陕西科技大学轻工科学与工程学院(柔性电子学院) 西安 710021
西安交通大学化学工程与技术学院 西安 710049
陕西科技大学化学与化工学院西安市绿色化学品与功能材料重点实验室轻化工程国家实验教学示范中心 西安 710021
中国皮革和制鞋工业研究院(晋江)有限公司 泉州 362200
majz@sust.edu.cn
收稿:2025-11-19,
录用:2026-01-02,
网络首发:2026-03-09,
纸质出版:2026-04-20
移动端阅览
穆杨峥, 马建中, 邵亮, 王杰, 姬占有, 张文博, 张炫辉. 聚对苯二甲酸-己二酸丁二醇酯复合发泡材料的结构调控与功能化研究进展. 高分子通报, 2026, 39(4), 559–573.
Mu, Y. Z.; Ma, J. Z.; Shao, L.; Wang, J.; Ji, Z. Y.; Zhang, W. B.; Zhang, X. H. Research progress on structure regulation and functionalization of poly(butylene terephthalate-butylene adipate) composite foaming materials. Polym. Bull. (in Chinese), 2026, 39(4), 559–573.
穆杨峥, 马建中, 邵亮, 王杰, 姬占有, 张文博, 张炫辉. 聚对苯二甲酸-己二酸丁二醇酯复合发泡材料的结构调控与功能化研究进展. 高分子通报, 2026, 39(4), 559–573. DOI: 10.14028/j.cnki.1003-3726.2026.25.338.
Mu, Y. Z.; Ma, J. Z.; Shao, L.; Wang, J.; Ji, Z. Y.; Zhang, W. B.; Zhang, X. H. Research progress on structure regulation and functionalization of poly(butylene terephthalate-butylene adipate) composite foaming materials. Polym. Bull. (in Chinese), 2026, 39(4), 559–573. DOI: 10.14028/j.cnki.1003-3726.2026.25.338.
聚对苯二甲酸-己二酸丁二醇酯(PBAT)是一种兼具脂肪族柔韧性与芳香族刚性的绿色生物可降解聚酯,是替代传统塑料的理想材料之一。然而,其熔体强度低导致发泡材料泡孔尺寸稳定性差的问题制约了高性能PBAT发泡材料在包装、农业、生物医学及柔性电子等领域的广泛应用。本文系统综述了PBAT发泡材料的最新研究进展,重点阐述了多相共混、功能填料复合、交联强化及分子拓扑结构调控等策略对熔体强度的强化机理;深入分析了4种发泡工艺对泡孔结构的调控规律;最后总结了PBAT发泡材料在功能包装、生态农业、生物医学等领域的研究现状,并对未来揭示多尺度结构调控机理、开发绿色智能发泡工艺等研究方向进行了展望,为开发高性能PBAT发泡材料提供理论依据和技术支撑。
Poly(butylene adipate-
co
-terephthalate) (PBAT) is a green and biodegradable polyester that combines the flexibility of aliphatic and the rigidity of aromatic. It is one of the ideal materials to replace traditional plastics. However
its low melt strength leads to poor cell size stability of foamed materials
which restricts the wide application of high-performance PBAT foamed materials in packaging
agriculture
biomedicine and flexible electronics. This paper systematically reviews the latest research progress of PBAT foamed materials
focusing on the strengthening mechanisms of melt strength by strategies such as multi-phase blending
functional filler composites
crosslinking reinforcement and molecular topological structure regulation; deeply analyzes the regulation laws of cell structure by four foaming processes; finally summarizes the research status of PBAT foamed materials in functional packaging
ecological agriculture
biomedicine and other fields
and looks forward to the research directions of revealing multi-scale structure regulation mechanisms and developing green and intelligent foaming processes in the future
providing theoretical basis and technical support for the development of high-performance PBAT foamed materials.
Flores-Díaz, A. ; Arango, J. A. ; Calvo, D. C. ; Rangel-Mendez, R. ; Ontiveros-Valencia, A . Physicochemical and microbial treatments for plastics, microplastics, and nanoplastics . Environ. Dev. , 2025 , 54 , 101181 .
