Page 116 - 《精细化工》2022年第2期
P. 116
·320· 精细化工 FINE CHEMICALS 第 39 卷
磁共振氢谱分析证明了 QL 和 URPD 的成功合成。 [10] WANG H, QIU X Q, ZHONG R S, et al. One-pot in-situ preparation
通过 SEM 观察到合成的 ZnO 和 QL@ZnO 呈现花瓣 of a lignin-based carbon/ZnO nanocomposite with excellent
photocatalytic performance[J]. Materials Chemistry and Physics,
状,且改性后的 QL 会附着在 ZnO 周围。QL@ZnO 2017, 199: 193-202.
由于 QL 和 ZnO 的协同效应对紫外线具有明显的吸 [11] SALLA J, PANDEY K K, SRINIVAS K. Improvement of UV
resistance of wood surfaces by using ZnO nanoparticles[J]. Polymer
收。以丝网印刷得到的印花织物具有良好的色牢度 Degradation and Stability, 2012, 97(4): 592-596.
(4~5 级)和稳定的颜色性能。光固化型 ZnO/季铵 [12] FERNANDES D M, HECHENLEITNER A A W, LIMA S M, et al.
化木质素基高分子染料印花织物的 UPF 达到 Preparation, characterization, and photoluminescence study of
PVA/ZnO nanocomposite films[J]. Materials Chemistry and Physics,
128.49,具有优异的抗紫外线性能。本研究为木质 2011, 128(3): 371-376.
素作为一种可持续利用的生物基多功能添加剂在纺 [13] CHEM J M. Highly transparent bulk PMMA / ZnO nanocomposites
with bright visible luminescence and efficient UV-shielding
织、涂料和高分子材料中的应用提供了一条有价值
capability[J]. Journal of Materials Chemistry, 2012, 22(24):
的途径。 11971-11977.
[14] RASHVAND M, RANJBAR Z, RASTEGAR S. Progress in organic
参考文献: coatings nano zinc oxide as a UV-stabilizer for aromatic polyurethane
coatings[J]. Progress in Organic Coatings, 2011, 71(4): 362-368.
[1] HABIBI Y, LUCIA L A, ROJAS O J. Cellulose nanocrystals: [15] KIM D, JEON K, LEE Y, et al. Progress in organic coatings
Chemistry, self-assembly, and applications[J]. Chemical Reviews, preparation and characterization of UV-cured polyurethane acrylate/
2010, 110(6): 3479-3500.
[2] KLEMM D, HEUBLEIN B, FINK H P, et al. Cellulose: Fascinating ZnO nanocomposite films based on surface modified ZnO[J].
Progress in Organic Coatings, 2012, 74(3): 435-442.
biopolymer and sustainable raw material[J]. Angewandte Chemie-
[16] WANG H, QIU X Q, LIU W F, et al. Facile preparation of
International Edition, 2005, 44(22): 3358-3393.
[3] GOSSELINK R J A, DE JONG E, GURAN B, et al. Co-ordination well-combined lignin-based carbon/ZnO hybrid composite with
network for lignin—Standardisation, production and applications excellent photocatalytic activity[J]. Applied Surface Science, 2017,
adapted to market requirements (eurolignin)[J]. Industrial Crops and 426: 206-216.
Products, 2004, 20(2): 121-129. [17] XIONG W L, QIU X Q, YANG D J, et al. A simple one-pot method
[4] ZHOU M S, QIU X Q, YANG D J, et al. High-performance to prepare UV-absorbent lignin/silica hybrids based on alkali lignin
dispersant of coal-water slurry synthesized from wheat straw alkali from pulping black liquor and sodium metasilicate[J]. Chemical
lignin[J]. Fuel Processing Technology, 2007, 88(4): 375-382. Engineering Journal, 2017, 326: 803-810.
[18] ZHANG B P, YANG D J, QIU X Q, et al. Fabricating
[5] ALBADARIN A B, AL-MUHTASEB A H, AL-LAQTAH N A, et al.
ZnO/lignin-derived flower-like carbon composite with excellent
Biosorption of toxic chromium from aqueous phase by lignin:
Mechanism, effect of other metal ions and salts[J]. Chemical photocatalytic activity and recyclability[J]. Carbon, 2020, 162:
Engineering Journal, 2011, 169(1/2/3): 20-30. 256-266.
[6] BRDAR M, ŠĆIBAN M, TAKAČI A, et al. Comparison of two and [19] WANG H, LIN W S, QIU X Q, et al. In situ synthesis of flowerlike
three parameters adsorption isotherm for Cr(Ⅳ) onto kraft lignin[J]. lignin/ZnO composite with excellent UV-absorption properties and
Chemical Engineering Journal, 2012, 183: 108-111. its application in polyurethane[J]. ACS Sustainable Chemistry and
[7] NAIR V, PANIGRAHY A, VINU R. Development of novel Engineering, 2018, 6(3): 3696-3705.
chitosan-lignin composites for adsorption of dyes and metal ions [20] WANG H, QIU X Q, LIU W F, et al. A novel lignin/ZnO hybrid
from wastewater[J]. Chemical Engineering Journal, 2014, 254: nanocomposite with excellent UV-absorption ability and its
491-502. application in transparent polyurethane coating[J]. Industrial and
[8] ALBADARIN A B, COLLINS M N, NAUSHAD M, et al. Activated Engineering Chemistry Research, 2017, 56(39): 11133-11141.
lignin-chitosan extruded blends for efficient adsorption of methylene [21] XU Y, JI X Q, GE F Q, et al. Synthesis of transparent covalently
blue[J]. Chemical Engineering Journal, 2017, 307: 264-272. self-colored polyurethane based on anthraquinone chromophore chain
[9] WANG H, YI G B, ZU X H, et al. Photoelectric characteristics of the extenders[J]. Progress in Organic Coatings, 2018, 123: 1-9.
p-n junction between ZnO nanorods and polyaniline nanowires and [22] MAO H Y, QIANG S Y, XU Y, et al. Synthesis of polymeric dyes
their application as a UV photodetector[J]. Materials Letters, 2016, based on UV curable multifunctional waterborne polyurethane for
162: 83-86. textile coating[J]. New Journal of Chemistry, 2017, 41(2): 619-627.