Page 66 - 《精细化工》2021年第4期
P. 66
·700· 精细化工 FINE CHEMICALS 第 38 卷
程中颜料粒子团聚问题,改善了颜料的色度、耐候 heavy metal removal from wastewater: A review[J]. Environmental
性和分散性能,而且有效降低了无机颜料的制备成 Chemistry Letters, 2019, 17: 629-654.
[13] CHEN Q Z, ZHU R L, FU H Y, et al. From natural clay minerals to
本,从而拓展了颜料的应用领域。但未来仍需加强
porous silicon nanoparticles[J]. Microporous and Mesoporous
以下方面的研究:①基于不同类型黏土矿物构建杂 Materials, 2018, 260: 76-83.
化颜料的比较研究。黏土矿物有不同的结构(2∶1 [14] WANG W B, WANG A Q. Recent progress in dispersion of
palygorskite crystal bundles for nanocomposites[J]. Applied Clay
型和 1∶1 型)和形貌(一维棒状、管状、纤维状及
Science, 2016, 119: 18-30.
二维片状),在杂化过程中黏土矿物的结构和形貌 [15] ROY A. Cobalt blue, in artists' pigments, in B. Berrie (Ed.), A
是如何精细影响呈色性能,目前还缺失系统研究; handbook of their history and characteristics[M]. 4th ed. Washington:
②强化清洁绿色制备方法研究。目前黏土矿物基杂 Oxford University Press, National Gallery of Art, 2007: 151-178.
[16] CHEMLAL S, LARBOTETE A. Materials research bulletin[J].
化颜料多采用共沉淀法、溶胶-凝胶法和水热合成等 Journal of the European Ceramic Society, 2000, 35(2): 2515-2523.
方法制备,存在成本高和过程不绿色等问题。针对 [17] TIELENS F, CALATAYUD M, FRANCO R. Periodic DFT study of
中国不断严格的环保要求,需着力发展绿色清洁制 the structural and electronic properties of bulk CoAl 2O 4 spinel[J].
The Journal of Physical Chemistry B, 2006, 110: 988-955.
备方法;③发展自清洁杂化颜料。利用黏土矿物基
[18] GAO X Y ( 高向 阳 ). New instrumental analysis[M]. Beijing:
杂化颜料形成的表面微/纳结构,通过低表面能物质 Chemical Industry Press (化学工业出版社), 2004: 12-18.
修饰构筑彩色自清洁涂层,满足日益增长的多功能 [19] HE T, BEEKER K D. An optical in-situ study of a reacting spinel
颜料需求。此外,还应加强杂化颜料表界面调控研 crystal[J]. Solid state ionics, 1997,101/102/103(Part 1): 337-342.
[20] EKAMBARAM S. Combustion synthesis and characterization of
究,满足工程塑料等领域着色和增韧补强的应用需求。
new class of ZnO-based ceramic pigments[J]. Journal of Alloys &
Compounds, 2005, 390(1): L4-L6.
参考文献: [21] LUASR M, FORÉS A, BADENES J A, et al. Colour analysis of
[1] JANSEN M, LETSCHERT H P. Inorganic yellow-red pigments some cobalt-based blue pigments[J]. Journal of the European
without toxic metals[J]. Nature, 2000, 404(6781): 980-982. Ceramic Society, 2001, 21(8): 1121-1130.
[2] MARCAIDA I, MAGUREGUI M, MORILLAS H, et al. [22] BUXBAUM G. Industrial inorganic pigments[M]. Weinheim:
Multispectroscopic and isotopic ratio analysis to characterize the Wiley-VCH, 2008: 155-173.
inorganic binder used on pompeian pink and purple lake pigments[J]. [23] TIRSOAGA A, VISINESCU D, JURCA B, et al. Eco-friendly
Analytical Chemistry, 2016, 88(12): 6395-6402. combustion-based synthesis of metal aluminates MAl 2O 4 (M=Ni,
[3] GARGORI C, CERRO S, FAS N, et al. Red-brown ceramic Co)[J]. Journal of Nanoparticle Research, 2011, 13: 6397-6408.
pigments based on chromium doped ferrian armalcolite, effect of [24] REN M, YIN H B, GE C Q, et al. Preparation and characterization of
mineralizers[J]. Ceramics International, 2017, 43(7): 5490-5497. inorganic colored coating layers on lamellar mica-titania substrate[J].