Meyer-Cifuentes, I. E. ; Werner, J. ; Jehmlich, N. ; Will, S. E. ; Neumann-Schaal, M. ; Öztürk, B . Synergistic biodegradation of aromatic-aliphatic copolyester plastic by a marine microbial consortium . Nat. Commun. , 2020 , 11 ( 1 ), 5790 .
Mohanty, A. K. ; Vivekanandhan, S. ; Pin, J. M. ; Misra, M . composites from renewable and sustainable resources: challenges and innovations . Science , 2018 , 362 ( 6414 ), 536 – 542 .
Li, C. T. ; Cui, Q. ; Li, Y. ; Zhang, K. ; Lu, X. Q. ; Zhang, Y . Effect of LDPE and biodegradable PBAT primary microplastics on bacterial community after four months of soil incubation . J. Hazard. Mater. , 2022 , 429 , 128353 .
Mao, H. I. ; Wang, L. Y. ; Chen, C. W. ; Hsu, K. H. ; Tsai, C. H. ; Cho, C. J. ; Yu, Y. Y. ; Rwei, S. P. ; Kuo, C. C . Enhanced crystallization rate of bio-based poly(butylene succinate- co -propylene succinate) copolymers motivated by glycerol . J. Polym. Res. , 2021 , 28 ( 3 ), 92 .
Haider, T. P. ; Völker, C. ; Kramm, J. ; Landfester, K. ; Wurm, F. R . Plastics of the future? The impact of biodegradable polymers on the environment and on society . Angew. Chem. Int. Ed. , 2019 , 58 ( 1 ), 50 – 62 .
Chen, L. ; Wang, S. H. ; Wang, S. S. ; Chen, C. ; Qi, L. H. ; Yu, L. ; Lu, Z. Y. ; Huang, J. ; Chen, J. Q. ; Wang, Z. ; Shi, X. W. ; Song, Z. Q. ; Liu, H. ; Chen, C. J . Scalable production of biodegradable, recyclable, sustainable cellulose–mineral foams via coordination interaction assisted ambient drying . ACS Nano , 2022 , 16 ( 10 ), 16414 – 16425 .
Laycock, B. ; Nikolić, M. ; Colwell, J. M. ; Gauthier, E. ; Halley, P. ; Bottle, S. ; George, G . Lifetime prediction of biodegradable polymers . Prog. Polym. Sci. , 2017 , 71 , 144 – 189 .
Cai, W. R. ; Liu, P. J. ; Bai, S. B. ; Li, S . A one-step method to manufacture biodegradable poly(butylene adipate- co -terephthalate) bead foam parts . Polym. Adv. Technol. , 2021 , 32 ( 5 ), 2007 – 2019 .
Fu, H. ; Yin, D. X. ; Wang, T. H. ; Gong, W. ; Zhou, H. F . Open pore morphology evolution in poly(butylene succinate)/chitin nanocrystal nanocomposite foams . J. Polym. Environ. , 2022 , 30 ( 1 ), 401 – 414 .
Yan, Z. H. ; Liao, X. ; He, G. J. ; Li, S. J. ; Guo, F. M. ; Zou, F. F. ; Li, G. X . Green and high-expansion PLLA/PDLA foams with excellent thermal insulation and enhanced compressive properties . Ind. Eng. Chem. Res. , 2020 , 59 ( 43 ), 19244 – 19251 .
de Gisi, S. ; Gadaleta, G. ; Gorrasi, G. ; La Mantia, F. P. ; Notarnicola, M. ; Sorrentino, A . The role of (bio)degradability on the management of petrochemical and bio-based plastic waste . J. Environ. Manag. , 2022 , 310 , 114769 .
葛铁军 , 王美元 , 尚祖明 , 俞利生 , 刘啸凤 . 1,4-环己烷二甲醇改性PBAT共聚酯的合成及性能 . 工程塑料应用 , 2024 , 52 ( 1 ), 44 – 50 .
