[1] |
Zhao Y Y, Guo L Y, Fang B, et al. Recent advances in the research of biobased polymers and the catalytic application of ionic liquids in their synthesis[J]. Industrial & Engineering Chemistry Research, 2024, 63(46): 19955-19971.
|
[2] |
应明友, 刘义, 邱锋利, 等. 生物基聚酯树脂的合成及其性能研究[J]. 涂层与防护, 2022, 43(9): 42-49.
|
|
Ying M Y, Liu Y, Qiu F L, et al. Synthesis and properties of bio-based polyester resin[J]. Coating and Protection, 2022, 43(9): 42-49. (in Chinese)
|
[3] |
González-Arancibia F, Mamani M, Valdés C, et al. Biopolymers as sustainable and active packaging materials: Fundamentals and mechanisms of antifungal activities[J]. Biomolecules, 2024, 14(10): 1224, doi: 10.3390/biom14101224.
|
[4] |
朱浩霖, 康菡子, 周文欣, 等. 不同种类生物基增塑剂的制备及增韧聚乳酸研究进展[J]. 河南科学, 2023, 41(4): 503-510.
|
|
Zhu H L, Kang H Z, Zhou W X, et al. Research progress on preparation of different kinds of bio-based plasticizers and toughening of polylactic acid[J]. Henan Science, 2023, 41(4): 503-510. (in Chinese)
|
[5] |
韩国程. 环保型聚酯材料的发展及应用[J]. 塑料科技, 2018, 46(2): 121-126.
|
|
Han G C. Development and application of environment-friendly polyester material[J]. Plastics Science and Technology, 2018, 46(2): 121-126. (in Chinese)
|
[6] |
Hu C Y, Zhang Y, Pang X, et al. Poly (lactic acid): Recent stereochemical advances and new materials engineering[J]. Advanced Materials, 2024: 2412185, doi: 10.1002/adma.202412185.
|
[7] |
Raj A, Yousfi M, Prashantha K, et al. Morphologies, compatibilization and properties of immiscible PLA-based blends with engineering polymers: An overview of recent works[J]. Polymers, 2024, 16(13): 1776, doi: 10.3390/polym16131776.
|
[8] |
Kim M S, Chang H, Zheng L, et al. A review of biodegradable plastics: Chemistry, applications, properties, and future research needs[J]. Chemical Reviews, 2023, 123(16): 9915-9939.
DOI
PMID
|
[9] |
Harsevoort E, Cioc R C, Lutz M, et al. Closed-loop chemical recycling of a biobased poly (oxanorbornene-fused γ-butyrolactone)[J]. Journal of the American Chemical Society, 2024, 146(50): 34628-34637.
|
[10] |
芦长椿. 生物基聚酯的技术现状与趋势[J]. 纺织导报, 2020(9): 57-60.
|
|
Lu C C. Technical status and trend of bio-based polyester[J]. China Textile Leader, 2020(9): 57-60. (in Chinese)
|
[11] |
Siddiqui M N, Redhwi H H, Al-Arfaj A A, et al. Chemical recycling of PET in the presence of the bio-based polymers, PLA, PHB and PEF: A review[J]. Sustainability, 2021, 13(19): 10528, doi: 10.3390/su131910528.
|
[12] |
Cui Y N, Deng C, Fan L Q, et al. Progress in the biosynthesis of bio-based PET and PEF polyester monomers[J]. Green Chemistry, 2023, 25(15): 5836-5857.
|
[13] |
Sousa A F, Patrício R, Terzopoulou Z, et al. Recommendations for replacing PET on packaging, fiber, and film materials with biobased counterparts[J]. Green Chemistry, 2021, 23(22): 8795-8820.
|
[14] |
Barletta M, Aversa C, Ayyoob M, et al. Poly (butylene succinate) (PBS): Materials, processing, and industrial applications[J]. Progress in Polymer Science, 2022, 132: 101579, doi: 10.1016/j.progpolymsci.2022.101579.
|
[15] |
Coiai S, Di Lorenzo M L, Cinelli P, et al. Binary green blends of poly (lactic acid) with poly (butylene adipate- co-butylene terephthalate) and poly (butylene succinate- co-butylene adipate) and their nanocomposites[J]. Polymers, 2021, 13(15): 2489, doi: 10.3390/polym13152489.
|
[16] |
Yang W J, Ding H, Puglia D, et al. Bio-renewable polymers based on lignin-derived phenol monomers: Synthesis, applications, and perspectives[J]. SusMat, 2022, 2(5): 535-568.
|
[17] |
Facchinatto W M, Mouren A, Welsing G, et al. Chem-biotech strategy to synthesize sustainable urethane-based polymers and additives from microbially produced hydroxyalkanoyloxy-alkanoates and polyol lipids[J]. European Polymer Journal, 2025, 222: 113621, doi: 10.1016/j.eurpolymj.2024.113621.
