京ICP备13020181号-2
© 《China Plastics》
© 《China Plastics》
China Plastics ›› 2024, Vol. 38 ›› Issue (8): 81-87.DOI: 10.19491/j.issn.1001-9278.2024.08.013
• Additive • Previous Articles Next Articles
LUO Bofei(), XU Chen, XING Jingkai, WANG Bo, ZHANG Yanni
Received:
2023-11-27
Online:
2024-08-26
Published:
2024-08-19
CLC Number:
LUO Bofei, XU Chen, XING Jingkai, WANG Bo, ZHANG Yanni. Research on polypropylene carboxylic acid salt[J]. China Plastics, 2024, 38(8): 81-87.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.plaschina.com.cn/EN/10.19491/j.issn.1001-9278.2024.08.013
代表品种 | 化学结构 | 应用特点 | 参考文献 |
---|---|---|---|
双环[2.2.1]庚⁃5⁃烯⁃2,3⁃二羧酸钠 | ![]() | α晶成核剂,拉伸强度和弯曲模量都有大幅度提升而冲击强度基本保持不变 | [ |
7⁃氧杂双环[2.2.1]庚⁃5⁃烯⁃2,3⁃二羧酸钾 | ![]() | β晶成核效率较高,冲击强度大幅提高 | [ |
双环[2.2.1]庚烷二羧酸钠 | ![]() | β晶成核效率很高,拉伸强度、韧性都有提升,与无机填料复合性能更佳,成本低 | [ |
二环[2.2.1]⁃庚烷⁃2,3⁃二羧酸锌⁃双层硅氧烷 | ![]() | 结晶温度大幅度提升,球晶尺寸大大减小,一种性能极佳的新型α成核剂 | [ |
环[2.2.1]庚⁃5⁃烯⁃2⁃十二烷酰胺⁃3⁃羧酸锌 | ![]() | 表现出独特成核行为,韧性、冲击强度大幅提升 | [ |
代表品种 | 化学结构 | 应用特点 | 参考文献 |
---|---|---|---|
双环[2.2.1]庚⁃5⁃烯⁃2,3⁃二羧酸钠 | ![]() | α晶成核剂,拉伸强度和弯曲模量都有大幅度提升而冲击强度基本保持不变 | [ |
7⁃氧杂双环[2.2.1]庚⁃5⁃烯⁃2,3⁃二羧酸钾 | ![]() | β晶成核效率较高,冲击强度大幅提高 | [ |
双环[2.2.1]庚烷二羧酸钠 | ![]() | β晶成核效率很高,拉伸强度、韧性都有提升,与无机填料复合性能更佳,成本低 | [ |
二环[2.2.1]⁃庚烷⁃2,3⁃二羧酸锌⁃双层硅氧烷 | ![]() | 结晶温度大幅度提升,球晶尺寸大大减小,一种性能极佳的新型α成核剂 | [ |
环[2.2.1]庚⁃5⁃烯⁃2⁃十二烷酰胺⁃3⁃羧酸锌 | ![]() | 表现出独特成核行为,韧性、冲击强度大幅提升 | [ |
代表品种 | 化学结构 | 应用特点 | 参考文献 |
---|---|---|---|
己二酸钡 | ![]() | 高效β成核剂,β晶成核效率很高,拉伸强度及热形变温度均有提升 | [ |
己二酸锌 | ![]() | 在低温下,冲击强度有大幅度提升 | [ |
庚二酸钙 | ![]() | 表现出独特成核行为,韧性、冲击强度大幅提升 | [ |
己二酸 | ![]() | α成核剂,成核效果一般 | [ |
代表品种 | 化学结构 | 应用特点 | 参考文献 |
---|---|---|---|
己二酸钡 | ![]() | 高效β成核剂,β晶成核效率很高,拉伸强度及热形变温度均有提升 | [ |
己二酸锌 | ![]() | 在低温下,冲击强度有大幅度提升 | [ |
庚二酸钙 | ![]() | 表现出独特成核行为,韧性、冲击强度大幅提升 | [ |
己二酸 | ![]() | α成核剂,成核效果一般 | [ |
代表品种 | 化学结构 | 应用特点 | 参考文献 |
---|---|---|---|
四羧酸酞菁 | ![]() | 高效β成核剂,β晶成核效率很高,拉伸强度及热形变温度均有提升 | [ |
苯甲酸钠 | ![]() | 价廉、无毒、成本低,易于产生异色 | [ |
双(对叔丁基 苯甲酸)羟基铝 | ![]() | 增刚效果好,合成简单,透明性改善一般,与PP相容性差 | [ |
对苯二甲酸钙 | ![]() | 合成方法简单,稳定性好 | [ |
邻苯二甲酸锌 | ![]() | 高效β成核剂,通过原位合成方法,成核效率高,冲击强度好 | [ |
代表品种 | 化学结构 | 应用特点 | 参考文献 |
---|---|---|---|
四羧酸酞菁 | ![]() | 高效β成核剂,β晶成核效率很高,拉伸强度及热形变温度均有提升 | [ |
苯甲酸钠 | ![]() | 价廉、无毒、成本低,易于产生异色 | [ |
双(对叔丁基 苯甲酸)羟基铝 | ![]() | 增刚效果好,合成简单,透明性改善一般,与PP相容性差 | [ |
对苯二甲酸钙 | ![]() | 合成方法简单,稳定性好 | [ |
邻苯二甲酸锌 | ![]() | 高效β成核剂,通过原位合成方法,成核效率高,冲击强度好 | [ |
1 | BÁRÁNY T, KARGER⁃KOCSIS J. Polypropylene handbook: morphology, blends and composites[M]. Springer International Publishing, 2019. |
2 | CHANG B B, SCHNEIDER K, VOGEL R, et al. Influence of nucleating agent self⁃assembly on structural evolution of isotactic polypropylene during uniaxial stretching [J]. Polymer, 2018, 138: 329⁃342. |