Roy, S. ; Ghosh, T. ; Zhang, W. L. ; Rhim, J. W . Recent progress in PBAT-based films and food packaging applications: a mini-review . Food Chem. , 2024 , 437 , 137822 .
Díaz-Díaz, E. D. ; Ribba, L. ; Makovec, J. ; Melaj, M. ; Bernal, C. ; Goyanes, S. ; Salvay, A. G . Development of biodegradable films for sustainable agricultural applications by using thermoplastic potato starch and PBAT . J. Appl. Polym. Sci. , 2025 , 142 ( 44 ), e57685 .
Collins, M. N. ; Ren, G. ; Young, K. ; Pina, S. ; Reis, R. L. ; Oliveira, J. M . Scaffold fabrication technologies and structure/function properties in bone tissue engineering . Adv. Funct. Mater. , 2021 , 31 ( 21 ), 2010609 .
Jiang, M. ; Zhao, H. L. ; Chen, T. ; Li, G. M . Biodegradable PBAT/SWCNT porous material for piezoresistive sensing and electromagnetic interference shielding . Polym. Adv. Technol. , 2024 , 35 ( 12 ), e70005 .
王杰 , 王泽云 , 辛德华 , 周洪福 , 田华峰 , 吴卫东 . PBAT改性及其发泡材料的研究进展 . 高分子通报 , 2023 , 36 ( 2 ), 191 – 199 .
Yue, J. W. ; Feng, Y. Y. ; Qin, M. M. ; Feng, W . Carbon-based materials with combined functions of thermal management and electromagnetic protection: preparation, mechanisms, properties, and applications . Nano Res. , 2024 , 17 ( 3 ), 883 – 903 .
Zhao, J. K. ; Wang, B. ; Zhan, Z. H. ; Hu, M. Y. ; Cai, F. P. ; Świerczek, K. ; Yang, K. M. ; Ren, J. N. ; Guo, Z. H. ; Wang, Z. L . Boron-doped three-dimensional porous carbon framework/carbon shell encapsulated silicon composites for high-performance lithium-ion battery anodes . J. Colloid Interface Sci. , 2024 , 664 , 790 – 800 .
Wei, K. X. ; Shi, Y. ; Tan, X. ; Shalash, M. ; Ren, J. N. ; Faheim, A. A. ; Jia, C. ; Huang, R. Z. ; Sheng, Y. Q. ; Guo, Z. H. ; Ge, S. B . Recent development of metal-organic frameworks and their composites in electromagnetic wave absorption and shielding applications . Adv. Colloid Interface Sci. , 2024 , 332 , 103271 .
Pang, Y. Y. ; Cao, Y. Y. ; Zheng, W. G. ; Park, C. B . A comprehensive review of cell structure variation and general rules for polymer microcellular foams . Chem. Eng. J. , 2022 , 430 , 132662 .
Yan, L. ; Lu, G. J. ; Abdalkarim, S. Y. H. ; Wang, L. H. ; Chen, Z. M. ; Lu, W. D. ; Yu, H. Y . Multiple noncovalent interactions tailored crystallization and performance reinforcement mechanisms of biopolyester composites with functional cellulose nanocrystals . Int. J. Biol. Macromol. , 2024 , 255 , 128264 .
Jiang, J. Z. ; Zhang, X. C. ; Gao, S. ; Li, M. ; Hou, H. X . Effects of adding methods and modification types of cellulose on the physicochemical properties of starch/PBAT blown films . Int. J. Biol. Macromol. , 2022 , 223 , 1335 – 1343 .
Tian, H. L. ; Yu, J. S. ; Zhao, Y. ; Pan, H. W. ; Li, Y. ; Xiao, Y. ; Han, L. J. ; Bian, J. J. ; Hao, Y. P. ; Zhang, H. L . Environmentally friendly poly(butylene adipate- co -terephthalate) and CO 2 -based poly(propylene carbonate) biodegradable foams modified with short basalt fiber . J. Therm. Anal. Calorim. , 2023 , 148 ( 22 ), 12455 – 12466 .
