Page 123 - 《精细化工》2023年第11期
P. 123
第 11 期 佟佳莹,等: 分子主链含苝结构聚芳酯的合成及性能 ·2435·
程), 2020, 36(5): 161-166. chromophores[J]. European Polymer Journal, 2008, 44: 2608-2618.
[2] VERMA S, MAHER D M, NAGANE S S, et al. Thermally [14] WANG Y, ZHANG Q, GONG J B, et al. Modulating optical and
crosslinkable and chemically modifiable aromatic polyesters electrochemical properties of perylene dyes by twisting aromatic
possessing pendant propargyloxy groups[J]. Journal of Polymer π-system structures[J]. Dyes and Pigments, 2021, 189: 109261.
Science, Part A: Polymer Chemistry, 2019, 57(5): 588-597. [15] HE Q, DONG F L, WANG H Q, et al. The effects of 1-and
[3] WU Z F, ZHANG G, YAN G M, et al. Aromatic polyesters 3-positions substitutions on the photophysical properties of perylene
containing different content of thioether and methyl units: Facile and its application in thiol fluorescent probes[J]. Tetrahedron, 2022,
synthesis and properties[J]. Polymer Research, 2018, 25: 170. 104: 132565.
[4] MENG S Y, SUN N W, SU K X, et al. Novel organosoluble [16] LIU H L, WANG H L, LIU G, et al. Ultrasensitive sensing of
polyarylates based on diphenylamine-fluorene units: Synthesis, hydrazine vapor at sub-ppm level with pyrimidine-substituted perylene
electrochromic, and electrofluorescent properties[J]. High Performance diimide film device[J]. Tetrahedron, 2019, 75(13): 1988- 1996.
Polymers, 2017, 30(7): 1-8. [17] DEEPA S, SURESH V. Perylene derivatives as a fluorescent probe
[5] ZHAI Z, ZHAO N, LI P, et al. Polyarylate membrane constructed for sensing of amines in solution[J]. Dyes and Pigments, 2016, 134:
from porous organic cage for high-performance organic solvent 306-314.
nanofiltration[J]. Membrane Science, 2020, 595: 117505. [18] HOLLAUF M, ZACH P W, BORISOV S M, et al. Dye
[6] WANG Z F, HU J W, DING T G, et al. Synthesis of aromatic functionalized-ROMP based terpolymers for the use as a light
polyesters derived from bisphenol-A and bis(hydroxyphenyl)butane up-converting material via triplet-triplet annihilation[J]. Journal of
with diacyl chloride monomers[J]. Applied Polymer Science, 2022, Materials Chemistry C, 2017, 5: 7535-7545.
139: 1-9. [19] WANG H (王辉), PONMANI J, SANGARAIAH N, et al. Current
[7] LIU P Q, WU T, SHI M W, et al. Synthesis and characterization of researches and application of perylene compounds[J]. Progress in
readily soluble polyarylates derived from either 1,1-bis(4-hydroxyphenyl)- Chemistry (化学进展), 2015, 27(6): 704-743.
1-phenylethane or tetramethylbisphenol A and aromatic diacid [20] TAN W J, LI X, ZHANG J J, et al. A photochromic diarylethene
chlorides[J]. Applied Polymer Science, 2011, 119: 1923-1930. dyad based on perylene diimide[J]. Dyes and Pigments, 2011, 89:
[8] GUAN X H, MA Z F, KE Y, et al. Soluble polyarylate with high 260-265.
thermal stability and low-k at high frequency[J]. Materials Letters, [21] HAO C, ZHANG F X, JIANG T Y, et al. Perylene tetra-
2022, 324: 132789. (alkoxycarbonyl) based 'turn-on' fluorescent probe for selective
[9] ZHANG Y, LEI Z, YAN G M, et al. Syntheses and properties of recognition of Cu(Ⅱ) and its fluorescence imaging in living cells[J].
novel polyarylates with ethyl units as a side group[J]. Materials Tetrahedron, 2022, 117/118: 132840.
Today Communications, 2021, 48: 102643. [22] SHI H (施红), ZHANG Q (张清), LU J P (陆佳鹏), et al. Synthesis
[10] HU H N (胡海娜), LYU L H (吕丽华), XIONG X Q (熊小庆), et al. and optical properties of new polyfluorinated perylene-based
Dyes suitable for textile fluorescent dyeing and their application fluorescent materials and its application in LED device[J]. Journal of
progress[J]. Fine Chemicals (精细化工), 2020, 37(6): 51-61, 96. Nanjing Tech University (Natural Science Edition) (南京工业大学学
[11] WANG Z F (王周锋), HU J W (胡俊伟), DING T G (丁陶国), et al. 报: 自然科学版), 2022, 44(4): 380-386, 435.
Research progress on functional modification of polyarylates[J]. [23] WANG P (王鹏), ZHANG H L (张海连), ZHANG L (张林).
China Plastics Industry (塑料工业), 2022, 50(2): 10-13, 92. Preparation and characterization of perylene/phthalocyanine film[J].
[12] LIOU G S, CHANG C W, HUANG H M, et al. Synthesis and High Power Laser and Particle Beams (强激光与粒子束), 2008,
electrochromism of novel organosoluble polyarylates bearing 131(5): 765-768.
triphenylamine moieties[J]. Journal of Polymer Science, Part A: [24] FENG Q U, XIE S L, TAN K S, et al. Conjugated nanopolymer
Polymer Chemistry, 2007, 45(10): 2004-2014. based on a nanogrid: Approach toward stable polyfluorene-type
[13] LIOU G S, LIN S M, YEN H J. Synthesis and photoluminescence fluorescent emitter for blue polymer light-emitting diodes[J]. ACS
properties of novel polyarylates bearing pendent naphthylamine Applied Polymer Materials, 2019, 1: 2441-2449.