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第 3 期 宋晓丽,等: 热致变色材料在智能社会中的发展现状及趋势 ·461·
latent-pigment-based time-temperature indicators for perishable photo- and thermo-chromism[J]. Dyes and Pigments, 2017, 136:
goods[J]. Advanced Optical Materials, 2015, 3(9): 1164-1168. 825-829.
[17] ROUGEAU L, PICQ D, RASTELLO M, et al. New irreversible [43] LIU Guojie ( 刘国 杰 ). Special functional coating[M]. Beijing:
thermochromic polydiacetylenes[J]. Tetrahedron, 2008, 64(40): Chemical Industry Press (化学工业出版社), 2002: 73-74.
9430-9436. [44] AHN K S, LEE D K, KIM J H, et al. Domino-like thermal phase
[18] WANG Zhen (王振). Research on key technologies of smart grid and transition of 2, 3-bis (phenylethenyl)-5, 6-dicyanopyrazine crystal[J].
internet of things[D]. Jinan: Shandong University (山东大学), 2017. Dyes and Pigments, 2011, 89(1): 93-95.
[19] GU Shanqiang (谷山强), WANG Haitao (王海涛), YAN Biwu (严碧 [45] LI Xin ( 李昕 ). Application development and discoloration
武), et al. Fault diagnosis of heating function of transmission line mechanism of the temperature indicating coatings[J]. Modern Paint
fittings based on temperature coating[J]. Water Resources and Power & Finishing (现代涂料与涂装), 2010, 13(7): 15-20.
(水电能源科学), 2017, 35(11): 186-189. [46] HOWLADER P, MONDAL B, PURBA P C, et al. Self-assembled Pd
[20] KHANDELWAL H, SCHENNING A P, DEBIJE M G. Infrared (Ⅱ) barrels as containers for transient merocyanine form and reverse
regulating smart window based on organic materials[J]. Advanced thermochromism of spiropyran[J]. Journal of the American Chemical
Energy Materials, 2017, 7(14): 1602209-1602226. Society, 2018, 140(25): 7952-7960.
[21] HAO Q, LI W, XU H, et al. VO 2/TiN plasmonic thermochromic [47] PARGAONKAR J G, PATIL S K, VAJEKAR S N. Greener route for
smart coatings for room-temperature applications[J]. Advanced the synthesis of photo-and thermochromic spiropyrans using a highly
Materials, 2018, 30(10): 1705421-1705425. efficient, reusable, and biocompatible choline hydroxide in an aqueous
[22] FABIANI C, PISELLO A, BOU-ZEID E, et al. Adaptive measures medium[J]. Synthetic Communications, 2018, 48(2): 208-215.
for mitigating urban heat islands: The potential of thermochromic [48] MAZZA M M, CARDANO F, CUSIDO J, et al. Ratiometric
materials to control roofing energy balance[J]. Applied Energy, 2019, temperature sensing with fluorescent thermochromic switches[J].
247: 155-170. Chemical Communications, 2019, 55(8): 1112-1115.
[23] DOLAI S, BHUNIA S K, BEGLARYAN S S, et al. Colorimetric [49] KIM S H, SUH H J, CUI J Z, et al. Crystalline-state photochromism
polydiacetylene-aerogel detector for volatile organic compounds and thermochromism of new spiroxazine[J]. Dyes and Pigments,
(VOCs)[J]. ACS Applied Materials &Interfaces, 2017, 9(3): 2891- 2002, 53(3): 251-256.
2898. [50] Govender T, Hojabri L, Moghaddam F M, et al. Organocatalytic
[24] AVELLA-OLIVER M, MORAIS S, PUCHADES R, et al. Towards synthesis of chiral benzopyrans[J]. Tetrahedron: Asymmetry, 2006,
photochromic and thermochromic biosensing[J]. Trends in Analytical 17(12): 1763-1767.
Chemistry, 2016, 79: 37-45. [51] FUJIWARA T, HARADA J, OGAWA K. Hydrogen-bonded cyclic
[25] SONG S, HA K, GUK K, et al. Colorimetric detection of influenza A dimer formation in temperature-induced reversal of tautomerism of
(H1N1) virus by a peptide-functionalized polydiacetylene (PEP-PDA) salicylideneanilines[J]. Journal of Physical Chemistry A, 2009,
nanosensor[J]. RSC Advances, 2016, 6(54): 48566-48570. 113(9): 1822-1826.
[26] WEST J L, CHEN Y, PALFFY-MUHORAY P, et al. Thermochromic [52] CHALASANI D, POTVIN J K, LUCHT B L, et al. Two-step
fabrics utilizing cholesteric liquid crystal material: thermochromism in poly (3-docosoxy-4-methylthiophene): Mechanistic
US20150173679A1[P]. 2015-06-25. similarity to poly (3-docosylthiophene)[J]. Journal of Polymer
[27] ZHANG B, XU C, XU G, et al. Thermochromic and infrared Science Part A: Polymer Chemistry, 2010, 48(19): 4370-4373.
emissivity characteristics of cobalt doped zinc oxide for smart stealth [53] WANG Y, ARCHAMBAULT N, BELCHER A M, et al. Mesophase
in visible-infrared region[J]. Optical Materials, 2018, 86: 464-470. formation in regioregular poly (3-alkylthiophene)s containing long
[28] POTUCK A, MEYERS S, LEVITT A, et al. Development of chain alkyl groups[J]. Macromolecules, 2008, 41(19): 7115-7121.
