Page 125 - 《精细化工》2022年第3期
P. 125

第 3 期                  吕   斌,等: PDMS 改性蓖麻油基水性聚氨酯的制备及防污性能                                 ·547·


                 polyurethane dispersions[J]. Journal  of Cleaner Production, 2019,   of the People's Republic of China. Plastics—Determination of water
                 241: 118341.                                      absorption: GB/T 1034—2008[S]. Beijing: China Standard Press (中
            [8]   LEE J N, PARK C, WHITESIDES  G M. Solvent compatibility of   国标准出版社), 2007: 29-44.
                 poly(dimethylsiloxane)-based microfluidic devices[J].  Analytical   [19]  SHANG B, CHEN M, WU  L M. One-step synthesis of statically
                 Chemistry, 2003, 75(23): 6544-6554.               amphiphilic/dynamically amphiphobic fluoride-free transparent coatings
            [9]   WOOH S, VOLLMER D. Silicone brushes: Omniphobic surfaces with   [J]. ACS Applied Materials & Interfaces, 2018, 10(48): 41824-41830.
                 low sliding angles[J]. Angewandte Chemie, 2016, 55(24): 6822-6824.   [20]  ZENG T  C (曾腾超), LI X X (李心祥), YIN  Y J (殷允杰),  et al.
            [10]  HU P, XIE Q Y,  MA  C F,  et al. Silicone-based fouling-release   Synthesis of UV-curable branched polyurethane dispersants[J]. Fine
                 coatings for marine antifouling[J]. Langmuir, 2020, 36(9): 2170-2183.   Chemicals (精细化工), 2021, 38(8): 1686-1692.
            [11]  RANGEL T C, MICHELS A  F, HOROWITZ  F,  et al.   [21]  LEI L, ZHONG L, LIN X Q, et al. Synthesis and characterization of
                 Superomniphobic and easily repairable coatings on copper substrates   waterborne polyurethane dispersions  with different chain extenders
                 based on simple immersion or spray processes[J]. Langmuir the ACS   for potential application in waterborne ink[J]. Chemical Engineering
                 Journal of Surfaces & Colloids, 2015, 31(11): 3465.   Journal, 2014, 253: 518-525.
            [12]  HE M, ZHANG Q L, ZENG X P, et al. Hierarchical porous surface   [22]  MENG L L (孟林龙), WANG Z X (王朝旭), LIN X (林兴), et al.
                 for efficiently controlling microdroplets' self-removal[J]. Advanced   Preparation and characterization of  castor oil  based-waterborne
                 Materials, 2013, 25(16): 2291-2295.               polyurethanes[J]. Polymer Materials Science & Engineering (高分子
            [13]  LU Y D (陆亚东), GE S S (葛硕硕), ZHANG P B (张萍波), et al.   材料科学与工程), 2019, 35(11): 136-144.
                 Preparation and performance of  castor-oil-based polyurethane   [23]  CHEN Z Z (陈志周), WANG J C (王洁琛), MA Q Y (马倩云), et al.
                 modified with  organosilicone[J]. China Plastics (中国塑料), 2018,   Influence of  nano-SiO 2  ultrasonic dispersion conditions on the
                 32(9): 124-129.                                   properties of composite films[J]. Packaging Engineering (包装工程),
            [14]  TIAN J (田军), XUE Q J (薛群基). Study on polydimethylsiloxane/   2020, 41(17): 85-90.
                 polyurethane block copolymer[J]. Polymer Materials Science &   [24]  LYU J H, XU K Y, ZHANG N, et al. In situ incorporation of diamino
                 Engineering (高分子材料科学与工程), 1998, (6): 38-40.       silane group into  waterborne polyurethane for enhancing surface
            [15]  GONG Y Q (宫艳强), DU M P (杜明朋), LI M J (李美江). Synthesis   hydrophobicity of coating[J]. Molecules, 2019, 24(9): 1667.
                 and characterization of methoxy-terminated polysiloxane[J]. Journal of   [25]  MAAN  A M C,  HOFMAN  A H,  VOS W M,  et al. Recent
                 Hangzhou Normal  University (Natural Science Edition) (杭州师范  developments and practical feasibility of polymer-based antifouling
                 大学学报:  自然科学版), 2014, (2): 123-127.                coatings[J]. Advanced Functional Materials, 2020, 30(32): 2000936.
            [16]  GAO Q (高群), WANG G J (王国建), XIE J (谢晶). Improvement of   [26]  YARI A,  YEGANEH H,  BAKHSHI H,  et al. Preparation and
                 preparation of hydroxyl-terminated polydimethylsiloxane[J].  China   characterization of novel antibacterial castor oil-based polyurethane
                 Synthetic Rubber Industry (合成橡胶工业), 2004, (3): 17-20.   membranes for wound dressing application[J]. Journal of Biomedical
            [17]  LYU B (吕斌), ZHANG H N (张鹤年), GAO D G (高党鸽), et al.   Materials Research: Part A, 2013, 102(1): 84-96.
                 Preparation method of tallow oil-based polyol modified by   [27]  LI  J  P, ZHANG  X Y, LIU Z,  et al. Studies on  waterborne
                 mercaptoethanol: CN112661680A[P]. 2021-04-16.     polyurethanes based on new medium length fluorinated diols[J].
            [18]  General Administration of Quality Supervision, Inspection and Quarantine   Journal of Fluorine Chemistry, 2015, 175: 12-17.

