fang,Wang, Ting Ting,Fang, Jian Xin.Synthesis and plant-growth regulatory activities of novel imine derivatives containing 1H-1,2,4-triazole and thiazole rings[J].Chinese Chemical Letters,2010,21(3):283-286. 被引量:6
  • 2M.A. Holland, L.M. Kozlowski, Clinical features and management of cyanide poisoning, Clin. Pharm. 5 (1986) 737-741.
  • 3R. Koenig, Wildlife deaths are a grim wake-up call in Eastern Europe, Science 10 (2000) 1737-1738.
  • 4F.J. Baud, Cyanide: critical issues in diagnosis and treatment, Hum. Exp. Toxicol. 26 (2007) 191-201.
  • 5Guidelines, Guidelines for Drinking-Water Quality, World Health Organization, Geneva, 1996.
  • 6C. Young, t. Tidwell, C. Anderson, Cyanide: Social, Industrial, and Economic Aspects, The Minerals, Metals & Materials Society, Warrendale, 2001.
  • 7L.S. Bark, H.G. Higson, A review of the methods available for the detection and determination of small amounts of cyanide, Analyst 88 (1963) 751-760.
  • 8D.E. Barnes, P.J. Wright, S.M. Graham, E.A. Jones-Watson, Techniques for the determination of cyanide in a process environment: a review, Geostand. Geoanal. Res. 24 (2000) 183-195.
  • 9Z. Xu, X. Chen, H.N. Kim, J. Yoon, Sensors for the optical detection of cyanide ion, Chem. Soc. Rev. 39 (2010) 127-137.
  • 10J.J. Du, M.M. Hu, J.L. Fan, X.J. Peng, Fluorescent chemodosimeters using "mild" chemical events for the detection of small anions and cations in biological and environmental media, Chem. Soc. Rev. 41 (2012) 4511-4535,.

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