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casein-based ZnO nanocomposite for flexible coatings[J]. Materials [28] JEONG H K, LEE Y P, LAHAYE R J W E, et al. Evidence of
& Design, 2017, 113: 240-245. graphitic AB stacking order of graphite oxides[J]. Journal of the
[21] AN W (安文), MA J Z (马建中), XU Q N (徐群娜), et al. American Chemical Society, 2008, 130(4): 1362-1366.
Preparation and flame retardant properties of casein-based [29] LI X Y, HAO Z K, ZHANG F, et al. Reduced graphene
hydrotalcite composite emulsion[C]//The 10th China International oxide-immobilized tris(bipyridine) ruthenium( Ⅱ ) complex for
Conference on Functional Materials and Applications (第十届中国 efficient visible-light-driven reductive dehalogenation reaction[J].
功能材料与应用国际会议), 2019: 103. ACS Appl Mater Interfaces, 2016, 8(19): 12141-12148.
[22] ZHANG W B, MA J Z, GAO D G, et al. Preparation of [30] LIU C (刘超). Study of functionalized graphene and its bismaleimide
amino-functionalized graphene oxide by Hoffman rearrangement and self-lubricating composites[D]. Xi'an: Northwestern Polytechnical
its performances on polyacrylate coating latex[J]. Progress in Organic University (西北工业大学), 2016.
Coatings, 2016, 94: 9-17. [31] JEONG H K, LEE Y P, LAHAYE R J, et al. Evidence of graphitic
[23] GUO Y Q, BAO C L, SONG L, et al. In situ polymerization of AB stacking order of graphite oxides[J]. Journal of the American
graphene, graphite oxide, and functionalized graphite oxide into Chemical Society, 2008, 130(4): 1362-1366.
epoxy resin and comparison study of on-the-flame behavior[J]. [32] CAO C F, WANG P H, ZHANG J W, et al. One-step and green
Industrial & Engineering Chemistry Research, 2011, 50(13): 7772-7783. synthesis of lightweight, mechanically flexible and flame-retardant
[24] PAREDES J I, VILLAR-RODIL S, MARTINEZ-ALONSO A, et al. polydimethylsiloxane foam nanocomposites via surface assembling
Graphene oxide dispersions in organic solvents[J]. Langmuir: The ultralow content of graphene derivative[J]. Chemical Engineering
ACS Journal of Surfaces & Colloids, 2008, 24(19): 10560. Journal, 2020, 393: 124724.
[25] ZHOU X J, ZHANG J L, WU H X, et al. Reducing graphene oxide [33] FENG Y Z, HE C G, WEN Y F, et al. Superior flame retardancy and
via hydroxylamine: A simple and efficient route to graphene[J]. smoke suppression of epoxy-based composites with phosphorus/
Journal of Physical Chemistry C, 2011, 115(24): 11957-11961. nitrogen co-doped graphene[J]. Journal of Hazardous Materials,
[26] DONG D D, MA J Z, MA Z L, et al. Flexible and lightweight 2018, 346: 140-151.
microcellular RGO@Pebax composites with synergistic 3D conductive [34] LIU L, WANG Z Z. Facile synthesis of a novel magnesium amino
channels and microcracks for piezoresistive sensors[J]. Composites tris(methylenephosphonate) reduced graphene oxide hybrid and its
Part A, 2019, 123: 222-231. high performance in mechanical strength, thermal stability, smoke
[27] YEH P, YARIV A, MAROM E. Theory of Bragg fiber[J]. Journal of suppression and flame retardancy in phenolic foam[J]. Journal of
Optical Society of America, 1978, 68(9): 1196-1201. Hazardous Materials, 2018, 357: 89-99.
