Page 111 - 《精细化工》2021年第3期
P. 111

第 3 期                     倪璟怡,等:  油基纳米氧化锌分散浆的制备及其流变性能                                    ·531·


            6%时,纳米 ZnO 表面形成一层完整的有机包覆层,                         [12] RAN H Y(冉海燕), ZHU Y(朱叶), GU Y(顾瑶), et al. Preparation
                                                                   and properties of quaternized chitosan/nano-zinc oxide hybrid
            且层厚约为 2 nm,此时复合材料的水接触角为 145.4°。
                                                                   colloidal particles[J]. Journal of Functional Polymers(功能高分子学
                (2)当 PEG-10 聚二甲基硅氧烷用量为 5%,环                        报), 2020, 33(4): 390-398.
            十五硅氧烷硅油为溶剂时,通过机械球磨法制备成                             [13]  SONG Y L, LI W. Effect of UV irradiation on powder dispersion[J].
                                                                   Ceramics International, 2020, 46(10): 95-98.
            高性能油基纳米 ZnO 分散浆,分散浆的紫外屏蔽性                          [14]  WU F J (邬凤娟), ZHANG C (张晨), GAN L (甘亮),  et al.
            能显著高于粉体的紫外屏蔽性能。流变学测试表明,                                Dispersion and stability of physical sun-screening agents in liquid
                                                                   medium[J]. China Surfactant Detergent & Cosmetics (日用化学工
            分散浆为假塑性流体,具有剪切稀化行为,触变性
                                                                   业), 2017, 47(7): 414-417.
            小,稳定性高,黏度随温度的增大而减小。                                [15]  QIU B Y (裘炳毅), GAO Z H (高志红). Modern cosmetics science
                                                                   and technology[M]. Guangzhou: China Light Industry Press (中国轻
            参考文献:                                                  工业出版社), 2016: 1177.
                                                               [16]  ZHANG H,  LIU X X, FU S Y,  et al. Fabrication of light-colored
            [1]   SAKEENA F, TAYLOR B, TASNEEM M,  et al. The role of   lignin microspheres for developing natural sunscreens with favorable
                 sunscreen in  melasma  and postinflammatory hyperpigmentation[J].   UV absorbability and staining resistance[J]. Industrial & Engineering
                 Indian Journal of Dermatology, 2020, 65(1): 5-10.
                                                                   Chemistry Research, 2019, 58(31): 13858-13867.
            [2]   BEMD H, MONIKA W, KATJA Q. Photostability of UV absorber   [17] QING  Y  Q(青勇权), ZHENG  Y S(郑燕升), HE Y(何易),  et al.
                 systems in sunscreens[J]. Photochemistry and Photobiology, 2009,   Preparation  and  properties  of  nano-titania/zinc  oxide
                 85(4): 869-878.
                                                                   superhydrophobic coating[J]. Electroplat Finish(电镀与涂饰), 2013,
            [3]   ZHANG H Y (张海燕), XU Z J (徐子颉), GAN L H (甘礼华), et al.   32(4): 55-58.
                 Preparation technique for liquid inorganic nano-sized ultraviolet   [18]  ZHANG Y M (张育民), ZHONG J C (仲剑初), WANG H Z (王洪
                 absorbent[J]. Reserch and Exploration in Laboratory (实验室研究与
                                                                   志). Hydrothermal synthesis of priceite and its surface modification
                 探索), 2004, 23(11): 12-13.                         by sodium stearate[J]. Bulletin of the Chinese Ceramic Society (中国
            [4]  DENG X  Y(邓雪莹), LI L H(李丽华), ZHANG J S(张金生), et al.   陶瓷协会简报), 2011, 30(3): 705-709.