|
[18] |
Kunduru K R, Hogerat R, Ghosal K, et al. Renewable polyol-based biodegradable polyesters as greener plastics for industrial applications[J]. Chemical Engineering Journal, 2023, 459: 141211, doi: 10.1016/j.cej.2022.141211.
|
[19] |
王亚宁, 周楚帆, 乌婧, 等. 生物基异己糖醇聚酯的制备及其构效关系研究进展[J]. 纺织学报, 2021, 42(8): 8-16.
|
|
Wang Y N, Zhou C F, Wu J, et al. Progress in preparation and structure-property relationship of bio-based polyesters of isohexides[J]. Journal of Textile Research, 2021, 42(8): 8-16. (in Chinese)
|
[20] |
Bianchi E, Soccio M, Gazzano M, et al. Melting behavior of compression molded poly (ester amide) from 2,5-furandicarboxylic acid[J]. Polymers, 2024, 16(24): 3459, doi: 10.3390/polym16243459.
|
[21] |
张鑫, 张健, 陈颖, 等. 生物基聚2,5-呋喃二甲酸乙二醇酯的合成技术及应用现状[J]. 合成纤维工业, 2023, 46(5): 66-72.
|
|
Zhang X, Zhang J, Chen Y, et al. Synthesis technology and application status of bio-based poly (ethylene 2,5-furandicarboxylate)[J]. China Synthetic Fiber Industry, 2023, 46(5): 66-72. (in Chinese)
|
[22] |
苏坤梅, 张祥辉, 刘成志, 等. 生物基呋喃聚酯纤维的制备与表征[J]. 天津工业大学学报, 2024, 43(6): 15-21.
|
|
Su K M, Zhang X H, Liu C Z, et al. Preparation and characterization of bio-based furan polyester fiber[J]. Journal of Tiangong University, 2024, 43(6): 15-21. (in Chinese)
|
[23] |
王银, 马海燕, 马海军, 等. 纺丝级生物基聚呋喃二甲酸乙二醇酯的改性研究进展[J]. 化工新型材料, 2024, doi: 10.19817/j.cnki.issn1006-3536.2025.07.047.
|
|
Wang Y, Ma H Y, Ma H J, et al. Research progress on modification of spinning-grade bio-based poly (ethylene furan dicarboxylate)[J]. China Industrial Economics, 2024, doi: 10.19817/j.cnki.issn1006-3536.2025.07.047.
|
[24] |
周俏, 王昊楠, 史亚飞, 等. 生物基聚酯PEF的研究进展[J]. 工程塑料应用, 2023, 51(1): 139-145.
|
|
Zhou Q, Wang H N, Shi Y F, et al. Research progress of bio-based polyester PEF[J]. Engineering Plastics Application, 2023, 51(1): 139-145. (in Chinese)
|
[25] |
王贤松, 王公应. 生物基2, 5-呋喃二甲酸聚酯的研究进展[J]. 精细化工, 2019, 36(12): 2341-2352.
|
|
Wang X S, Wang G Y. Research progress on bio-based 2,5-furan dicarboxylate polyesters[J]. Fine Chemicals, 2019, 36(12): 2341-2352. (in Chinese)
|
[26] |
Zhang Y H, Lei Q Y, Zhang S T, et al. Biobased unsaturated polyester thermosets from castor oil and isosorbide with life cycle assessment[J]. ACS Sustainable Chemistry & Engineering, 2025, 13(1): 374-385.
|
[27] |
杨梦路, 殷建军, 储永竞, 等. 基于生物基异山梨醇的高耐热共聚酯的合成与表征[J]. 高分子通报, 2023(5): 623-629.
|
|
Yang M L, Yin J J, Chu Y J, et al. Synthesis and characterization of high heat-resistant copolyester based on bio-based isosorbide[J]. Polymer Bulletin, 2023(5): 623-629. (in Chinese)
|
[28] |
于璐瑶, 任祯, 杨宇森, 等. 生物基聚酯单体的定向催化制备[J]. 化学学报, 2023, 81(2): 175-190.
DOI
|
|
Yu L Y, Ren Z, Yang Y S, et al. Directed preparation of biomass-based polyester monomers by catalytic conversion[J]. Acta Chimica Sinica, 2023, 81(2): 175-190. (in Chinese)
DOI
|
[29] |
Liu H, Yu Y. Biobased polyesters with ultrahigh UV shielding and water degradation derived from multifunctional tetracyclic diesters[J]. Biomacromolecules, 2025, 26(2): 943-953.
|
[30] |
李金禹, 戴亚杰, 陈宇, 等. 聚酯类增塑剂的合成与应用研究进展[J]. 中国塑料, 2020, 34(7): 109-117.
DOI
|
|
Li J Y, Dai Y J, Chen Y, et al. Progress in synthesis and applications of polyester plasticizers[J]. China Plastics, 2020, 34(7): 109-117. (in Chinese)
DOI
|