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49(5): 34-38. [14] PAN N, GUAN D B, YANG Y T, et al. A rapid low-temperature
[2] CHEN H Y (陈虹雨), YU Q Q (于倩倩), YANG J J (杨建军), et al. synthetic method leading to large-scale carboxyl graphene[J].
Preparation of amino-functionalized graphene oxide/sulfonated Chemical Engineering Journal, 2014, 236: 471-479.
polyaniline and its application in waterborne epoxy anticorrosive [15] CHEN F N (陈芳妮), SUN X J (孙晓君), WEI J Z (魏金枝), et al.
coatings[J]. Fine Chemicals (精细化工), 2022, 39(4): 837-843. Adsorption behavior of magnetic triethylene tetramine-graphene
[3] XU R L, LI J, XIONG Z, et al. Antibacterial waterborne epoxy oxide nanocomposite for Cu [J]. CIESC Journal (化工学报), 2016,
2+
coatings containing poly m-aminophenol deposited graphene 67(5): 1949-1956.
oxide[J]. Progress in Organic Coatings, 2020, 147: 105802-105809. [16] ZHANG Z, ZHAGN W, LI D, et al. Mechanical and anticorrosive
[4] ZHONG F, HE Y, WANG P Q, et al. Self-assembled graphene properties of graphene/epoxy resin composites coating prepared by
oxide-graphene hybrids for enhancing the corrosion resistance of in-situ method[J]. International Journal of Molecular Sciences, 2015,
waterborne epoxy coating[J]. Applied Surface Science, 2019, 488: 16: 2239-2251.
801-812. [17] ALLEN M J, TUNG V C, KANER R B. Honeycomb carbon: A
[5] TIAN Y Q, XIE Y H, DAI F, et al. Ammonium-grafted graphene review of graphene[J]. Chemical Reviews, 2010, 110: 132-145.
oxide for enhanced corrosion resistance of waterborne epoxy [18] SHAO Q, TANG J, LIN Y X, et al. Carbon nanotube spaced
coatings[J]. Surface and Coatings Technology, 2020, 383: 125227- graphene aerogels with enhanced capacitance in aqueous and ionic
125238. liquid electrolytes[J]. Journal of Power Sources, 2015, 278: 751-759.
[6] JAHANDIDEH S, SHIRAZI M J S,TAVAKOLI M. Mechanical and [19] YANG J Z (杨建召), SUN H J (孙红娟), PENG T J (彭同江), et al.
thermal properties of octadecylamine-functionalized graphene oxide Sensitivity and mechanism of graphene oxide with different oxidation
reinforced epoxy nanocomposites[J]. Fibers and Polymers, 2017, 18: degree[J]. Fine Chemicals (精细化工), 2019, 36(3): 380-386.
1995-2004. [20] LIU Q, MA R, DU A, et al. Investigation of the anticorrosion
[7] ZHAO Z H, GUO L, FENG L, et al. Polydopamine functionalized properties of graphene oxide doped thin organic anticorrosion films
graphene oxide nanocomposites reinforced the corrosion protection for hot-dip galvanized steel[J]. Applied Surface Science, 2019, 480:
and adhesion properties of waterborne polyurethane coatings[J]. 646-654
European Polymer Journal, 2019, 120: 109249-109262. [21] ZHANG F Y, LIU W Q, LIANG W Q, et al. The effect of functional
[8] ZHOU X N, HUANG H W, ZHU R, et al. Green modification of
graphene oxide with phytic acid and its application in anticorrosive graphene oxide nanoparticles on corrosion resistance of waterborne
water-borne epoxy coatings[J]. Progress in Organic Coatings, 2020, polyurethane[J]. Colloids and Surfaces A, 2020, 591: 124565-124574.
143: 105601-105611. [22] PHAM T A, KIM J, KIM J S, et al. One-step reduction of graphene
[9] LIU C B, QIU S H, DU P, et al. An ionic liquid-graphene oxide oxide with L-glutathione[J]. Colloids and Surfaces A: Physicochemical
hybrid nanomaterial: Synthesis and anticorrosive applications[J]. and Engineering Aspects, 2011, 384: 543-548.
Nanoscale, 2018, 10(17): 8115-8124. [23] RAMANATHAN T, FISHER F T, RUOFF R S, et al. Amino-
[10] SEPIDEH P, ALIMORAD R, REZA V M, et al. Excellent corrosion functionalized carbon nanotubes for binding to polymers and
protection performance of epoxy composite coatings filled with biological systems[J]. Chemical Materials, 2005, 17: 1290-1295.
amino-silane functionalized graphene oxide[J]. Surface & Coatings [24] ZHENG H, SHAO Y, WANG Y, et al. Reinforcing the corrosion
Technology, 2017, 317: 1-9. protection property of epoxy coating by using graphene oxide-poly
[11] HUANG P, ZHAO X W, YE L. Intercalation behavior and enhanced (urea-formaldehyde) composites[J]. Corrosion Science, 2017, 123:
dewaterability of waste sludge of cationic polyacrylamide/ 267-277.