Shi, Y. X. ; Liang, B. Q. ; Gao, H. ; Zhao, R. ; Dong, Q. ; Li, T. X. ; Ma, Y. ; Gao, W. ; Zhang, J. ; Gu, J. W. ; Melhi, S. ; Shalash, M. ; El-Bahy, Z. M. ; Guo, Z. H . Research progress on spherical carbon-based electromagnetic wave absorbing composites . Carbon , 2024 , 227 , 119244 .
Guo, J. ; Sun, Y. K. ; Li, X. ; Xi, S. H. ; Ibrahim, M. M. ; Qiu, H. ; Mersal, G. A. M. ; El-Bahy, Z. M. ; Murugadoss, V. ; Abdul, W. ; Zhou, F. J. ; Ren, J. N. ; Guo, Z. H. ; Zhu, J. F . Hollow core-shell structured Fe 3 O 4 @Polypyrrole composites for enhanced electromagnetic wave absorption . Compos. Sci. Technol. , 2024 , 258 , 110917 .
Li, Y. T. ; Zhang, Z. Y. ; Wang, W. M. ; Gong, P. J. ; Yang, Q. ; Park, C. B. ; Li, G. X . Ultra-fast degradable PBAT/PBS foams of high performance in compression and thermal insulation made from environment-friendly supercritical foaming . J. Supercrit. Fluids , 2022 , 181 , 105512 .
Meng, R. J. ; Yan, J. D. ; Zhou, H. F. ; Wang, X. D. ; Wang, L. Y . Insights into the foaming mechanism of micro-nanocellular PBAT foams regulating by crystallization behaviors . ACS Appl. Polym. Mater. , 2024 , 6 ( 19 ), 11932 – 11941 .
Guo, Y. T. ; Sun, L. ; Fang, C. ; Zhou, N. ; Peng, T. Y. ; Dai, Z. F. ; Zhang, T. ; Chen, J. ; Xiong, Y. B . Compatibilization of poly(lactic acid) and poly(butylene adipate- co -butylene terephthalate) blends by using epoxidized magnesium hydroxide nanoparticles . Int. J. Biol. Macromol. , 2025 , 306 , 141838 .
Cui, Y. L. ; Zhou, H. Y. ; Yin, D. X. ; Zhou, H. F. ; Wang, X. D . An innovative strategy to regulate bimodal cellular structure in chain extended poly(butylene adipate- co -terephthalate) foams . J. Vinyl Addit. Technol. , 2021 , 27 ( 2 ), 319 – 331 .
Cui, Y. L. ; Luo, J. Y. ; Deng, Y. F. ; Wang, X. D. ; Zhou, H. F . Effect of acetylated cellulose nanocrystals on solid-state foaming behaviors of chain-extended poly(butylene adipate- co -terephthalate) . J. Vinyl Addit. Technol. , 2021 , 27 ( 4 ), 722 – 735 .
Hong, S. H. ; Hwang, S. H . Construction and characterization of biodegradable foam from high-content lignin-reinforced poly(butylene adipate- co -terephthalate) biocomposites . ACS Appl. Polym. Mater. , 2022 , 4 ( 3 ), 1775 – 1783 .
Hu, D. D. ; Xue, K. ; Liu, Z. ; Xu, Z. M. ; Zhao, L . The essential role of PBS on PBAT foaming under supercritical CO 2 toward green engineering . J. CO 2 Util. , 2022 , 60 , 101965 .
Li, Y. T. ; Zhang, Z. Y. ; Wang, W. M. ; Gong, P. J. ; Yang, Q. ; Park, C. B. ; Li, G. X . Ultra-fast degradable PBAT/PBS foams of high performance in compression and thermal insulation made from environment-friendly supercritical foaming . J. Supercrit. Fluids , 2022 , 181 , 105512 .
Olonisakin, K. ; Mohanty, A. K. ; Thimmanagari, M. ; Misra, M . Recent advances in biodegradable polymer blends and their biocomposites: a comprehensive review . Green Chem. , 2025 , 27 ( 38 ), 11656 – 11704 .