3 | WANG S⁃W, YANG W, BAO R⁃Y, et al. The enhanced nucleating ability of carbon nanotube⁃supported β⁃nucleating agent in isotactic polypropylene [J]. Colloid and Polymer Science, 2010, 288(6): 681⁃688. |
4 | 王淑英. 无机填充改性聚丙烯及应用[J]. 电子工艺技术, 1981, (05): 34⁃38,19. |
5 | 王成望, 邓庆仪, 黄少慧. 聚合物成核剂研究的近期进展 [J]. 广州化工, 1999, (03): 11⁃17. |
WANG C, DENG Q Y, HUANG S H. Recent progress in the research of polymer nucleating agents [J]. Guangzhou Chemical Industry, 1999, (03): 11⁃17. | |
6 | ZENG A R, ZHENG Y Y, QIU S C, et al. Mechanical properties and crystallization behavior of polypropylene with cyclodextrin derivative as beta⁃nucleating agent [J]. Colloid and Polymer Science, 2011, 289(10): 1 157⁃1 166. |
7 | SUN Y, ZHAO S, ZHANG X, et al. Structural relationships between zinc hexahydrophthalate and the beta phase of isotactic polypropylene [J]. Industrial & Engineering Chemistry Research, 2020, 59(41): 18 529⁃18 538. |
8 | 孙亚光. 聚丙烯材料改性中成核剂技术的应用研究[J]. 科学技术创新, 2020, (19): 14⁃15. |
SUN Y G. Application of nucleating agent technology in modification of polypropylene materials [J]. Science and Technology Innovation, 2020, (19): 14⁃15. | |
9 | BINSBERGEN F L. Natural and artificial heterogeneous nucleation in polymer crystallization [J]. Journal of Polymer Science: Polymer Symposia, 1977, 59(1): 11⁃29. |
10 | N B H. Heterogeneous nucleating agents for polypropylene crystallization [J]. Journal of Applied Polymer Science, 1967, 11(5): 673⁃685. |
11 | LOTZ J C W B. Epitaxial crystallization of polymers on organic and polymeric substrates [J]. Progress in Polymer Science, 1990, 15(6): 909⁃948. |
12 | 李小俊. 聚丙烯β成核剂及其成核机理研究[D].中国科学技术大学, 2001. |
13 | 张祖平, 马国庆, 周雪云, 等. 聚丙烯增刚成核剂研究与应用新进展 [J]. 现代化工, 2021, 41(12): 59⁃63. |
ZHANG Z P, MA G Q, ZHOU X Y, et al. New progress in the research and application of polypropylene rigid nucleating agent [J]. Modern Chemical Industry, 2021, 41(12): 59⁃63. | |
14 | 张泽文, 朱恩赐, 张熙祥, 等. 两种羧酸盐成核剂的制备及其对聚丙烯的成核效果研究 [J]. 中国塑料, 2022, 36(12): 100⁃107. |
ZHANG Z W, ZHU E C, ZHANG X X,et al. Preparation of two carboxylate nucleating agents and their nucleation effect on polypropylene[J]. China Plastics, 2022, 36(12): 100⁃107. | |
15 | PAN C, QIN W, CHEN L, et al. A novel β⁃nucleating agent for isotactic polypropylene [J]. Journal of Thermal Analysis and Calorimetry, 2018, 134(3): 2 029⁃2 040. |
16 | CHEN X, LENG J, ZHANG D, et al. Study of modified potassium feldspar as a novel β⁃nucleating agent to the crystal morphology and properties of polypropylene [J]. SN Applied Sciences, 2020, 2(4):749. |
