Page 188 - 《精细化工》2022年第3期
P. 188
·610· 精细化工 FINE CHEMICALS 第 39 卷
Chemistry and Adhesion (化学与黏合), 2012, 35(4): 72-76. al. New benzoxazines from renewable resources for green composite
[7] AGAG T, LIU J, GRAF R, et al. Benzoxazole resin: A novel class of applications[J]. Polymer Composites, 2016, 37(2): 573-582.
thermoset polymer via smart benzoxazine resin[J]. Macromolecules, [25] GANFOUD R, GUIGO N, PUCHOT L, et al. Investigation on the
2012, 45(22): 8991-8997. role of the alkyl side chain of cardanol on benzoxazine polymerization
[8] HOLLY F W, COPE A C. Condensation products of aldehydes and and polymer properties[J]. European Polymer Journal, 2019, 119:
ketones with o-aminobenzyl alcohol and o-hydroxybenzylamine[J]. 120-129.
Journal of the American Chemical Society, 1944, 66(11): 1875-1879. [26] YANG R, HAN M C, HAO B R, et al. Biobased high-performance
[9] TAN D X (谭德新), WANG Y L (王艳丽). Synthesis and property of tri-furan functional bis-benzoxazine resin derived from renewable
phenolphthalein-diamine benzoxazine resin[J]. Fine Chemicals (精细 guaiacol, furfural and furfurylamine[J]. European Polymer Journal,
化工), 2017, 34(7): 51-57. 2020, 131: 109707.
[10] FANG X M (房晓敏), HU Y J (胡永佳), ZHANG P (张璞), et al. [27] THIRUKUMARAN P, SHAKILA P A, SAROJADEVI M. Synthesis
Synthesis and properties of PEPA-based benzoxazine[J]. Fine and copolymerization of fully biobased benzoxazines from renewable
Chemicals (精细化工), 2011, 28(11): 1051-1054. resources[J]. ACS Sustainable Chemistry & Engineering, 2014,
[11] DELIBALLI Z, KISKAN B, YAGCI Y. Advanced polymers from 2(12): 2790-2801.
simple benzoxazines and phenols by ring-opening addition reactions[J]. [28] TENG N, YANG S M, DAI J Y, et al. Making benzoxazine greener
Macromolecules, 2020, 53(7): 2354-2361. and stronger: Renewable resource, microwave irradiation, green
[12] KOLANADIYIL S N, MINAMI M, ENDO T. Implementation of solvent, and excellent thermal properties[J]. ACS Sustainable
meta-positioning in tetrafunctional benzoxazines: Synthesis, properties, Chemistry & Engineering, 2019, 7(9): 8715-8723.
and differences in the polymerized structure[J]. Macromolecules, [29] LAURA S M, DANIELA I, RODRIGUEZ A C, et al. Making
2020, 53(16): 6866-6886. benzoxazines greener: Design, synthesis, and polymerization of a
[13] PEI L, ZHAO S P, LI H L, et al. Preparation of low temperature cure bio-based benzoxazine fulfilling two principles of green chemistry[J].
polybenzoxazine coating with enhanced thermal stability and mechanical ACS Sustainable Chemistry & Engineering, 2018, 6(10): 13096-13106.
properties by combustion synthesis approach[J]. Polymer, 2021, [30] ZHANG K, HAN M C, LIU Y Q, et al. Design and synthesis of
220(4): 123573. bio-based high-performance trioxazine benzoxazine resin via natural
[14] ISHIDA H, AGAG T. Handbook of benzoxazine resins[M]. Amsterdam: renewable resources[J]. ACS Sustainable Chemistry & Engineering,
Elsevier, 2011: 3-81. 2019, 7(10): 9399-9407.
[15] LYU Y, ISHIDA H. Natural-sourced benzoxazine resins, homopolymers, [31] DUMAS L, BONNAUD B L, OLIVIER A M. Arbutin-based
blends and composites: A review of their synthesis, manufacturing benzoxazine: En route to an intrinsic water soluble biobased resin[J].
and applications[J]. Progress in Polymer Science, 2019, 99: 101168. Green Chemistry, 2016, 18(18): 4954-4960.
