Page 82 - 《精细化工》2022年第4期
P. 82

·718·                             精细化工   FINE CHEMICALS                                 第 39 卷

            合材料的表面形貌和综合性能进行了表征,结果表                                 superhydrophobic composite hollow membrane in the vacuum
            明,复合材料综合性能显著提升的内在原因在于                                  membrane distillation[J]. Separation and Purification Technology,
                                                                   2021, 268: 118603.
            FSI/PP 互穿网络结构的形成。                                  [13]  HE H M, GAO L, YANG X J, et al. Studies on the superhydrophobic
                (4)IPN 型 FSI/PP 复合疏水材料有望拓展常规                       properties of polypropylene/polydimethylsiloxane/graphite fluoride
                                                                   composites[J]. Journal of Fluorine Chemistry, 2013, 156: 158-163.
            PP 工程塑料在电子、特殊流体输送、家电等领域防
                                                               [14]  FEI W C (费望春). High hydrophobic modified PP material and its
            水减阻的应用。                                                preparation method, dishwasher: CN201510437696.9[P]. 2015-10-14.
                                                               [15]  SUN D, WANG W, YU D. Preparation of fluorine-free water repellent
            参考文献:                                                  finishing via thiol-ene click reaction on cotton fabrics[J]. Materials
                                                                   Letters, 2016, 185: 514-518.
            [1]   WANG D, SUN  Q, HOKKANEN  M J,  et al. Design of robust
                 superhydrophobic surfaces[J]. Nature, 2020, 582(7810): 55-59.   [16]  SPERLING L H, MISHRA V. The current status of interpenetrating
            [2]   XUAN T T, HUANG J J, LIU H, et al. Super-hydrophobic cesium   polymer networks[J]. Polymers for Advanced Technologies, 1996,
                 lead halide perovskite quantum dot-polymer composites  with high   7(4): 197-208.
                 stability and luminescent efficiency for wide color gamut white   [17]  LEI Z W, ZHENG P T, NIU L Y, et al. Ultralight, robustly compressible
                 light-emitting diodes[J]. Chemistry of Materials, 2019, 31(3): 1042-   and super-hydrophobic biomass-decorated carbonaceous melamine
                 1047.                                             sponge for oil/water separation with high oil retention[J]. Applied
            [3]   ANJUM  A S, SUN K C, ALI M,  et al. Fabrication of coral-reef   Surface Science, 2019, 489: 922-929.
                 structured nano silica for self-cleaning and super-hydrophobic textile   [18]  WONG  W S Y, STACHURSKI Z H, NISBET D  R,  et al. Ultra-
                 applications[J]. Chemical Engineering Journal, 2020, 401: 125859.   durable and transparent self-cleaning  surfaces by large-scale self-
            [4]   DALHAT M A.  Water resistance and characteristics  of asphalt   assembly of hierarchical interpenetrated polymer networks[J]. ACS
                 surfaces treated with micronized-recycled-polypropylene waste:   Applied Materials & Interfaces, 2016, 8(21): 13615-13623.
                 Super-hydrophobicity[J]. Construction and Building Materials, 2021,   [19]  WANG Y M, CAO R W, WANG M H, et al. Design and synthesis of
                 285: 122870.                                      phenyl silicone rubber with functional epoxy groups through anionic
            [5]   SHAO Y S, HAN M G, WANG  Y  Q,  et al. Superhydrophobic   copolymerization and  subsequent epoxidation[J]. Polymer, 2020,
                 polypropylene  membrane with fabricated antifouling interface for   186: 122077.
                 vacuum  membrane distillation treating high concentration sodium/   [20]  DING G M, JIAO W C, CHEN  L  Y,  et al. A self-sensing,
                 magnesium saline  water[J]. Journal of Membrane Science, 2019,   superhydrophobic, heterogeneous graphene network with  controllable
                 579: 240-252.                                     adhesion behavior[J]. Journal of Materials Chemistry A, 2018, 6(35):
            [6]   ZHANG C  Y,  CHEN W,  CHEN J R,  et al. Thermally stable   16992-17000.
                 polypropylene superhydrophobic surface due to the formation of a   [21]  ZHANG L, ZHOU Q Q, ZHANG  Q P,  et al. New washing-free
                 surface crystalline layer  of microsized  particles[J].  The Journal of   printing  binder based on  fluorosilicone-modified polyacrylate for
                 Physical Chemistry C, 2019, 123(37): 23075-23081.   polyester fabric printing with a disperse dye[J]. Fibers and Polymers,
            [7]   CRICK C R, PARKIN I P. Preparation and characterisation of super-   2021, 22(2): 396-404.
                 hydrophobic surfaces[J]. Chemistry-A European Journal, 2010, 16(12):   [22]  ZHANG G D (张国栋), WU J R (邬继荣), BIAN G F (边高峰), et al.
                 3568-3588.                                        Synthesis and properties of vinyl-terminated liquid fluorosilicone
            [8]   NAKAJIMA A, HASHIMOTO K, WATANABE T. Recent studies on   elastomer[J]. Journal of Hangzhou Normal University (Natural Science
                 super-hydrophobic films[J]. Molecular Materials and Functional   Edition) (杭州师范大学学报:  自然科学版), 2008, 7(6): 445-448.
                 Polymers, 2001, 132: 31-41.                   [23]  ZHOU H J (周红军), ZHU Y Q (朱永钱), LIANG H H (梁华海).
            [9]   YANG H W (杨昊炜). Preparation and properties of polysiloxane   Preparation and properties  of PP/PP-g-GMA/EP blends[J]. Modern
                 superhydrophobic surface[D]. Shanghai: Fudan University (复旦大  Plastics Processing and Applications  (现代塑料加工应用), 2013,
                 学), 2011.                                         25(3): 9-12.
            [10]  YANG J K (杨敬葵), ZHANG K Z (张凯舟), SHAO H J (邵会菊).   [24]  ZHANG B, WANG H Y, ZHU S Y, et al. Effect of crosslinking agent
                 Research  progress  on  preparation  of  super-hydrophobic  on the properties of low-temperature curing PES/PTFE anticorrosive
                 polypropylene[J]. Plastics (塑料), 2014, 43(6): 24-26.
            [11]  AKAN A P, CHAU J, SIRKAR K K. Post-combustion CO 2 capture   coating[J]. Journal of Applied Polymer Science, 2020, 137(22): 48740.
                 and recovery by pure activated methyldiethanolamine in crossflow   [25]  WU D M (吴冬梅), ZHANG Q Q (张勤勤), YANG D Y (杨冬亚),
                 membrane contactors having coated hollow fibers[J]. Separation and   et al. Preparation and properties of interpenetrating polymer networks
                 Purification Technology, 2020, 244: 116427.       from PU/BA-HEMA[J]. Chemical Industry and Engineering Progress
            [12]  DING Z K, LIU  Z, XIAO C F. Excellent performance of novel   (化工进展), 2009, 28(9): 1609-1612.
   77   78   79   80   81   82   83   84   85   86   87