17 | ZHANG X, ZHAO S, KUO S⁃W, et al. An effective nucleating agent for isotactic polypropylene (iPP): Zinc bis⁃ (nadic anhydride) double⁃decker silsesquioxanes [J]. Polymer, 2021, 220(6):123574. |
18 | ZHANG Y F, HOU H H, GUO L H. Nucleus density dependency of crystallization of isotactic polypropylene nucleated with nucleating agent sodium bicyclic 2,2,1 heptane dicarboxylate [J]. Polymer Bulletin, 2018, 75(8): 3 693⁃3 703. |
19 | ZHAO S, LIU K, ZHOU S, et al. A novel self⁃dispersed β nucleating agent for isotactic polypropylene and its unique nucleation behavior and mechanism [J]. Polymer, 2017, 132: 69⁃78. |
20 | REN X⁃Q, ZHANG Y⁃F. Effects of different metal salts of aliphatic dicarboxylic acids on the formation of β⁃crystalline form in isotactic polypropylene [J]. Journal of Thermal Analysis and Calorimetry, 2018, 137(2): 563⁃573. |
21 | CHEN L, YANG Y, XIN Z, et al. Increased nucleation efficiency of an in situ–formed β⁃nucleating agent for impact polypropylene copolymer [J]. Journal of Polymer Research, 2019, 26(10):245. |
22 | ZHANG X, TANG F, LV W, et al. Effect of an active β⁃nucleating agent on the crystallization behavior of polypropylene random copolymer [J]. Journal of Polymer Research, 2021, 29(1):4. |
23 | PENG W, LIU W, ZHANG W, et al. A novel approach of preparing zinc adipate as β⁃nucleating agent for polypropylene engineering [J]. Journal of Materials Research, 2019, 34(21): 3 654⁃3 665. |
24 | REN X⁃Q, ZHANG Y⁃F, HE J, et al. Nucleation effect of adipic acid metal salts in isotactic polypropylene [J]. Journal of Thermal Analysis and Calorimetry, 2018, 135(6): 3 321⁃3 328. |
25 | ZHANG Y⁃F, MAO J⁃J, ZHOU P⁃Z. The relation between chemical structure of dicarboxylic dihydrazide compounds and nucleation effect in isotactic polypropylene [J]. Journal of Thermal Analysis and Calorimetry, 2021, 145(5): 2 379⁃2 387. |
26 | 辛忠. 基于成核剂的聚丙烯结晶过程调控技术与理论[J]. 国外塑料, 2007, (10): 65⁃71,78⁃81. |
27 | 刘亮, 周雪飞, 张学俊. 四羧酸酞菁成核剂对聚丙烯性能的影响[J]. 塑料工业, 2020, 48(06): 135⁃138. |
LIU L, ZHOU X F, ZHANG X J. Effect of nucleating agent tetracarboxylic phthalocyanine on properties of polypropylene[J]. China Plastics Industry, 2020, 48(06): 135⁃138. | |
28 | ZHANG Y⁃F, LI D, CHEN Q⁃J. Preparation and nucleation effects of nucleating agent hexahydrophthalic acid metal salts for isotactic polypropylene [J]. Colloid and Polymer Science, 2017, 295(10): 1 973⁃1 982. |
29 | 罗贤祖, 张跃飞, 杨小俊, 等. 有机羧酸盐类聚丙烯成核剂的研究进展[J]. 塑料工业, 2012, 40(02): 9⁃12,37. |
LUO X Z, ZHANG Y F, YANG X J, et al. Research and development of organic carboxylate nucleating agents for PP[J]. China Plastics Industry, 2012, 40(02): 9⁃12,37. | |