montmorillonite composite synthesized via in situ intercalation [25] LI J Y (李建永), DAI D Y (代殿宇), QIAN C (钱程), et al.
polymerization[J]. Compsites Part B: Engineering, 2015, 83: 134-141. Corrosion behavior of PANI nanofiber/modified GO/waterborne
[12] ZHU K, LI X R, WANG H H, et al. Electrochemical and anti- epoxy composite coating on stainless steel[J]. Journal of Chinese
corrosion behaviors of water dispersible graphene/acrylic modified Society for Corrosion and Protection (中国腐蚀与防护学报), 2022,
alkyd resin latex composites coated carbon steel[J]. Journal of 42(1): 156-162.
Applied Polymer Science, 2016, 134: 44445-44456. [26] WANG N (王娜), GAO H Y (高慧颖), ZHANG J (张静), et al.
[13] LI J Y (李菁熠). Study on the preparation and anticorrosive properties Preparation and its anticorrosive properties of SBA-15 modified
of emulsion-type epoxy resin curing agent[J]. Thermosetting Resin graphene epoxy composite coating[J]. Fine Chemicals (精细化工),
(热固性树脂), 2019, 34(4): 1-6. 2019, 36(7): 1476-1482.
(上接第 1832 页) (PLA) based natural fiber reinforced composites-A comprehensive
review[J]. Journal of Cleaner Production, 2021, 310(1): 127483.
[17] CHEN W, MO J, DU X, et al. Biomimetic dynamic membrane for
aquatic dye removal[J]. Water Research, 2019, 151: 243-251. [24] KARIM Z, MATHEW A P, GRAHN M, et al. Nanoporous membranes
[18] SONG J, DENG Q, HUANG M, et al. Carbon nanotube enhanced with cellulose nanocrystals as functionalentity in chitosan: Removal
of dyes from water[J]. Carbohydrate Polymers, 2014, 112: 668-676.
membrane distillation for salty and dyeing wastewater treatment by [25] ZHANG H, ZHANG T, DING S, et al. Development of loose thin
electrospinning technology[J]. Environmental Research, 2021, 204:
111892. film nanofibrous composite nanofiltration membrane with modified
[19] GUO W, GUO R, PEI H, et al. Electrospinning PAN/PEI/MWCNT- g-C 3N 4 nanosheets barrier layer for efficient separation of salt/dye
mixtures[J]. Separation and Purification Technology, 2022, 306:
COOH nanocomposite fiber membrane with excellent oil-in-water 122661.
separation and heavy metal ion adsorption capacity[J]. Colloids and [26] AMIRI S, ASGHARI A, VATANPOUR V, et al. Fabrication of
Surfaces A: Physicochemical and Engineering Aspects, 2022, 641: chitosan-aminopropylsilane graphene oxide nanocomposite hydrogel
255-269. embedded PES membrane for improved filtration performance and
[20] BOZOLAN B K, DUMAN O, TUN S. Preparation and lead separation[J]. Food Packaging and Shelf Life, 2021, 294:
characterization of thermosensitive chitosan/carboxymethylcellulose/ 112918.
scleroglucan nanocomposite hydrogels[J]. International Journal of [27] PISHNAMAZI M, KOUSHKBAGHI S, HOSSEINIS S, et al. Metal
Biological Macromolecules, 2020, 162: 781-797. organic framework nanoparticles loaded-PVDF/chitosan nanofibrous
[21] ZHUANG S, ZHU K, HU J, et al. Selective and effective adsorption of ultrafiltration membranes for the removal of BSA protein and Cr(Ⅵ)
cesium ions by metal hexacyanoferrates (MHCF, M = Cu, Co, Ni) ions[J]. Journal of Molecular Liquids, 2020, 317: 113934.
modified chitosan fibrous biosorbent[J]. Science of the Total [28] ZHANG Y Z, ZHAO M W, QIAN C, et al. Research progress of
Environment, 2022, 835: 155575. adsorption and removal of heavy metals by chitosan and its
[22] ZHANG W, LI Q, MAO Q, et al. Cross-linked chitosan microspheres: derivatives: A review[J]. Chemosphere, 2021, 279: 130927.
An efficient and eco-friendly adsorbent for iodide removal from [29] LIU Y, HU L H, TAN B, et al. Adsorption behavior of heavy metal
waste water[J]. Carbohydrate Polymers, 2019, 209: 215-222. ions from aqueous solution onto composite dextran-chitosan
[23] RAJESHKUMAR G, SESHADRI S A, DEVNANI G L, et al. macromolecule resin adsorbent[J]. International Journal of Biological
Environment friendly, renewable and sustainable poly lactic acid Macromolecules, 2019, 141: 738-746.