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第 3 期                  于丹凤,等:  双交联长链烷烃/有机硅防水剂的制备及其耐磨性能                                   ·607·


                 Chemistry Research, 2019, 58(33): 15368-15378.   [22]  WANG Y C, PENG S, SHI X M, et al. A fluorine-free method for
            [11]  GAO J F, HUANG X  W, XUE  H  G, et  al. Facile preparation of   fabricating multifunctional durable superhydrophobic fabrics[J].
                 hybrid microspheres for  super-hydrophobic coating and oil-water   Applied Surface Science, 2020, 505: 144621.
                 separation[J]. Chemical Engineering Journal, 2017, 326: 443-453.   [23]  TAN D  Y (谭冬宜), XIAO L H (肖龙辉), HE B (何斌), et al.
            [12]  TIAN N, WEI J F, LI Y B, et al. Efficient scald-preventing enabled   Research status of composite fabrics[J]. China Textile Leader (纺织
                 by robust polyester fabrics with  hot water repellency  and water   导报), 2017, 8(8): 75-78.
                 impalement resistance[J]. Journal of Colloid and Interface Science,   [24]  JIANG J, CHENG Y, SUN X, et al. Flexible full-surface conformal
                 2020, 566: 69-78.                                 encapsulation for each fiber in  graphene glass fiber fabric against
            [13]  LAGAZZO A, VICINI S, CATTANEO C, et al. Effect of fatty acid   thermal oxidation[J].  ACS Applied Materials & Interfaces, 2022,
                 soap on microstructure of lime-cement mortar[J]. Building Materials,   14(17): 19889-19896.
                 2016, 116: 384-390.                           [25]  JONES A, UGGALLA L, LI K, et al. Continuous in-line chromium
            [14]  LI J P, CAO J Y, REN Q F, et al. Effect of nano-silica and silicone oil   coating thickness measurement  methodologies: An investigation of
                 paraffin emulsion  composite waterproofing agent on the water   current and potential technology[J]. Sensors, 2021, 21(10): 3340.
                 resistance of flue gas desulfurization gypsum[J]. Building Materials,   [26]  CHENG Y, ZHU T X, LI S H, et al. A novel strategy for fabricating
                 2021, 287(8): 123055.                             robust superhydrophobic fabrics by environmentally-friendly enzyme
            [15]  CUI H W, FANG Q, DU G B, et al. Secondary and ternary emulsions   etching[J]. Chemical Engineering Journal, 2019, 355: 290-298.
                 from vinyl acetate, N-hydroxymethyl acrylamide, and urea for wood   [27]  GHOSH S, YADAV S, REYNOLDS N, et al. Antibacterial properties
                 bonding[J]. Wood Science and Teachnology, 2014, 48(6): 1123-1137.   of silk fabric treated with silver nanoparticles[J]. Journal of the
            [16]  MUNSHI R, DAS D, CHOWDHURI A, et al. Finishing of jute by   Textile Institute, 2016, 107(12): 1-11.
                 polyacrylic rubber[J]. The Journal of the Textile Institute, 2014,   [28]  SONG J X (宋金星), ZHANG X W (张小伟), YUE X (乐翔), et al.
                 105(1): 67-73.                                    Synthesis and application of fluorine-free water repellents[J]. China
            [17]  YE  Y W,  ZHANG D W, LI J Y,  et al. One-step synthesis of   Textile Leader (纺织导报), 2020, (6): 68-69, 66.
                 superhydrophobic  polyhedral oligomeric silsesquioxane-graphene   [29]  CHEN J  Y, ZHONG X M,  LIN J,  et al. The facile preparation  of
                 oxide and its application in anti-corrosion and anti-wear fields[J].   self-cleaning fabrics[J]. Composites Science and Technology, 2016,
                 Corrosion Science, 2019, 147: 9-21.               122: 1-9.
            [18]  SHARIFNIA S, ROSTAMI A. Fabrication of  robust and durable   [30]  GEE E, LIU G J,  HU H,  et al. Effect of varying chain length and
                 superhydrophobic fiberglass fabrics for oil-water separation based on   content of poly(dimethylsiloxane) on dynamic dewetting performance
                 self-assembly of novel N-TESPO and N-TESPS reagents[J]. Journal   of NP-GLIDE polyurethane coatings[J]. Langmuir the ACS Journal
                 of Materials Chemistry A, 2016, 5(2): 680-688.    of Surfaces & Colloids, 2018, 34(34): 10102-10113.
            [19]  FANG F X, ZHENG  Y  M,  BA M,  et al. Long time super-   [31]  ZHANG W W, LU  P,  QIAN L  Y,  et al. Fabrication of
                 hydrophobic fouling release coating with the incorporation  of   superhydrophobic paper surface  via wax  mixture coating[J].
                 lubricant[J]. Progress in Organic Coatings, 2021, 152: 106136.   Chemical Engineering Journal, 2014, 250: 431-436.
            [20]  BAMOHARRAM F, HERAVI M, SANEINEZHAD S, et al. Synthesis   [32]  ZHONG Q H (钟秋华), YU L F (余龙飞), JIA K L (贾康乐), et al.
                 of a nano organo-silicon compound for building materials waterproofing,   Preparation and  property of micro-nano composite structure
                 using heteropolyacids as a green and eco-friendly catalyst[J]. Progress   superhydrophobic coating[J]. New Chemical Materials (化工新型材
                 in Organic Coatings, 2013, 76(2/3): 384-387.      料), 2021, 49: 155-160.
