Page 133 - 《精细化工》2022年第5期
P. 133
第 5 期 王文凯,等: 有机硅合成革涂层的原位构建及其性能 ·987·
[11] DOMINE J D, GOGOS C G. Simulation of reactive injection surface-tension.de.
molding[J]. Polymer Engineering & Science, 1980, 20(7): 845-858. [19] CHEN K X, KANG M, LU A, et al. Visualization of silica dispersion
[12] ZHOU J H (周建华), WANG L (王琳), LI Y (李燕), et al. Synthesis state in silicone rubber by fluorescent labeling[J]. Journal of
and application of POSS/organosilicon modified polyacrylate Materials Science, 2019, 54(6): 5149-5159.
fluoride-free waterproof agent[J]. Fine Chemicals (精细化工), 2021, [20] XU G W (许戈文). Waterborne polyurethane material[M]. Beijing:
38(11): 2368-2376. Chemical Industry Press (化学工业出版社), 2007: 18-23.
[13] ZHU J Q (朱建琴), DAI W Q (戴文琪), LI X Y (郦向宇). Synthesis [21] XIE J, HU J, LIN X D, et al. Robust and anti-corrosive PDMS/SiO 2
and application of siloxane-modified aliphatic aqueous polyurethane superhydrophobic coatings fabricated on magnesium alloys with
finishing agents for synthetic leather[J]. Plastics Additives (塑料助 different-sized SiO 2 nanoparticles[J]. Applied Surface Science, 2018,
剂), 2017(4): 16-19. 457(11): 870-880.
[14] YAO Q D (姚庆达), WANG X Z (王小卓), WEN H T (温会涛), et [22] YANG W, DU X S, DU Z L, et al. Effect of crosslinking on the
al. Synthesis process of graphene-modified silicone feeling agent and surface free energy and surface reorganization of waterborne
its application on leather finishing[J]. Leather and Chemicals (皮革 fluorinated polyurethane[J]. Journal of Applied Polymer Science,
与化工), 2019, 36(2): 1-7, 13. 2019, 136(10): 47167.
[15] HU J (胡娟), LI W Q (李文强), ZHANG X L (张晓莲), et al. [23] GUO J C (郭锦程). Study on preparation and performance of
Progress of silicone industry in China in 2020[J]. Silicone Material wear-resistant super-hydrophobic coating[D]. Taiyuan: North
(有机硅材料), 2021, 35(3): 63-86. University of China (中北大学), 2021.
[16] KWON Y D, JUN S H, SONG J M. Lifetime analysis of rubber [24] SUI Y (隋燕), QIAN Y (钱英), PENG Y L (彭跃莲), et al. Study on
gasket composed of methyl vinyl silicone rubber with low-temperature the compatibility of PVC/PVB blend film[C]//China Membrane
resistance[J]. Mathematical Problems in Engineering, 2015, 20: 1-9. Science and Technology Conference (中国膜科学与技术报告会),
[17] FOWKES F M. Attractive forces at interfaces[J]. Industrial & 2003: 131-134, 139.
Engineering Chemistry, 1964, 56(12): 40-52. [25] WEN J T, SUN Z, XIANG J, et al. Preparation and characteristics of
[18] CAS S, REF T. Surface tension values of some common test liquids waterborne polyurethane with various lengths of fluorinated side
for surface energy analysis[DB/OL]. [2021-11-13]. http://www. chains[J]. Applied Surface Science, 2019, 494: 610-618.
(上接第 926 页) 3423-3430.
[15] PINAUD J, VIGNOLLE J, GNANOU Y, et al. Poly(N-heterocyclic-
[6] ENDERS D, NIEMEIER O, HENSELER A. Organocatalysis by carbene)s and their CO 2 adducts as recyclable polymer-supported
N-heterocyclic carbenes[J]. Chemical Reviews, 2007, 107(12): 5606-5655. organocatalysts for benzoin condensation and transesterification
[7] CLAVIER H, NOLAN S P. N-heterocyclic carbenes: Advances in reactions[J]. Macromolecules, 2011, 44(7): 1900-1908.
transition metal-mediated transformations and organocatalysis[J]. [16] QIAN C W, YAO C S, YANG L J, et al. Preparation and application
Annual Reports Section B, 2007, 103: 193-222. of silica films supported imidazolium-based ionic liquid as efficient
[8] DVORAK C A, RAWAL V H. Catalysis of benzoin condensation by and recyclable catalysts for benzoin condensations[J]. Catalysis Letters,
conformationally-restricted chiral bicyclic thiazolium salts[J]. 2020, 150: 1389-1396.
Tetrahedron Letters, 1998, 39(19): 2925-2928. [17] QIAN C W (钱存卫), PANG Y (庞艳), FANG D (方东), et al. Synthesis
[9] KNIGHT R L, LEEPER F. Synthesis and asymmetric induction by and bioactivities of new triazole compounds containing aryl ether[J].
chiral bicyclic thiazolium salts[J]. Tetrahedron Letters, 1997, 38(20): Chinese Journal of Pesticide Science (农药学报), 2013, 15(3): 44-48.
3611-3614. [18] QIAN C W (钱存卫), ZHU W Q (朱文倩), LIU J L (刘俊龙), et al.
[10] HUNG C T, LIU L L, WANG J J, et al. Acidity and alkylation Chitosan@Cu 2O as a facile, efficient and reusable catalyst for
activity of 12-tungstophosphoric acid supported on ionic liquid- ligand-free C—O and C—N coupling[J]. Chinese Journal of Organic
functionalized SBA-15[J]. Catalysis Today, 2019, 327: 10-18. Chemistry (有机化学), 2019, 39(6): 1695-1703.
[11] GIACALONE F, GRUTTADAURIA M. Covalently supported ionic [19] IWAMOTO K, KIMURA H, OIKE M, et al. Methylene-bridged
liquid phases: An advanced class of recyclable catalytic systems[J]. bis(benzimidazolium) salt as a highly efficient catalyst for the benzoin
ChemCatChem, 2016, 8(4): 664-684. reaction in aqueous media[J]. Organic & Biomolecular Chemistry,
[12] GARMENDIA S, LAMBERT R, WIROTIUS A L, et al. Facile 2008, 6(5): 912-915.
synthesis of reversibly crosslinked poly(ionic liquid)-type gels: [20] SONG Y (宋燕), WANG H L (王海玲), ZHU Z L (朱兆连), et al.
Recyclable supports for organocatalysis by N-heterocyclic Preparation and characterization of modified attapulgite and its
carbenes[J]. European Polymer Journal, 2018, 107: 82-88. adsorption to 4-chlorophenol[J]. Chinese Journal of Environmental
[13] BORTOLINI O, CAVAZZINI A, DAMBRUOSO P, et al. Thiazolium- Engineering (环境工程学报),2012, 6(12): 4481-4486.
functionalized polystyrene monolithic microreactors for continuous- [21] COUPILLAUD P, PINAUD J, GUIDOLIN N, et al. Poly(ionic liquid)s
flow umpolung catalysis[J]. Green Chemistry, 2013, 15(10): 2981-2992. based on imidazolium hydrogen carbonate monomer units as recyclable
[14] KUZMICZ D, COUPILLAUD P, MEN Y J, et al. Functional mesoporous polymer-supported N-heterocyclic carbenes: Use in organocatalysis[J].
poly(ionic liquid)-based copolymer monoliths: From synthesis to Journal of Polymer Science Part A: Plymer Chemistry, 2013, 51(21):
catalysis and microporous carbon production[J]. Polymer, 2014, 55(16): 4530-4540.