            (上接第 460 页)                                            guar gum and application in flexible sensors[J]. International Journal
                                                                   of Biological Macromolecules, 2020, 155: 1569-1577.
            [38]  SONG K, YE W  J, GAO X  C,  et al. Synergy between dynamic   [45]  LI Z, SHAN Y, WANG X, et al. Self-healing flexible sensor based on
                 covalent  boronic ester and  boron-nitrogen coordination:  Strategy for   metal-ligand coordination[J]. Chemical Engineering Journal, 2020,
                 self-healing polyurethane elastomers at room temperature with   394: 124932-124941.
                 unprecedented mechanical properties[J]. Materials Horizons, 2020,   [46]  GAO Z J, KONG  L S, JIN R  N,  et al. Mechanical,  adhesive and
                 8(1): 216-223.                                    self-healing ionic liquid hydrogels for electrolytes and flexible strain
            [39]  LIN X, XIE Q,  MA C,  et al. Self-healing, highly elastic and   sensors[J]. Journal of Materials Chemistry C, 2020, 8(32): 11119-11127.
                 amphiphilic silicone-based polyurethane for antifouling coatings[J].   [47]  LI F L, XU Z F, HU H, et al. A polyurethane integrating self-healing,
                 Journal of Materials Chemistry B, 2021, 9(5): 1384-1394.   anti-aging and controlled  degradation  for  durable and eco-friendly
            [40]  YARMOHAMMADI M, PEDEAM M Z, SHAHIDZADEH M, et al.   E-skin[J]. Chemical Engineering Journal, 2021, 410: 128363-128373.
                 Self-healing dual cured polyurethane elastomeric coatings prepared   [48]  YING W B, YU Z, KIM D H, et al. Water proof, highly tough and
                 by orthogonal reactions[J]. Progress in Organic Coatings, 2020, 140:   fast self-healing polyurethane for durable electronic skin[J]. ACS
                 105503-105514.                                    Applied Materials & Interfaces, 2020, 12(9): 11072-11083.
            [41]  LIU C,  YIN Q, ZhANG W B,  et al. Tribological properties of   [49]  VITOLA V, BITE I, APSITE I, et al. CuS/polyurethane composite
                 graphene-modified with ionic liquids and carbon  quantum dots/   appropriate for 4D printing[J]. Journal of Polymer  Research, 2021,
                 bismaleimide composites[J]. Carbon, 2021, 183: 504-514.   28(1): 1-6.
            [42]  LIU J, ZHOU Z, SU X, et al. Stiff UV-curable self-healing coating   [50]  RUSU L C, ARDELEAN L C, JITARIU A A, et al. An insight into
                 based on  double reversible networks containing Diels-Alder cross-   the structural diversity and clinical applicability of polyurethanes in
                 linking and hydrogen bonds[J]. Progress in Organic Coatings, 2020,   biomedicine[J]. Polymers, 2020, 12(5): 1197-1218.
                 146: 105699-105706.                           [51]  LIN  T  W, HSU S H. Self-healing hydrogels and cryogels from
            [43]  YANG S W, WANG S, DU X S,  et al. Mechanically robust self-   biodegradable polyurethane nanoparticle  crosslinked chitosan[J].
                 healing and recyclable flame-retarded polyurethane elastomer based   Advanced Science, 2020, 7(3): 1901388-1901401.
                 on thermoreversible crosslinking  network and multiple hydrogen   [52]  EOM Y,  KIM S M, LEE  M,  et al. Mechano-responsive hydrogen-
                 bonds[J]. Chemical Engineering Journal, 2019, 391: 123544-123580.   bonding array of thermoplastic polyurethane elastomer captures both
            [44]  SUN Z X, WANG L L, JIANG X Y, et al. Self-healing, sensitive and   strength and self-healing[J].  Nature  Communications, 2021, 12(1):
                 antifreezing biomass nanocomposite hydrogels based on hydroxypropyl   1-11.
   120   121   122   123   124   125   126   127   128   129   130