            [21]  LIN D M, ZENG X R, LI H Q,  et al. One-pot fabrication of   [33]  XU B B (徐兵兵), HUANG Y W (黄月文), WANG  B (王斌).
                 superhydrophobic and flame-retardant coatings on cotton fabrics via   Preparation and performance of fluorine-free superhydrophobic
                 sol-gel reaction[J]. Journal of Colloid and  Interface Science, 2019,   coatings  based on modified silica and polysiloxane[J]. Fine
                 533: 198-206.                                     Chemicals (精细化工), 2019, 36(10): 2009-2015.





            (上接第 599 页)                                            petals as the precursor material[J]. Carbon, 2012, 50(11): 4123-4129.
                                                               [25]  XUE  Q,  ZHANG  Q. Agar hydrogel template synthesis of Mn 3O 4
            [15]  SCHOLES P D, COOMBES A G A. Detection and determination of
                 surface levels of poloxamer  and PVA surfactant on biodegradable   nanoparticles through an ion diffusion method controlled by ion
                 nanospheres using SSIMS and XPS[J]. Journal of  Controlled   exchange membrane and electrochemical performance[J]. Nanomaterials,
                 Release, 1999, 59(3): 261-278.                    2019, 9(4): 503.
            [16]  ZHOU F, ZHOU R M, HAO W, et al. Influences of surfactant (PVA)   [26]  WANG Q W, LI  Y, SHEN  Z L,  et al. Facile synthesis of
                 concentration and pH on the preparation of copper nanoparticles by   three-dimensional Mn 3O 4 hierarchical  microstructures for efficient
                 electron beam irradiation[J]. Radiation Physics and Chemistry, 2008,   catalytic phenol oxidation with peroxymonosulfate[J]. Applied
                 77(2): 169-173.                                   Surface Science, 2019, 495: 143568.
            [17]  LEE J, SENNA  M, ISOBE T. Preparation of ultrafine Fe 3O 4    [27]  ZHANG P Q, ZHAN Y G, CAI B X, et al. Shape-controlled synthesis
                 particles by precipitation in the presence of PVA at high pH[J].   of Mn 3O 4 nanocrystals and their catalysis of the degradation of
                 Journal of Colloid and Interface Science, 1996, 177(2): 490-494.   methylene blue[J]. Nano Research, 2010, 3(4): 235-243.
            [18]  YU  J G, LEI  M, CHENG  B,  et al.  Facile preparation of calcium   [28]  BAI Z C, SUN B, FAN N, et al. Branched mesoporous Mn 3O 4 nanorods:
                 carbonate particles with unusual morphologies by precipitation
                 reaction[J]. Journal of Crystal Growth, 2004, 261(4): 566-570.   Facile synthesis and catalysis in the degradation  of  methylene
            [19]  CHO K H, SEO H, PARK S, et al. Uniform, assembled 4 nm Mn 3O 4   blue[J]. Chemistry-A European Journal, 2012, 18(17): 5319-5324.
                 nanoparticles as efficient water oxidation electrocatalysts  at neutral   [29]  DEBNATH B, ROY A S, KAPRI S, et al. Efficient dye degradation
                 pH[J]. Advanced Functional Materials, 2020, 30(10): 1910424.   catalyzed by  manganese oxide nanoparticles and the role of cation
            [20]  JIANG Y, YUE  J L,  GUO Q,  et al. Highly porous Mn 3O 4   valence[J]. Chemistry Select, 2016, 1(14): 4265-4273.
                 micro/nanocuboids with  in situ coated carbon as advanced anode   [30]  AKHTAR K, KHALID N, ALI M. Effect of pH and temperature on
                 material for lithium-ion batteries[J]. Small, 2018, 14(19): 1704296.   the catalytic properties of manganese dioxide [J]. Journal of the
            [21]  LIN Y M, WANG L, ZHOU J S, et al. Surface modification of PVA   Chemical Society of Pakistan, 2012, 34(2): 263-268.
                 hydrogel membranes with carboxybetaine  methacrylate  via   [31]  KIM E J, OH D, LEE C S,  et al. Manganese oxide nanorods as a
                 PET-RAFT for anti-fouling[J]. Polymer, 2019, 162: 80-90.   robust Fenton-like catalyst at neutral pH: Crystal phase-dependent
            [22]  LIU Y, LUO J, TANG L, et al. Origin of the enhanced reusability and   behavior[J]. Catalysis Today, 2017, 282: 71-76.
                 electron transfer of the carbon-coated Mn 3O 4 nanocube for persulfate   [32]  LIAO Q, SUN J, GAO L. Degradation of phenol by heterogeneous
                 activation [J]. ACS Catalysis, 2020, 10(24): 14857-14870.   Fenton reaction using multi-walled carbon nanotube supported Fe 2O 3
            [23]  DUAN J, CHEN S, DAI S,  et al. Shape control  of Mn 3O 4
                 nanoparticles on nitrogen-doped graphene for enhanced oxygen   catalysts[J]. Colloids and Surfaces A: Physicochemical and Engineering
                 reduction activity[J]. Advanced Functional Materials, 2014, 24(14):   Aspects, 2009, 345(1/2/3): 95-100.
                 2072-2078.                                    [33]  ZHANG L L, NIE Y L, HU C, et al.  Decolorization of methylene
            [24]  RAY  A K, SAHU  R K, RAJINIKANTH V,  et al. Preparation and   blue in layered manganese oxide suspension with H 2O 2[J]. Journal of
                 characterization of graphene and Ni-decorated graphene using flower   Hazardous Materials, 2011, 190(1/2/3): 780-785.
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