[16] FROIMOWICZ P, RODRIGUEZ A C, HAN L, et al. Smart, [32] GAO S H (高守红), YANG S L (杨少麟), FAN G R (范国荣).
sustainable, and ecofriendly chemical design of fully bio-based Advances in research on polydatin[J]. Journal of Pharmaceutical
thermally stable thermosets based on benzoxazine chemistry[J]. Practice (药学实践杂志), 2005, 23(3): 145-147.
ChemSusChem, 2016, 9(15): 1921-1928. [33] GAO Y G (高友光), LIN X Z (林献忠), ZENG Z H (曾振华) , et al.
[17] CHIOU K, ISHIDA H. Incorporation of natural renewable components Effect of polydatin on inflammatory response and oxidative stress in
and waste byproducts to benzoxazine based high performance rats with sepsis-induced acute kidney injury[J]. Journal of Clinical
materials[J]. Current Organic Chemistry, 2013, 17(9): 913-925. Anesthesiology(临床麻醉学杂志), 2017, 33(6): 584-587.
[18] LU Y, ZHANG K. Synthesis and properties of biobased mono- [34] HUANG Z S( 黄兆胜 ). Protective effects of polydatin on
benzoxazine resins from natural renewable pterostilbene[J]. European CCl 4-induced injury of primary cultured rat hepatocytec[J]. Chinese
Polymer Journal, 2021, 156(15): 110607. Pharmacological Bulletin (中国药理学通报), 1998, 14(6): 543-545.
[19] WANG C F, SUN J Q, LIU X D, et al. Synthesis and [35] ZHAO G (赵光), LI J (李珺), YANG J (杨捷). Inhibitory effects of
copolymerization of fully bio-based benzoxazines from guaiacol, fructus amomi, polygonum cuspidatum sieb and cinnamomi ramulus
furfurylamine and stearylamine[J]. Green Chemistry, 2012, 14(10): on the proliferation of MCF-7 breast cancer cells[J]. China Medical
2799-2806. Equipment (中国医学装备), 2016, 13(6): 94-98.
[20] LU G M, DAI J Y, LIU J K, et al. A new sight into bio-based [36] BAQAR M, AGAG T, HUANG R, et al. Mechanistic pathways for
polybenzoxazine: From tunable thermal and mechanical properties to the polymerization of methylol-functional benzoxazine monomers[J].
excellent marine antifouling performance[J]. ACS Omega, 2020, 5 Macromolecules, 2012, 45(20): 8119-8125.
(7): 3763-3773. [37] AGAG T, TAKEICHI T. Synthesis and characterization of novel
[21] ZHANG L, ZHU Y J, LI D, et al. Preparation and characterization of benzoxazine monomers containing allyl groups and their high
fully renewable polybenzoxazines from monomers containing performance thermosets[J]. Macromolecules, 2003, 36(16): 6010-6017.
multi-oxazine rings[J]. RSC Advances, 2015, 5(117): 96879-96887. [38] FROIMOWICZ P, RODRIGUEZ A C, OHASHI S, et al. Tailor-made
[22] LIU X Y, ZHANG R H, LI T Y, et al. Novel fully biobased and chemically designed synthesis of coumarin-containing benzoxazines
benzoxazines from rosin: Synthesis and properties[J]. ACS Sustainable and their reactivity study toward their thermosets[J]. Journal of
Chemistry & Engineering, 2017, 5(11): 10682-10692. Polymer Science Part A: Polymer Chemistry, 2016, 54(10): 1428-1435.
[23] LIU X Y, LI Z Y, ZHAN G Z, et al. Bio-based benzoxazines based on [39] LIU Y, SHENG W C, YIN R, et al. Propargylamine: An attractive
sesamol: Synthesis and properties[J]. Journal of Applied Polymer amine source for designing high-performance benzoxazine resins
Science, 2019, 136(48): 48255. with low polymerization temperatures[J]. Polymer Chemistry, 2021,
[24] THIRUKUMARAN P, SATHIYAMOORTHI R, PARVEEN A S, et 12: 6694-6704.