[4] JOVANÍ M, DOMINGO M, MACHADO T R, et al. Pigments based Applied Surface Science, 2012, 258(7): 2667-2673.
on Cr and Sb doped TiO 2 prepared by microemulsion-mediated [25] ZHANG A J, MU B, WANG X W, et al. CoAl 2O 4/kaoline hybrid
solvothermal synthesis for inkjet printing on ceramics[J]. Dyes & pigment prepared via solid-phase method for anticorrosion
Pigments, 2015, 116: 106-113. application[J]. Frontiers in Chemistry, Section Green and Sustainable
[5] JOSE S, JOSHY D, NARENDRANATH S B, et al. Recent advances Chemistry, 2018, 6: 586.
in infrared reflective inorganic pigments[J]. Solar Energy Materials [26] ZHANG A J, MU B, LUO Z H, et al. Bright blue halloysite/CoAl 2O 4
and Solar Cells, 2019, 194: 7-27. hybrid pigments: Preparation, characterization and application in
[6] PARTL G J, HACKL I, GÖTSCH T, et al. High temperature stable water-based painting[J]. Dyes and Pigments, 2017, 139: 473-481.
bismuth vanadate composite pigments via vanadyl-exchanged zeolite [27] ZHANG A J, MU B, LI H M, et al. Cobalt blue hybrid pigment
precursors[J]. Dyes & Pigments, 2017, 147: 106-112. doped with magnesium derived from sepiolite[J]. Applied Clay
[7] TIAN G Y, WANG W B, WANG D D, et al. Novel environment Science, 2018, 157: 111-120.
friendly inorganic red pigments based on attapulgite[J]. Powder [28] ZHANG A J, MU B, WANG X W, et al. Microwave hydrothermal
Technology, 2017, 315: 60-67. assisted preparation of CoAl 2O 4/kaoline hybrid pigments for
[8] SI Z K (司政凯), YAN L W (闫丽伟), ZHANG M (张梦), et al. reinforcement coloring and mechanical property of acrylonitrile
Preparation and characterization of SiO 2/organic pigment butadiene styrene[J]. Applied Clay Science, 2019, 175: 67-75.
double-layer coated aluminum pigments[J]. Fine Chemicals (精细化 [29] ZHANG A J, WANG N D, MU B, et al. Amino-acid-assisted
工), 2020, 37(10): 2138-2143. preparation of CoAl 2O 4/kaolin hybrid pigments[J]. Applied Clay
[9] HOU Y G (侯永刚), LYU S H (吕生华), ZHANG J (张佳), et al. Science, 2020, 191: 105611.
Preparation and formation mechanism of graphene oxide[J]. Fine [30] ZHANG A J, MU B, WANG X W, et al. Formation and coloring
Chemicals (精细化工), 2019, 36(4): 559-567. mechanism of typical aluminosilicate clay minerals for CoAl 2O 4
[10] ABDELRAHMAN M A, SHIFA M R S, REM J, et al. Adsorption of hybrid pigment preparation[J]. Frontiers in Chemistry, 2018, 6: 125.
organic pollutants by natural and modified clays: A comprehensive [31] AKDEMIR S, OZEL E, SUVACI E, et al. Solubility of blue CoAl 2O 4
review[J]. Separation and Purification Technology, 2019, 228: 115719. ceramic pigments in water and diethylene glycol media[J]. Ceramics
[11] GALE J D, CHEETHAM A K, JACKSON R A, et al. Computing the International, 2011, 37: 863-870.
structure of pillared clays[J]. Advanced Materials, 1990, 2(10): [32] GABROVSKA M, CRISAN D, STĂNICĂ N, et al. Co-Al layered
487-490. double hydroxides as precursors of ceramic pigment CoAl 2O 4. Part
[12] GU S Q, KANG X N, WANG L, et al. Clay mineral adsorbents for Ⅰ : Phase composition[J]. Revue Roumaine De Chimie, 2014,