Fully Biobased Copolyesters with High Gas Barrier and Enhanced Mechanical Properties Derived from 2,5-Thiophenedicarboxylic Acid and Long-Chain Dicarboxylic Acid

被引:0
|
作者
Zuo, Jiyang [1 ,2 ]
Yang, Tao [2 ]
Lin, Chen [1 ]
Deng, Hongxia [1 ]
Gu, Shanshan [1 ]
Liu, Fei [2 ]
Shen, Zhisen [1 ]
Zhu, Jin [2 ]
Wang, Jinggang [2 ]
机构
[1] Ningbo Univ, Affiliated Lihuili Hosp, Dept Otorhinolaryngol Head & Neck Surg, Ningbo 315100, Zhejiang, Peoples R China
[2] Chinese Acad Sci, Ningbo Inst Mat Technol & Engn, Key Lab Biobased Polymer Mat Technol & Applicat Zh, Ningbo 315201, Zhejiang, Peoples R China
来源
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
fully biobased; polyethylene-like; nonoxygenheteroatom; efficient toughening; green packaging; POLY(BUTYLENE 2,5-THIOPHENEDICARBOXYLATE); POLYESTERS; SEMICRYSTALLINE; CRYSTALLIZATION; POLYETHYLENE;
D O I
10.1021/acssuschemeng.4c09431
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This work provides an in-depth molecular structure design strategy for developing high-barrier polymer packaging films. A series of high-performance PPDThF copolyesters were prepared by utilizing the unique crystallization ability of poly(propylene 2,5-thiophenedicarboxylate) (PPThF), as well as a long-chain dicarboxylic acid, namely dodecanedioic acid (DA). The incorporation of a polyethylene-like polyester structure from DA into the main chain of polymers has been found to be random copolymerization, leading to limited crystallizable sequence lengths. The effects of the long-chain dicarboxylic acids on the thermal transition, aggregation structure, gas barrier properties, and optical properties of the copolyester PPDThF copolyesters were investigated. The results demonstrate that PPDThF-10 combines the benefits of conventional thermoplastics, like high strength (>30 MPa) and high modulus (>0.6 GPa), with the mechanical and physical characteristics of chemically cross-linked rubber, including high extensibility (epsilon = 730%) and toughness (134 MJ/m(-3)). The results obtained so far demonstrate that thiophene-based copolyesters can be used in food packaging applications.
引用
收藏
页码:1775 / 1787
页数:13
相关论文
共 41 条
  • [31] Synthesis and characterization of 2,5-furandicarboxylic acid poly(butanediol sebacate-butanediol) terephthalate (PBSeT) segment copolyesters with excellent water vapor barrier and good mechanical properties
    Feng, Yu
    Li, Yingchun
    Ye, Xinming
    Li, Zhimao
    Wang, Wensheng
    Liu, Tong
    El Azab, Islam H.
    Mersal, Gaber A. M.
    Ibrahim, Mohamed M.
    El-Bahy, Zeinhom M.
    Huang, Mina
    Guo, Zhanhu
    JOURNAL OF MATERIALS SCIENCE, 2022, 57 (24) : 10997 - 11012
  • [32] A novel poly (pentylene 2,5-furandicarboxylate-co-pentylene 2,6-naphtha-late) polyester derived from bio-based 2,5-Furandicarboxylic acid with superior gas barrier properties
    Li, Junlei
    Liu, Chengzhi
    Su, Kunmei
    Li, Zhenhuan
    FOOD CHEMISTRY, 2025, 481
  • [33] New Bio-Based Copolyesters Derived from Novel Cyclic Diol 2,5-Tetrahydrofurandimethanol, 2,5-Furardicarboxylic acid and 1,3-Propanediol: Synthesis, Thermal Behavior and Rheological Properties
    Hongdong Yang Hu
    Xinming Zhang
    Liping Pu
    Polymer Science, Series B, 2023, 65 : 429 - 437
  • [34] New Bio-Based Copolyesters Derived from Novel Cyclic Diol 2,5-Tetrahydrofurandimethanol, 2,5-Furardicarboxylic acid and 1,3-Propanediol: Synthesis, Thermal Behavior and Rheological Properties
    Hu, Yang
    Zhang, Hongdong
    Pu, Xinming
    Yang, Liping
    POLYMER SCIENCE SERIES B, 2023, 65 (04) : 429 - 437
  • [35] Bio-based copolyesters poly(butylene 2,6-naphthalate-co-butylene furandicarboxylate) derived from 2,5-furandicarboxylic acid (FDCA): Synthesis, characterization, and properties
    Wang, Guoqiang
    Yu, Jiayi
    Jiang, Min
    Wang, Rui
    Liang, Yin
    Zhou, Guangyuan
    POLYMER TESTING, 2020, 91
  • [36] Biobased poly(butylene 2,5-furandicarboxylate) and poly(butylene adipate-co-butylene 2,5-furandicarboxylate)s: From synthesis using highly purified 2,5-furandicarboxylic acid to thermo-mechanical properties
    Wu, Binshuang
    Xu, Yutao
    Bu, Zhiyang
    Wu, Linbo
    Li, Bo-Geng
    Dubois, Philippe
    POLYMER, 2014, 55 (16) : 3648 - 3655
  • [37] Utilizing High Melting Point Long-Chain Fatty Acid Based CO2 Response ILs for Suppression of CO2 Gas Channeling and Clay Swelling
    Chen, Yingjiang
    Lin, Xingyu
    Zhang, Ruoxin
    Yang, Ziteng
    Wang, Na
    Wang, Li
    Lu, Hongsheng
    Huang, Zhiyu
    ENERGY & FUELS, 2024, 38 (22) : 22365 - 22375
  • [38] Enhanced mechanical and gas barrier properties of poly(ε-caprolactone) nanocomposites filled with tannic acid-Fe(III) functionalized high aspect ratio layered double hydroxides
    Mao, Long
    Wu, Hui-qing
    Liu, Yue-jun
    Yao, Jin
    Bai, Yong-kang
    MATERIALS CHEMISTRY AND PHYSICS, 2018, 211 : 501 - 509
  • [39] Allyl compound with fully biomass content derived from 2,5-furandicarboxylic acid and eugenol to form high-performance thiol-ene click polymers
    Tian, Yazhou
    Li, Xiangyuan
    Yang, Wei
    Wang, Liwei
    Wang, Xiuli
    Ding, Ying
    Ren, Jiangyan
    Cheng, Jue
    Zhao, Fugui
    INDUSTRIAL CROPS AND PRODUCTS, 2022, 188
  • [40] Poly(propylene naphthalate-co-propylene 2,5-furandicarboxylate)s derived from bio-based 2,5-furandicarboxylic acid (FDCA): Synthesis, characterization and thermo-mechanical properties
    Wang, Guoqiang
    Hou, Meichao
    Jiang, Min
    Wang, Rui
    Liang, Yin
    Zhou, Guangyuan
    POLYMER DEGRADATION AND STABILITY, 2020, 179 (179)