30 | QIN W, XIN Z, PAN C, et al. In situ formation of zinc phthalate as a highly dispersed β⁃nucleating agent for mechanically strengthened isotactic polypropylene [J]. Chemical Engineering Journal, 2019, 358: 1 243⁃1 252. |
31 | 郭小静, 赵世成, 辛忠. 稀土镧系单核金属化合物β晶成核剂对等规聚丙烯成核效应的影响[J]. 石油化工, 2009, 38(06): 662⁃667. |
GUO X J, ZHAO S C, XIN Z. Efficiency of a novel rare earth compound as β nucleating agent of isotactic polypropylene[J]. Petrochemical Technology, 2009, 38(06): 662⁃667. | |
32 | 吴博文. 一种新型β成核剂的开发与应用[D]. 广州:华南理工大学, 2021. |
33 | CHU H, LI W, XIE L, et al. Cyclic carboxylic acid metal salt⁃containing nucleating agent used for polymeric material includes cis⁃hexahydrophthalic rare earth metal salt, 8⁃22C straight⁃chain, or isomerized fatty acid of calcium salt, lithium salt or sodium salt, CN104974377⁃A [P/OL]. 2014⁃04⁃14. |
34 | ZHANG Y⁃F, MAO J⁃J, ZHOU P⁃Z. The relation between chemical structure of dicarboxylic dihydrazide compounds and nucleation effect in isotactic polypropylene [J]. Journal of Thermal Analysis and Calorimetry, 2020, 145(5): 2 379⁃2 387. |
35 | WANG K, MAO C, ZHANG J, et al. New complex type nucleating agent, prepared by e.g. adding long carbon chain fatty acid lanthanum salt, N,N'⁃dicyclohexylterephthalamide and a solvent into the reaction vessel, stirring and then heating, CN109320765⁃A; CN109320765⁃B [P/OL]. 2018⁃09⁃29. |
36 | DONG X, WANG Y, ZHANG W. Composite nucleating agent used for preparing polypropylene, comprises bis (2, 2' ⁃methylenebis (4, 6⁃di⁃tert⁃butylphenyl) phosphate) aluminum hydroxy salt as compound A, fatty acid salts, glycerol metal complexes and alkali metal benzoate and/or alkaline earth metal benzoate as compound B, CN113845697⁃A; CN113845697⁃B [P/OL]. 2021⁃04⁃27. |
37 | 孟明锐, 窦强. PP/庚二酸表面处理云母复合材料的力学性能和结晶行为[J]. 中国塑料, 2007, (08): 24⁃28. |
MENG M R, DOU Q. Mechanical properties and crystallization behavior of PP/pimelic acid treated mica composites[J]. China Plastics, 2007, (08): 24⁃28. |
[1] | SHAO Haofeng, JIAO Longjie, GONG Weiguang, MENG Xin. Synergistic antioxidant effect of phosphonite P⁃EPQ and hindered phenol in polypropylene [J]. China Plastics, 2024, 38(8): 20-25. |
[2] | SONG Wenlan, SONG Wenxing, LI Bing, LIU Qian, OUYANG Yuge, TIAN Huafeng, GUO Gaiping. Research progress in BOPP films of capacitors for enhancing dielectric and electric energy storage [J]. China Plastics, 2024, 38(7): 138-143. |
[3] | SHEN Qiangfeng, LYU Mingfu, XU Yaohui. Study on autoclave foaming properties of metallocene polypropylene [J]. China Plastics, 2024, 38(7): 55-61. |