Long, H. Y. ; Xu, H. S. ; Shaoyu, J. ; Jiang, T. C. ; Zhuang, W. ; Li, M. ; Jin, J. Y. ; Ji, L. ; Ying, H. J. ; Zhu, C. J . High-strength bio-degradable polymer foams with stable high volume-expansion ratio using chain extension and green supercritical mixed-gas foaming . Polymers , 2023 , 15 ( 4 ), 895 .
Ye, X. ; Xu, D. W. ; Wang, Q . Enhancing the antishrinkage and mechanical performances of the PBAT/PVA foam for environment-friendly packaging . Ind. Eng. Chem. Res. , 2024 , 63 ( 44 ), 18997 – 19006 .
Sheng, H. N. ; Zhou, Z. J. ; Yan, H. K. ; Yao, Y. Y. ; Zhang, L . Shrink-resistant poly(butylene adipate- co -terephthalate) foam reinforced with crystalline poly(3-hydroxybutyrate- co -3-hydroxyvalerate) particles . ACS Appl. Polym. Mater. , 2023 , 5 ( 9 ), 7519 – 7527 .
Wang, Z. Z. ; Wang, G. L. ; Xu, Z. R. ; Zhang, A. M. ; Zhao, G. Q . Poly(caprolactone) enabled ultralight and recyclable Poly(butylene adipate- co -terephthalate) foams for thermal insulation application . ACS Sustainable Chem. Eng. , 2024 , 12 ( 35 ), 13231 – 13243 .
Xue, Y. ; Wang, L. Z. ; Wang, X. D. ; Zhou, H. F. ; Deng, Y. F . A novel method for preparing microcellular PBAT/GNPs foam with high volume expansion ratio: effect of vacuum foaming . J. Polym. Environ. , 2024 , 32 ( 12 ), 6760 – 6772 .
Wei, X. Y. ; Cui, W. S. ; Zheng, K. J. ; Wang, J. ; Hu, J. ; Zhou, H. F . Bimodal cellular structure evolution in PBAT foams incorporated by carbon nanotubes and graphene nanosheets . J. Polym. Environ. , 2022 , 30 ( 7 ), 2785 – 2799 .
Ding, Y. ; Yang, Q. F. ; Wang, X. D. ; Li, S. H . The compressive resilience and shrinkage resistance properties of poly(butylene adipate- co -terephthalate) microcellular composite foams reinforced by functionalized microcrystalline cellulose . Int. J. Biol. Macromol. , 2025 , 306 , 141466 .
Zhang, Z. ; Yu, Z. ; Zhang, X. ; Shan, T. K. ; Li, L. ; Deng, T. ; Zhang, Z. X . Improving the foaming behavior of PBAT by graft modification: mechanisms, characteristics, and degradation . J. Polym. Environ. , 2024 , 32 ( 6 ), 2564 – 2575 .
Fan, Z. Y. ; Shi, Z. Z. ; Ma, L. ; Gong, P. J. ; Bao, R. Y. ; Yang, M. B. ; Yang, W . Dynamic cross-linked poly(butylene adipate- co -terephthalate) for high-performance green foam . ACS Sustainable Chem. Eng. , 2023 , 11 ( 45 ), 16354 – 16364 .
Ding, Y. ; Yang, Q. F. ; Wang, X. D. ; Li, S. H . The effect of free radical initiators on poly(butylene adipate- co -terephthalate) (PBAT) and its foaming performance . J. Mater. Sci. , 2024 , 59 ( 44 ), 20854 – 20869 .
Cui, Y. L. ; Zhou, H. Y. ; Yin, D. X. ; Zhou, H. F. ; Wang, X. D . An innovative strategy to regulate bimodal cellular structure in chain extended poly(butylene adipate- co -terephthalate) foams . J. Vinyl Addit. Technol. , 2021 , 27 ( 2 ), 319 – 331 .
Cai, W. R. ; Liu, P. J. ; Bai, S. B. ; Li, S . A one-step method to manufacture biodegradable poly(butylene adipate- co -terephthalate) bead foam parts . Polym. Adv. Technol. , 2021 , 32 ( 5 ), 2007 – 2019 .