(上接第 1013 页) [14] LI Y (李瑜). Antioxidant whitening ingredients produced by the
fermentation of probiotics from Chinese herbs[D]. Wuxi: Jiangnan
[5] LIU J, WANG X C, YONG H M, et al. Preparation, characterization, University (江南大学), 2018.
digestibility and antioxidant activity of quercetin grafted Cynanchum [15] LEE B S, LEE C C, LIN H P, et al. A functional chitosan membrane
auriculatum starch[J]. Int J Biol Macromol, 2018, 114: 130-136. with grafted epigallocatechin-3-gallate and lovastatin enhances
[6] LEE F, LIM J H, REITHOFER M R, et al. Synthesis and bioactivity periodontal tissue regeneration in dogs[J]. Carbohydr Polym, 2016,
of a conjugate composed of green tea catechins and hyaluronic 151: 790-802.
acid[J]. Polym Chem, 2015, 24(6): 4462-4472. [16] LI B Y (李邦玉), WU Y (吴媛), WU H Y (吴虹燕), et al. The stability
[7] AHN S, HALAKE K, LEE J. Antioxidant and ion-induced gelation of EGCG studied by UV-Vis spectroscopy[J]. Jiangsu Agricultural
functions of pectins enabled by polyphenol conjugation[J]. Int J Biol Sciences (江苏农业科学), 2015, 43(7): 294-297.
Macromol, 2017, 101: 776-782. [17] VITTORIO O, CIRILLO G, LEMMA F, et al. Dextran-catechin
[8] DAI W Z, RUAN C C, ZHANG Y M, et al. Bioavailability enhancement conjugate: A potential treatment against the pancreatic ductal
of EGCG by structural modification and nano-delivery: A review[J]. adenocarcinoma[J]. Pharm Res, 2012, 9(29): 2601-2614.
J Funct Foods, 2020, 65: 103732. [18] VITTORIO O, VOLIANI V, FARACI P, et al. Magnetic catechin-
[9] SUN X (孙香). Study on the preparation and properties of EGCG dextran conjugate as targeted therapeutic for pancreatic tumour
loaded niosomes and its cryogels[D]. Wuxi: Jiangnan University (江 cells[J]. J Drug Target, 2014, 5(22): 408-415.
南大学), 2019. [19] ZHU W L, ZHANG Z J. Preparation and characterization of catechin-
[10] LIU J (刘瑾), SUN B B (孙宾宾). Preparation of acrylate derivative grafted chitosan with antioxidant and antidiabetic potential[J]. Int J
with photochromic spiropyran group by DCC/DMAP method[J]. Biol Macromol, 2014, 70: 150-155.
Technology & Development of Chemical Industry (化工技术与开 [20] LV X, YE F Y, LI J F, et al. Synthesis and characterization of a
发), 2016, 45(10): 12-13, 18. novel antioxidant RS4 by esterifying carboxymethyl sweetpotato
[11] DU G (杜歌), WEI L (魏莉), LIU Z S (刘自双), et al. Effects of starch with quercetin[J]. Carbohydr Polym, 2016, 152: 317-326.
γ-irradiation and EDC/NHS modification on property of collagen- [21] PAN Y M, ZHU J C, WANG H S, et al. Antioxidant activity of
chitosan scaffolds[J]. Journal of Materials Engineering (材料工程), ethanolic extract of Cortex fraxini and use in peanut oil[J]. Food
2020, 48(5): 106-111. Chem, 2007, 3(103): 913-918.
[12] ZHAO X L (赵秀玲), LI M Y (李慕原), DANG Y L (党亚丽). [22] SINGH A, LAVKUSH, KUREEL A K, et al. Curcumin loaded chitin-
Optimization of extraction process of polyphenols from Chrysanthemum glucan quercetin conjugate: Synthesis, characterization, antioxidant,
morifolium ramat. and their antioxidant activity[J]. Fine Chemicals in vitro release study, and anticancer activity[J]. Int J Biol Macromol,
(精细化工), 2018, 35(6): 974-981, 986. 2018, 110: 234-244.
[13] JING Y J, HUANG J G, YU X Q. Preparation, characterization, and [23] XIE M H, HU B, WANG Y, et al. Grafting of gallic acid onto
functional evaluation of proanthocyanidin-chitosan conjugate[J]. chitosan enhances antioxidant activities and alters rheological properties
Carbohydr Polym, 2018, 194: 139-145. of the copolymer[J]. J Agric Food Chem, 2014, 37(62): 9128-9136.