[4] | XU Chen, LUO Bofei, LIU Tengteng, XING Jingkai. Research progress in modification of polypropylene with nucleating agent [J]. China Plastics, 2024, 38(7): 79-85. |
[5] | YANG Lian, JIANG Jing, JIA Caiyi, XIE Yuehan, WANG Xiaofeng, LI Qian. Preparation of polyamide 6 microfiber reinforced polypropylene composite and its property of chemical foam injection molding [J]. China Plastics, 2024, 38(6): 12-18. |
[6] | DONG Yapeng, ZHAO Tianjiao, WANG Meizhen, CUI Wenju, LIN Fuhua, WANG Bo. Effect of long chain fatty acid sodium/sodium arylamide fatty acid compounding nucleating agent on properties of polypropylene [J]. China Plastics, 2024, 38(6): 60-65. |
[7] | XIE Bo, TU Zhigang, ZHOU Xianjin, ZHAG Shangxian, XIONG Ligui, YANG Ting. Development of heat shrinkable BOPP packaging film with low friction coefficient [J]. China Plastics, 2024, 38(6): 78-81. |
[8] | ZHANG Yi, HUANG Yating, WEI Yongbao, TANG Wei, QIAN Lijun. Study on pyrolysis mechanism of intumescent flame⁃retardant system based on reaction force field [J]. China Plastics, 2024, 38(5): 66-72. |
[9] | GUO Minghai. Studies on structure and properties of high⁃impact copolymerized polypropylene with high melt flow rate [J]. China Plastics, 2024, 38(5): 7-13. |
[10] | GUO Jiang, XU Mengyi, LI Hui, HUANG Xiang, LIN Hao, JIANG Shengbao, CHEN Shang, CHEN Cheng. Preparation and dielectric properties of polypropylene/ZrO2 composite materials [J]. China Plastics, 2024, 38(3): 44-48. |
[11] | WANG Peng, YAO Cheng, LIU Gang, CAI Xipeng, JIA Lei, WANG Kai, CHEN Long. Structural characteristics and electrical insulating properties of BOPP films based on different stretching modes [J]. China Plastics, 2024, 38(3): 54-58. |
[12] | RUAN Fangtao, WU Hao, ZHU Jinwei, SU Yongsheng, CHEN Zhuolin, WANG Guofeng, WANG Hongjie. Effect of TEOS modification and long straw fiber orientation on properties of PP/SF composites [J]. China Plastics, 2024, 38(2): 14-19. |
[13] | XU Zhiyang, ZHU Jun. Research progress in synthesis of 2,5⁃furanedicarboxylic acid through 5⁃hydroxymethylfurfural route [J]. China Plastics, 2024, 38(2): 61-69. |
[14] | XU Yaohui, TANG Yiwen, GUO Peng, LYU Mingfu. Effect of ion modification on viscoelasticity of broad molecular weight distribution polypropylene [J]. China Plastics, 2024, 38(1): 7-13. |
[15] | LI Dan, ZHAO Biao, CHEN Ke, WANG Fan, ZHANG Jingyu, ZHANG Fengbo, PAN Kai. Research progress in preparation and applications of hollow polypropylene fiber [J]. China Plastics, 2023, 37(9): 109-114. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||