Tang, D. ; Zhang, C. L. ; Weng, Y. X . Effect of multi-functional epoxy chain extender on the weathering resistance performance of Poly(butylene adipate- co -terephthalate) (PBAT) . Polym. Test. , 2021 , 99 , 107204 .
Wang, Z. C. ; Wang, R. J. ; Yan, S. Z. ; Sun, S. L . Foaming behaviors of poly(butylene adipate- co -terephthalate) with methyl methacrylate- co -glycidyl methacrylate as chain extender . J. Supercrit. Fluids , 2024 , 208 , 106225 .
焦洋 , 王龙震 , 蔡卓瑞 , 刘荣昊 , 张玉霞 , 周洪福 . 高发泡倍率PBAT泡沫的制备及回弹性能的探究 . 中国塑料 , 2023 , 37 ( 9 ), 19 – 27 .
Dong, M. Y. ; Wang, G. ; Zhang, X. N. ; Tan, D. Q. ; D, J. P. K. ; Ren, J. N. ; Colorado, H. ; Hou, H. ; Toktarbay, Z. ; Guo, Z. H . An overview of polymer foaming assisted by supercritical fluid . Adv. Compos. Hybrid Mater. , 2023 , 6 ( 6 ), 207 .
Zhou, Y. J. ; Tian, Y. R. ; Peng, X. W . Applications and challenges of supercritical foaming technology . Polymers , 2023 , 15 ( 2 ), 402 .
Tang, W. Y. ; Liao, X. ; Zhang, Y. ; Li, S. J. ; Wang, G. ; Yang, J. M. ; Li, G. X . Cellular structure design by controlling rheological property of silicone rubber in supercritical CO 2 . J. Supercrit. Fluids , 2020 , 164 , 104913 .
Yu, K. S. ; Wang, D. ; Hou, J. J. ; Zhang, X. L. ; Chen, J. B . Fabrication of poly(lactic acid) foam with high expansion ratio and oriented cellular structure by restricting cold crystallization . Int. J. Biol. Macromol. , 2023 , 251 , 126463 .
Wang, G. ; Dong, M. Y. ; Deng, H. H. ; Ma, X. ; Zhu, B. Y. ; Zhou, L. ; Zhang, X. N. ; Tan, D. Q. ; Algadi, H . Polypropylene foaming using supercritical carbon dioxide: a review on fundamentals, technology, and applications . Adv. Compos. Hybrid Mater. , 2024 , 8 ( 1 ), 84 .
欧萱乐 , 陈壮鑫 , 董智贤 , 殷泽峰 , 吴泳诗 , 梁烨琳 , 雷彩红 . 发泡工艺对PBAT泡沫结构和压缩性能的影响 . 塑料工业 , 2021 , 49 ( 10 ), 28 – 32 .
Wang, Z. Z. ; Wang, G. L. ; Xu, Z. R. ; Yang, C. M. ; Zhao, G. Q . Structure-tunable poly(butylene adipate- co -terephthalate) foams with enhanced mechanical performance derived by microcellular foaming with carbon dioxide as blowing agents . J. CO 2 Util. , 2023 , 72 , 102495 .
Tian, H. L. ; Wang, Z. P. ; Jia, S. L. ; Pan, H. W. ; Han, L. J. ; Bian, J. J. ; Li, Y. ; Yang, H. L. ; Zhang, H. L . Biodegradable foaming material of poly(butylene adipate- co -terephthalate) (pbat)/poly(propylene carbonate) (PPC) . Chinese J. Polym. Sci. , 2022 , 40 ( 2 ), 208 – 219 .
蔡文睿 . PBAT超临界二氧化碳挤出和珠粒发泡行为及机理研究 . 四川大学 硕士学位论文, 2022 .
Dong, G. W. ; Zhao, G. Q. ; Guan, Y. J. ; Li, S. ; Wang, X. X . Formation mechanism and structural characteristics of unfoamed skin layer in microcellular injection-molded parts . J. Cell. Plast. , 2016 , 52 ( 4 ), 419 – 439 .