                 Synthesis of graphene oxide modified ZnO/CeO 2 nanocomposites   [19]  HU S (胡盛), YUAN X H (袁晓慧), TAN Z W (谭志伟), et al. Study
                 and their UV-shielding performance[J]. Journal of Instrumental   on dry modification of heavy calcium  carbonate by sodium
                 Analysis(分析测试学报), 2019, 38(1): 102-106.           stearate[J]. China Non-metallic Mining Industry (中国非金属矿工业
            [5]   ZHANG J B (章金兵), XU M (许民), ZHOU X Y (周小英). Surface   导刊), 2020, (2): 8-10.
                 modification of UV-screen nanometer ZnO/TiO 2 powder by   [20]  CHENG Q T (成庆堂), NIE T C (聂天琛), YAO C (姚超), et al.
                 alumina[J]. Fine Chemicals (精细化工), 2006, 23(4): 414-416.     Organic modification of nano-TiO 2 precoated A1 2O 3 with sodium
            [6]   CAO Z, ZHANG Z J, WANG F X, et al. Synthesis and UV shielding   stearate[J]. Paint &  Coatings Industry  (涂料工业), 2008,  38(4):
                 properties of zinc oxide ultrafine particles modified with silica and   4-6.
                 trimethyl siloxane[J]. Colloids and Surfaces A: Physicochemical and   [21]  YAO C (姚超), YANG  G  (杨光), LIN X P (林西平),  et al.
                 Engineering Aspects, 2009, 340(1/2/3): 161-167.     Surface-modification of  nanosized titanium dioxide particles[J].
            [7]   LIU L H(刘立华). Study on surface modification  of ZnO as UV   China Surfactant Detergent & Cosmetics (日用化学工业), 2004,
                 shielding agent[J]. Detergent & Cosmetics(日用化学品科学), 2010,   34(4): 252-255.
                 33(1): 20-23.                                 [22]  BERTRAND F, GERMAN S A, ANWAR A, et al. Dispersion and
            [8]   ZENG Y X (曾远娴), FENG C Z (冯彩珠), CHEN F G (陈凤桂), et   surface functionalization of oxide nanoparticles for transparent
                 al. Preparation of highly effective broad-spectrum sunscreen and the   photocatalytic and UV-protecting coatings and sunscreens[J]. Science
                 studies of UV shielding property[J]. Shandong Chemical Industry (山  and Technology of Advanced Materials, 2013, 14(2): 023001.
                 东化工), 2018, 47(16): 1-2.                      [23]  ZHANG G H(张光华), YANG D D(杨冬冬), ZHANG  W B(张万
            [9]   LIZUNDIA E, LEIRE R, JOSE L  V,  et al. Poly(l-lactide)/ZnO   斌),  et al. Effect of cationic monomer on properties of amphoteric
                 nanocomposites as efficient UV-shielding coatings for  packaging   coal water slurry  dispersant[J]. Journal of Shaanxi University of
                 applications[J]. Journal of Applied Polymer Science, 2015, 133(2):   Science & Technology(陕西科技大学学报), 2020, 38(3): 70-75.
                 42426.                                        [24]  CHEN K, LEI L, QIAN Y, et al. Biomass lignin stabilized anti-UV
            [10]  SHANG C F (商春锋), ZHANG Y L (张雅莉), ZHANG G Q (张国  high internal phase emulsions: Preparation, rheology, and application
                 庆 ),  et al. Progress on surface organic modification  of  nano-   as carrier materials[J]. Sustainable Chemistry & Engineering, 2019,
                 material[J]. Guangzhou Chemical Industry ( 广州 化工 ), 2012,   7(1): 810-818.
                 40(15): 9-11.                                 [25] FAN  Y  (樊悦), CHEN Q (陈强), JIN  H (金浩),  et al. Application
            [11]  ZHANG Y W (张永伟), SHUI A Z (税安泽), JIAN R T (简润桐).   research of rheological properties in emulsifying process
                 Study on dispersion behavior and its influence factors for ZnO   conditions[J]. China Surfactant Detergent & Cosmetics (日用化学工
                 suspension[J]. Foshan Ceramics (佛山陶瓷), 2016, 26(6): 14-17.     业), 2018, 48(10): 577-581.
   106   107   108   109   110   111   112   113   114   115   116