thermochromic pigment based sportswear for detection of physical [54] LUKEŠ V, BREZA M. Thermochromism of bithiophenes and
exhaustion[J]. Fashion Practice, 2016, 8(2): 279-295. internal aromatic chain rotation[J]. Journal of Molecular Structure:
[29] TORRICO D D, FUENTES S, VIEJO C G, et al. Analysis of Theochem, 2007, 820(1/2/3): 35-39.
thermochromic label elements and colour transitions using sensory [55] ZHANG Tuanhong (张团红), HU Xiaoling (胡小玲), GUAN Ping
acceptability and eye tracking techniques[J]. Food Science and (管萍), et al. Discoloration mechanism and application progress of
Technology, 2018, 89: 475-481. reversible temperature-sensitive materials[J]. Coatings Painting &
[30] FU F, HU L. Advanced high strength natural fibre composites in Electroplating (涂装与电镀), 2006, 4(4): 15-20.
construction [M]. Duxford: Woodhead Publishing, 2017: 405-423. [56] TAMAOKI N. Cholesteric liquid crystals for color information
[31] GENG X, LI W, WANG Y, et al. Reversible thermochromic technology[J]. Advanced Materials, 2001, 13(15): 1135-1147.
microencapsulated phase change materials for thermal energy storage [57] AMIRI M G, GOLCHOUBIAN H. Solvatochromism, thermochromism
application in thermal protective clothing[J]. Applied Energy, 2018, and density functional theory studies of Copper (Ⅱ) complexes
217: 281-294. containing hemilabile tetradentate ligand[J]. Journal of Molecular
[32] DAY J H. Thermochromism of inorganic compounds[J]. Chemical Structure, 2018, 1165: 196-205.
Reviews, 1968, 68(6): 649-657. [58] LATASTE E, DEMOURGUES A, SALMI J, et al. Thermochromic
[33] SUSLICK K S. Kirk-Othmer encyclopedia of chemical behavior (400℃<T<1200℃) of barium carbonate/binary metal oxide
technology[M]. New York: J Wiley & Sons, 1998, 517-541. mixtures[J]. Dyes and Pigments, 2011, 91(3): 396-403.
[34] LI Wenge (李文戈), ZHU Changzhong (朱昌中). Reversible [59] NGUYEN D, BACH Q V, LEE J H, et al. Synthesis and irreversible
thermochromism materials[J]. Journal of Functional Materials (功能 thermochromic sensor applications of manganese violet[J]. Materials,
材料), 1997, 28(4): 337-341. 2018, 11(9): 1693-1705.
[35] ZHU Chuanfang (朱传方), XU Hanhong (徐汉红). Research [60] KWAN W S V. Irreversible thermochromic pigment capsules:
development of reversible thermochromic compounds[J]. Progress In US8652996B2[P]. 2014-02-18.
Chemistry (化学进展), 2001, 13(4): 261-267. [61] ROBERTSON L, GAUDON M, JOBIC S, et al. Investigation of the
[36] LI Tianwen (李天文), LIU Hongsheng (刘鸿生). Research and first-order phase transition in the Co 1-xMg x MoO 4 solid solution and
application of chromic materials[J]. Modern Chemical Industry (现 discussion of the associated thermochromic behavior[J]. Inorganic
代化工), 2004, 24(2): 62-64. Chemistry, 2011, 50(7): 2878-2884.
[37] ZHANG Lexian (张乐显). Study on the preparation of reversible [62] SALEK G, DEVOTI A, LATASTE E, et al. Optical properties versus
thermochromic material and its application in anti-counterfeiting temperature of Cr-doped γ-and α-Al 2O 3: Irreversible thermal sensors
field[D]. Wuhan: Huazhong University of Science and Technology application[J]. Journal of Luminescence, 2016, 179: 189-196.
2+
(华中科技大学), 2009. [63] SALEK G, DEMOURGUES A, JUBERA V, et al. Mn doped
[38] WANG Donghui (王东辉), ZHAO Yurong (赵裕蓉). Application and Zn 3(PO 4) 2 phosphors: Irreversible thermochromic materials useful as
research progress of microcapsules[J]. New Chemical Materials (化 thermal sensors[J]. Optical Materials, 2015, 47: 323-327.
工新型材料), 1999, 27(7): 11-14. [64] MEI Yue (梅约), JIANG Zeng (江增). Development of reversible
[39] CUI Xiaoliang (崔晓亮), ZHANG Baoyan (张宝砚), MENG Fanbao thermostatic coatings[J]. Paint & Coatings Industry (涂料工业),
(孟凡宝), et al. Preparation and microencapsulation of a reversible 2000, 30(3): 13-16.
thermochromic material[J]. China Synthetic Resin and Plastics (合成 [65] GUO Lijun (郭丽君), GONG Jinying (宫晋英). Development of
树脂及塑料), 2002, 19(3): 24-27. several temperature-sensitive coatings[J]. Journal of Qingdao
[40] ZHANG X, SHEN J, WANG F, et al. Intermolecular electronic and University (Engineering & Technology Edition) (青岛大学学报: 工
photochromic behaviors of halocadmate hybrids[J]. Dyes and 程技术版), 2011, 26(4): 78-81.
Pigments, 2019, 162: 815-820. [66] GARSHASBI S, SANTAMOURIS M. Using advanced
[41] ZHU Y, YU T, HAO P, et al. Halogen-dependent thermochromic thermochromic technologies in the built environment: Recent
properties in three methyl-viologen/haloargentate charge transfer development and potential to decrease the energy consumption and
(CT) salts[J]. Journal of Cluster Science, 2016, 27(4): 1283-1291. fight urban overheating[J]. Solar Energy Materials and Solar Cells,
[42] HAO P, LI H, YU T, et al. Pyrazinium iodoargentate with versatile 2019, 191: 21-32.