高鹏 . 聚对苯二甲酸-己二酸丁二醇酯微孔注塑发泡材料的制备与性能研究 . 中国科学院大学(中国科学院宁波材料技术与工程研究所) 硕士学位论文, 2023 .
高宁 . PBAT及其改性模压发泡材料的制备与性能研究 . 中国石油大学(北京) 硕士学位论文, 2022 .
田方伟 , 赵文奇 , 黄瀚毅 , 赵丹 , 翟文涛 . PBAT/TPS共混体系模压发泡制备工艺、性能及成本研究 . 材料研究与应用 , 2024 , 18 ( 3 ), 409 – 418 .
Kaneka Corporation . Method for producing aliphatic polyester-based foam particles , JP patent , C08J, WO2024090332 . 2023-10-20 .
Pattaraudomchok, P. ; Winotapun, C. ; Tameesrisuk, M. ; Hararak, B . Essential oils loaded biodegradable PBAT/PBS films as young coconut packaging after harvest . Food Packag. Shelf Life , 2024 , 44 , 101322 .
Promhuad, K. ; Phothisarattana, D. ; Laorenza, Y. ; Bumbudsanpharoke, N. ; Harnkarnsujarit, N . Zinc oxide enhanced the antibacterial efficacy of biodegradable PBAT/PBS nanocomposite films: morphology and food packaging properties . Food Biosci. , 2023 , 55 , 103077 .
Sharma, S. ; Perera, K. Y. ; Pradhan, D. ; Duffy, B. ; Jaiswal, A. K. ; Jaiswal, S . Active packaging film based on polylactide-poly(butylene adipate- co -terephthalate) blends incorporated with tannic acid and gallic acid for the prolonged shelf life of cherry tomato . Coatings , 2022 , 12 ( 12 ), 1902 .
Du, H. Y. ; Sun, X. L. ; Chong, X. N. ; Yang, M. Y. ; Zhu, Z. ; Wen, Y. Q . a review on smart active packaging systems for food preservation: applications and future trends . Trends Food Sci. Technol. , 2023 , 141 , 104200 .
Abdullah, Cai, J. Y. ; Hafeez, M. A. ; Wang, Q. ; Farooq, S. ; Huang, Q. R. ; Tian, W. N. ; Xiao, J . Biopolymer-based functional films for packaging applications: a review . Front. Nutr. , 2022 , 9 , 1000116 .
Ma, K. X. ; Li, F. ; Zhe, T. T. ; Sun, X. Y. ; Zhang, X. Y. ; Wan, P. ; Na, H. ; Zhao, J. N. ; Wang, L . Biopolymer films incorporated with chlorogenic acid nanoparticles for active food packaging application . Food Chem. , 2024 , 435 , 137552 .
Zhou, J. ; Liu, G. Y. ; Guo, Z. J. ; Wang, M. ; Qi, C. Y. ; Chen, G. ; Huang, X. D. ; Yan, S. ; Xu, D. H . Stimuli-responsive pesticide carriers based on porous nanomaterials: a review . Chem. Eng. J. , 2023 , 455 , 140167 .
Dong, R. N. ; Guo, B. L . Smart wound dressings for wound healing . Nano Today , 2021 , 41 , 101290 .
Bai, Y. C. ; Hou, J. J. ; Yu, K. S. ; Liang, J. K. ; Zhang, X. L. ; Chen, J. B . Three-layered PBAT/CNTs composite foams prepared by supercritical CO 2 foaming for electromagnetic interference shielding . Mater. Today Sustain. , 2024 , 26 , 100763 .
Magazine, B . Biodegradable mulch film solves a multitude of problems[EB/OL] . [ 2019-8-22 ] . https://www.bioplasticsmagazine.com https://www.bioplasticsmagazine.com .
Wang, K. ; Flury, M. ; Sun, S. Y. ; Cai, J. L. ; Zhang, A. H. ; Li, Q. ; