Page 32 - 201901
P. 32

·18·                              精细化工   FINE CHEMICALS                                  第 36 卷

            参考文献:                                              [12] Wei Jun (韦军), Zheng Xiaojuan (郑小娟), Jiang Yifeng (蒋乙峰).
                                                                   Preparation and properties of polyurethane-type polymeric
            [1]   Adekunlen  A, Orsat V, Raghavan V. Lignocellulosic bioethanol:  A
                                                                   benzophenone photoinitiators[J]. Polymer Materials Science and
                 review and design conceptualization study of  production  from
                                                                   Engineering (高分子材料科学与工程), 2015, 31(4): 42-46.
                 cassava peels[J]. Renewable & Sustainable Energy Reviews, 2016,
                                                               [13]  Dell'Erba I E, Arenas G F, Schroeder  W,  et al. Hybrid organic-
                 64: 518-530.
                                                                   inorganic macromolecular photoinitiator system for visible-light
            [2]   Noreen A, Zia K  M, Zuber M,  et al. Bio-based  polyurethane: An
                                                                   photopolymerization[J]. Progress in Organic Coatings, 2014, 77(11):
                 efficient and environment friendly coating systems:  A review[J].
                                                                   1848-1853.
                 Progress in Organic Coatings, 2016, 91: 25-32.
                                                               [14]  Liang S, Yang Y D, Zhou H Y, et al. Novel polymerizable HMPP-
            [3]   Zia K M, Noreen A, Zuber M, et al. Recent developments and future
                                                                   type photoinitiator with carbamate:  Synthesis and photoinitiating
                 prospects on bio-based polyesters derived from renewable resources:
                                                                   behaviors[J]. Progress in Organic Coatings, 2017, 110: 128-133.
                 A review[J].International Journal of Biological Macromolecules,
                 2016, 82: 1028-1040.                          [15]  Zhang Y, He Y, Nie J, et al. α-hydroxyalkyl ketones derivatives used
            [4]   Zhang L L, Luo M C, Eviatar N, et al. Development of microsatellite   as photoinitiators for photografting field[J]. Journal of Photochemistry
                 markers in tung tree (verniciafordii) using cassava genomic   & Photobiology A Chemistry, 2017, 349: 193-196.
                 sequences[J]. Plant Molecular Biology Reporter, 2015, 33(4):   [16]  Valandro S R, Poli A,  Venâncio  T, et  al. A novel biopolymeric
                 893-904.                                          photoinitiator based on chitosan and thioxanthone derivative:
            [5]   Cintia M, Mirta A I, Mirna M A, et al. Polymeric networks based on   Synthesis, characterization and efficiency in photopolymerization[J].
                 tung oil: Reaction and modification  with green oil monomers[J].   Journal of Photochemistry and Photobiology A: Chemistry, 2016,
                 European Polymer Journal, 2015, 67: 551-560.      327: 15-20.
            [6]   Trumbo D L, Mote B E.Synthesis of tung oil-diacrylate copolymers   [17]  Zhang Haizhao ( 张海召 ). Preparation of functional tung oil
                 via the Diels-Alder reaction and  properties of films from the   derivatives and application in UV curing coating[D].  Tianjin:Hebei
                 copolymers[J]. Applied Polymer Science, 2001, 80(12): 2369-2375.   University of Technology (河北工业大学), 2017.
            [7]   Huang K, Zhang P, Zhang J W, et al. Preparation of biobased epoxies   [18]  Han W S , Lin B P, Yang H, et al. Synthesis and properties of UV-
                 using  tung  oil fatty acid-derived C21 diacid and C22 triacid and   curable hyperbranced polyurethane acrylate oligomers containing
                 study of epoxy properties[J]. Green Polymer Chemistry, 2013, 15(9):   carboxyl groups[J]. Polymer Bulletin, 2012, 68(4): 1009-1022.
                 2466-2475.                                    [19]  Huang J J, Yuan T, Ye X Y, et al. Study on the UV curing behavior of
            [8]   Huang K, Liu Z S, Zhang J W, et al. Epoxy monomers derived from   tung oil: Mechanism, curing activity and film-forming property[J].
                 tung oil fatty acids and its regulable thermosets cured in two   Industrial Crops & Products, 2018, 112: 61-69.
                 synergistic ways[J]. Biomacromolecules, 2014, 15(3): 837-843.   [20]  Zhang Haizhao (张海召), Zhou Hongyong (周宏勇), Wang Jiaxi (王
            [9]   Shibata M, Teramoto N, Yoshihara, et al. Preparation and properties   家喜). Synthesis, characterization and UV curable property of
                 of biocomposites  composed of sorbitol-based epoxy resin, tung   acrylate  modified tung oil-based emulsifier[J]. Chemical Industry
                 oil-pyrogallol resin, and wood flour[J]. Journal of Applied Polymer   and Engineering Progress (化工进展), 2017, 36(10): 3860-3865.
                 Science, 2012, DOI: 10.1002/APP.38739.        [21]  Tan Xianglu (谭湘璐), Deng Jianru (邓剑如), Luo Sai (罗赛), et al.
            [10]  Thanamongkollit  N, Miller K R,  Soucek M D. Synthesis of   Preparation and properties of tung oil-based waterborne UV-curable
                 UV-curable tung oil and UV-curable tung oil based alyyd[J]. Progress   resin[J]. Fine Chemicals (精细化工), 2016, 33(8): 862-866.
                 in Organic Coatings, 2012, 73(4): 425-434.    [22]  Huang  Y G, Ye  G D,  Yang J W. Synthesis and properties  of
            [11]  Guo R, Gao Y, Wu M,  et al.  Aliphatic ketones and aldehydes as   UV-curable acrylate functionalized tung oil based resins  via
                 water-soluble photo initiators for the photopolymerization of   Diels-Alder reaction[J].  Progress in Organic  Coatings, 2015,  78:
                 methacrylic acid[J]. Polymer, 2013, 54(18): 4940-4947.   28-34.


            (上接第 11 页)                                             coatings from hollow silica nanoparticles[J]. Langmuir, 2012, 28(19):
                                                                   7512-7518.
            [6]   Nosonovsky M, Bhushan B. Biologically inspired surfaces:   [12]  Xu L, Zhuang  W, Xu  B,  et al. Fabrication of superhydrophobic
                 broadening the scope of roughness[J]. Advanced Functional   cotton fabrics by silica hydrosol and hydrophobization[J]. Applied
                 Materials, 2008, 18(6): 843-855.                  Surface Science, 2011, 257(13): 5491-5498.
            [7]   Brassard J D, Sarkar D K, Perron J. Fluorine based superhydrophobic   [13]  Huang Liangxian (黄良仙), Li Ting (李婷), Li Shunqin (李顺琴), et
                 coatings[J]. Applied Sciences, 2012, 2(4): 453-464.     al. Synthesis and  properties  of  novel water-soluble fluorosilicone
            [8]  Yan Luke  (颜录科), Kou Kaichang (寇开昌), Wang Zhichao (王志  polymer [J]. Textile Auxiliaries (印染助剂), 2014, 31(8): 19-22.
                 超), et al. Development and applications of novel fluoropolymers[J].   [14]  Si Y, Zhu H,  Chen L,  et al. A  multifunctional transparent
                 China Adhesives (中国胶粘剂), 2008, 17(1): 56-59, 62.     superhydrophobic gel nanocoating with self-healing properties[J].
            [9]   Li K, Zeng X, Li H, et al. Effects of calcination temperature on the   Chem Commun (Camb), 2015, 51(94): 16794-16797.
                 microstructure and wetting  behavior of  superhydrophobic   [15]  Zhang Li (张力), Wang Jiannong (王健农), Xu Qianfeng (许前锋).
                 polydimethylsiloxane/silica coating[J]. Colloids and Surfaces A:   Preparation of transparent superhydrophobic SiO 2 film by sol-gel
                 Physicochemical and Engineering Aspects, 2014, 445: 111-118.     technique[J]. Materials Review (材料导报), 2008, (S3): 112-114.
            [10]  Wang D, Zhang Z, Li Y,  et al. Highly transparent and durable   [16]  Liu Shuangping (刘双平), Yu Xi (俞熹). A study on lotus effect [J].
                 superhydrophobic hybrid nanoporous coatings fabricated from   College Physics (大学物理), 2011, 30(9): 50-54, 61.
                 polysiloxane[J]. ACS Apply Mater Interfaces, 2014,  6(13): 10014-   [17] Quan Lijun (权利军), An Qiufeng (安秋凤), Jin Jingjing (荆晶晶).
                 10021.                                            Preparation  and properties of nano-SiO 2 hybrid fluorinated epoxy
            [11]  Xu L, He J. Fabrication of highly transparent  superhydrophobic   resin coating[J]. Fine Chemicals (精细化工), 2017, 34(1) 34-39.
   27   28   29   30   31   32   33   34   35   36   37