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China Plastics ›› 2024, Vol. 38 ›› Issue (6): 125-131.DOI: 10.19491/j.issn.1001-9278.2024.06.019
• Review • Previous Articles Next Articles
JIANG Qinyao1,2(), JIA Yuyao1,2, YANG Shaozhe1,2, WU Rong1,2, BAI Wei1(
), SUN Teng1(
)
Received:
2023-11-07
Online:
2024-06-26
Published:
2024-06-20
CLC Number:
JIANG Qinyao, JIA Yuyao, YANG Shaozhe, WU Rong, BAI Wei, SUN Teng. Research progress in high⁃temperature resistance of modified polycarbonate[J]. China Plastics, 2024, 38(6): 125-131.
1 | BRUNELLE D J. Advances in polycarbonates: An overview [M]. Advances in Polycarbonates. Washington,Amer Chemical Soc, 2005: 1⁃5. |
2 | KAUSAR A. A review of filled and pristine polycarbonate blends and their applications [J]. Journal of Plastic Film & Sheeting, 2017, 34(1): 60⁃97. |
3 | NAGANE S S, MAHER D M, VERMA S, et al. Pendant propargyloxy⁃functionalized aromatic (co)polycarbonates: synthesis, thermal crosslinking and chemical modification [J]. Journal of Macromolecular Science, Part A, 2022, 59(11): 752⁃763. |
4 | PARK S A, CHOI J, JU S, et al. Copolycarbonates of bio⁃based rigid isosorbide and flexible 1,4⁃cyclohexanedimethanol: Merits over bisphenol⁃A based polycarbonates [J]. Polymer, 2017, 116: 153⁃159. |
5 | BAICK I H, YANG W J, AHN Y G, et al. Structure and properties of ultra⁃high molecular weight bisphenol⁃A polycarbonate synthesized by solid⁃state polymerization in amorphous microlayers [J]. Journal of Applied Polymer Science, 2015, 132(10): 10. |
6 | ZHANG X, LIU Y, LI X, et al. Improving the thermal properties of polycarbonate via the copolymerization of a small amount of bisphenol fluorene with bisphenol⁃A [J]. International Journal of Polymer Science, 2022: 9255159. |
7 | LEE C⁃H, TAKAGI H, OKAMOTO H, et al. Preparation and mechanical properties of a copolycarbonate composed of bio⁃based isosorbide and bisphenol⁃A [J]. Polymer Journal, 2015, 47(9): 639⁃643. |
8 | VAN BUU O N, AUPOIX A, HONG N D T, et al. Chiral ionic liquids derived from isosorbide: synthesis, properties and applications in asymmetric synthesis [J]. New Journal of Chemistry, 2009, 33(10): 2 060⁃2 072. |
9 | 张廷健, 杨先贵, 王公应, 等. 双酚S和双酚A与碳酸二苯酯共聚合成阻燃性聚碳酸酯 [J]. 高分子材料科学与工程, 2014, 30(04): 22⁃25. |
ZHANG T J, YANG X G, WANG G Y, et al. Synthesis of Flame Retardant Polycarbonate by Melt Transesterification Copolymerization of Bisphenol S, Bisphenol A with Diphenyl Carbonate [J]. Polymer Materials Science and Engineering, 2014, 30(04):22⁃25. | |
10 | 鄂永胜, 吕 萍, 刘 彬, 等. 双酚AF型聚碳酸酯的制备与性能 [J]. 工程塑料应用, 2022, 50(04): 41⁃45,57. |
E Y S, LV P, LIU B, et al. Preparation and Properties of Bisphenol AF Polycarbonate [J]. Engineering Plastics Application, 2022, 50(04):41⁃45,57. | |
11 | WANG X C, SUN Y P, HU J L, et al. The study of crystallization behavior, Microcellular structure and thermal properties of glass⁃fiber/polycarbonate composites [J]. Polymers, 2023, 15(6): 16. |
12 | FATHALIAN M, AHANGARI M G, FEREIDOON A. Effect of nanosilica on the mechanical and thermal properties of carbon fiber/polycarbonate laminates [J]. Fibers and Polymers, 2019, 20(8): 1684⁃9. |
13 | PANG X Y, CHEN M D, FU J W, et al. Eugenol polysiloxane⁃polycarbonate/graphene nanocomposite: enhanced in thermostability and barrier property [J]. Nanomaterials, 2019, 9(12): 9. |
14 | 刘 凯, 李复生. 芴环结构对聚碳酸酯热性能的改进 [J]. 塑料, 2011, 40(04): 78⁃80,105. |
LIU K, LI F S. The improvement of polycarbonate thermal properties with fluorene⁃ring [J]. Plastics, 2011, 40(04): 78⁃80,105. | |
15 | 章家立, 瞿秉华. 芳香族聚碳酸酯的化学改性研究进展 [J]. 中国塑料, 2016, 30(01): 1⁃6. |
ZHAN J L, QU B H. Research progress of chemical modification of aromatic polycarbonate [J]. China Plastics, 2016, 30(01):1⁃6. | |
16 | G⁃H CHOI, HWANG D Y, SUH D H. High thermal stability of bio⁃based polycarbonates containing cyclic ketal moieties [J]. Macromolecules, 2015, 48(19): 6 839⁃6 845. |
17 | YAN⁃NA Z, LEI L, JI D⁃X, et al. Preparation and characterization of waterborne polyurethane modified by 4⁃maleimidophenol to enhance the mechanical and thermal properties [J]. Polymer Science, Series B, 2019, 61(5): 595⁃604. |
18 | LU D, WEN L, XUE L. Synthesis and characterization of novel 4⁃phenyl⁃pyridine unit based alkaline anion exchange membranes [J]. RSC Advances, 2016, 6(75): 71 431⁃71 440. |
19 | 鄂永胜, 吕 萍. 双酚S/双酚A共聚碳酸酯的制备及性能研究 [J]. 塑料科技, 2022, 50(04): 55⁃59. |
E Y S, LV P. Study on preparation and properties of bisphenol s/bisphenol A copolycarbonate [J]. Plastics Science and Technology, 2022, 50(04): 55⁃59. | |
20 | 王 芳, 李 言, 郭新涛, 等. 含双酚芴三元共聚聚砜的合成与性能 [J]. 中国塑料, 2022, 36(11): 24⁃29. |
WANG F, LI Y, GUO X T, et al. Synthesis and properties of ternary polysulfone copolymer containing bisphenol fluorene [J]. China Plastics, 2022, 36(11): 24⁃29. | |
21 | 刘静月, 胡林清, 何小航, 等. 双酚AF改性水性聚氨酯的合成与性能研究 [J]. 塑料工业, 2020, 48(03): 39⁃43. |
LIU Y J, HU L Q, HE X H, et al. Synthesis and properties of bisphenol af modified waterborne polyurethane [J]. China Plastics Industry, 2020,48(03):39⁃43. | |
22 | 张可超, 钟家春, 蒲泽军, 等. 生物基含氟聚碳酸酯及其制备方法, CN115536827A [P/OL]. |
23 | XU J, LI H, ZENG K, et al. Curing kinetics and thermal stability of novel siloxane⁃containing benzoxazines [J]. Thermochimica Acta, 2019, 671: 119⁃126. |
24 | ZHOU W, OSBY J. Siloxane modification of polycarbonate for superior flow and impact toughness [J]. Polymer, 2010, 51(9): 1 990⁃1 999. |
25 | SEESUKPHRONRARAK S, KAWASAKI S, KUWATA S, et al. Synthesis and characterization of 9,9⁃bis(4⁃hydroxyphenyl and 4⁃aminophenyl)dibenzofluorenes: Novel fluorene⁃based monomers [J]. Journal of Polymer Science Part A: Polymer Chemistry, 2019, 57(24): 2 602⁃2 605. |
26 | LI C, LONG X, SUN T, et al. Study on the preparation and optical properties of co⁃polycarbonates based on binaphthalene and cardo structures [J]. Chemistryselect, 2023, 8(7): 6. |
27 | SURESH S, GULOTTY R J, BALES S E, et al. A novel polycarbonate for high temperature electro⁃optics via azo bisphenol amines accessed by Ullmann coupling [J]. Polymer, 2003, 44(18): 5 111⁃5 117. |
28 | E Y, LV P, YANG F. Study on synthesizing polycarbonate with triphosgene [J]. Journal of Physics: Conference Series, 2022, 2194(1): 012033. |
29 | GUAN X⁃H, NIE H⁃R, WANG H⁃H, et al. High⁃solubility aromatic polyesters with fluorene and phthalein groups: synthesis and property [J]. High Performance Polymers, 2020, 32(8): 933⁃944. |
30 | 陈宇宏, 杜力鹏, 王 凯, 等. 4,4⁃(9⁃芴)二苯酚型聚碳酸酯的合成及其耐高温性能研究 [J]. 高分子学报, 2016, (09): 1 273⁃1 280. |
CHEN Y H, DU L P, WANG K, et al. Studies on synthesis and thermal properties of polycarbonate derived from 9, 9⁃bis(4⁃hydroxyphenyl) fluorene [J]. Acta Polymerica Sinica, 2016, (09): 1 273⁃1 280. | |
31 | 李 涛, 沈 佶, 麦富航, 等. 双酚芴、双酚A型聚碳酸酯共聚物的合成及其耐热性能研究 [J]. 广东化工, 2022, 49(20): 44⁃46,58. |
LI T, SHEN J, MAI F H, et al. Synthesis of 4,4'⁃(9⁃Fluorenylidene)diphenol and bisphenol A polycarbonate copolymer and research on heat resistance [J]. Guangdong Chemical Industry, 2022,49(20):44⁃46,58. | |
32 | 刘 斌, 陈磅宽. 基于联萘酚骨架的新型圆偏振发光材料的合成及性能探究 [J]. 化学学报, 2022, 80(07): 929⁃935. |
LIU B, CHEN P K. Synthesis and properties of novel circularly polarized luminescence | |
materials based on binaphthol skeleton [J]. Acta Chimica Sinica, 2022, 80(07): 929⁃935. | |
33 | MANUSZ J, LENZ R W, MACKNIGHT W J. Mechanical and thermal properties of aromatic copolyesters containing rigid binaphthyl units [J]. Polymer Engineering & Science, 1981, 21(16): 1 079⁃1 084. |
34 | TAKATA T, MATSUOKA H, ENDO T. Synthesis and anionic ring⁃opening polymerization of a novel aromatic cyclic carbonate having binaphthyl structure [J]. Chemistry Letters, 1991,(12): 2 091⁃2 094. |
35 | 魏志涛, 曾 伟, 王磊, 等. 一种耐高温聚碳酸酯共聚物及其制备方法和应用, CN113929894A [P/OL]. |
36 | KUMAR S, RAMACHANDRAN U. The synthesis and applications of asymmetric phase⁃transfer catalysts derived from isomannide and isosorbide [J]. Tetrahedron, 2005, 61(16): 4 141⁃4 148. |
37 | LE H H, CARLSON E M, CHUA J P, et al. Bisphenol A is released from polycarbonate drinking bottles and mimics the neurotoxic actions of estrogen in developing cerebellar neurons [J]. Toxicology Letters, 2008, 176(2): 149⁃156. |
38 | FOUYET S, OLIVIER E, LEPROUX P, et al. Bisphenol A, Bisphenol F, and Bisphenol S: the bad and the ugly. Where is the good? [J]. Life⁃Basel, 2021, 11(4): 13. |
39 | 刘传国, 李 晓, 钟家春, 等. 生物基耐高温聚碳酸酯及其制备方法, CN115873227A [P/OL]. |
40 | YUM S, KIM H, SEO Y. Synthesis and characterization of isosorbide based polycarbonates [J]. Polymer, 2019, 179: 6. |
41 | EO Y S, H⁃W RHEE, SHIN S. Catalyst screening for the melt polymerization of isosorbide⁃based polycarbonate [J]. Journal of Industrial and Engineering Chemistry, 2016, 37: 42⁃46. |
42 | JEONG Y G, JO W H, LEE S C. Crystal structure determination of poly(1,4⁃trans⁃cylcohexylenedimethylene 2,6⁃naphthalate) by X⁃ray diffraction and molecular modeling [J]. Macromolecules, 2003, 36(14): 5 201⁃5 207. |
43 | HUSSAIN F, PARK S, JEONG J, et al. Structure–property relationship of poly(cyclohexane 1,4‐dimethylene terephthalate) modified with high trans‐1,4‐cyclohexanedimethanol and 2,6‐naphthalene dicarboxylicacid [J]. Journal of Applied Polymer Science, 2020, 137(32). |
44 | WU X, XU D, DE BRUYN M, et al. Novel stereoisomeric lignin⁃derived polycarbonates: towards the creation of bisphenol polycarbonate mimics [J]. Polym Chem, 2023, 14(8): 907⁃912. |
45 | RUCIGAJ A, KOVACI Z, STIRN I, et al. The joint effect of amine and maleimide functional group in aminomaleimide on the curing kinetics and mechanical properties of epoxy resins [J]. Thermochimica Acta, 2020, 690: 10. |
46 | NAGANE S S, KUHIRE S S, JADHAV U A, et al. Design and synthesis of aromatic polyesters bearing pendant clickable maleimide groups [J]. Journal of Polymer Science Part A: Polymer Chemistry, 2019, 57(5): 630⁃640. |
47 | JADHAV U A, NAGANE S S, WADGAONKAR P P. Synthesis, characterization and post⁃modification of aromatic (Co)polyesters possessing pendant maleimide groups [J]. High Performance Polymers, 2022: 12. |
48 | TALANIKAR A A, NAGANE S S, WADGAONKAR P P, et al. Post⁃polymerization modifiable aromatic (co)poly(ether sulfone)s possessing pendant norbornenyl groups based upon a new bisphenol [J]. European Polymer Journal, 2022, 176. |
49 | 戴飞亮, 付子恩, 蒋金博, 等. 有机硅(碳)嵌段共聚物的合成及其应用研究进展 [J]. 材料导报, 2022, 36(09): 199⁃210. |
DAI F L, FU Z E, JIANG J F, et al. Research progress of the organosilicone segmented copolymer’s preparation and application [J]. Materials Reports, 2022, 36(09): 199⁃210. | |
50 | ZHANG X, LIU J, QU R, et al. Synthesis and characterization of siloxane functionalized CO2⁃based polycarbonate [J]. Polymer, 2023, 266: 125623. |
51 | PANG X Y, GE X, JI J Y, et al. Improving oxygen permeability and thermostability of polycarbonate via copolymerization modification with bio⁃phenol polysiloxane [J]. Polymers, 2019, 11(8): 10. |
52 | ZHOU Z B, WU G Z. Preparation of bisphenol⁃A and polydimethylsiloxane (PDMS) block copolycarbonates by melt polycondensation: effects of PDMS chain length on conversion and miscibility [J]. Polymers, 2021, 13(16): 15. |
53 | HSISSOU R, SEGHIRI R, BENZEKRI Z, et al. Polymer composite materials: A comprehensive review [J]. Compos Struct, 2021, 262: 15. |
54 | ZHU S, QIAN Y, HASSAN E A M, et al. Enhanced interfacial interactions by PEEK⁃grafting and coupling of acylated CNT for GF/PEEK composites [J]. Composites Communications, 2020, 18: 43⁃48. |
55 | ANIS A, FAIZ S, AL⁃ZAHRANI S M. Effects of extrusion parameters on tensile strength of polybenzimidazole fiber⁃reinforced high density polyethylene composites [J]. Journal of Polymer Engineering, 2016, 36(2): 113⁃118. |
56 | SONG J, CHEN C, DU X, et al. Aramid fiber coated with aramid nanofiber coating to improve its interfacial properties with polycarbonate [J]. Polymer Composites, 2023, 44(4): 2 557⁃2 568. |
57 | EID M, KAYTBAY S, EL⁃ASSAL A, et al. Electrical, Thermal, and Mechanical characterization of hot coined carbon fiber reinforced pure aluminium composites [J]. Metals and Materials International, 2022, 28(11): 2 747⁃2 765. |
58 | BOKOBZA L. Elastomer Nanocomposites: Effect of Filler–Matrix and Filler–Filler Interactions [J]. Polymers, 2023, 15(13): 2 900. |
59 | ZHANG X W, ZHANG B, SUN M M, et al. Preparation and thermal conductivity properties of high⁃temperature resistance polyimide composite films based on silver nanowires⁃decorated multi⁃walled carbon nanotubes [J]. J Mater Sci⁃Mater Electron, 2022, 33(3): 1 577⁃1 588. |
60 | MODARRESIFAR F, BINGHAM P A, JUBB G A. Thermal conductivity of refractory glass fibres [J]. Journal of Thermal Analysis and Calorimetry, 2016, 125(1): 35⁃44. |
61 | 徐禄波, 麻一明, 吴剑波, 等. 一种高耐热抗冲击聚碳酸酯组合物及其制备方法, CN111057358B [P/OL]. |
62 | JIANG B, LUAN J, QIN S, et al. Fabrication of very effective ferroferric oxide and multiwalled carbon nanotubes@polyetherimide/poly(ether ether ketone) electromagnetic interference shielding composites [J]. Polymer Composites, 2020, 41(8): 3 135⁃3 143. |
63 | HAZER S, COBAN M, AYTAC A. A study on carbon fiber reinforced poly(lactic acid)/polycarbonate composites [J]. Journal of Applied Polymer Science, 2018, 135(48): 9. |
64 | LEE D W, YOO B R. Advanced silica/polymer composites: Materials and applications [J]. Journal of Industrial and Engineering Chemistry, 2016, 38: 1⁃12. |
65 | SI Y, SAMULSKI E T. Synthesis of water soluble graphene [J]. Nano Lett, 2008, 8(6): 1 679⁃1 682. |
66 | SUN Y W, PAPAGEORGIOU D G, HUMPHREYS C J, et al. Mechanical properties of graphene [J]. Applied Physics Reviews, 2021, 8(2). |
67 | YOON S H, JUNG H T. Grafting polycarbonate onto graphene nanosheets: synthesis and characterization of high performance polycarbonate⁃graphene nanocomposites for ESD/EMI applications [J]. Rsc Advances, 2017, 7(73): 45 902⁃45 910. |
68 | CHAO C Y, GAO M. Flame retardancy and thermal properties of octavinylsilsesquioxane/polycarbonate composites [J]. Journal of Thermal Analysis and Calorimetry, 2017, 128(2): 1 125⁃1 132. |
69 | WANG Z, QIU Y, LIU A, et al. Micro⁃crosslinking of phosphaphenanthrene/siloxane molecule initiate aggregation flame retardant and toughening enhancement effects on its polycarbonate composite [J]. Chemical Engineering Journal, 2023, 466: 143169. |
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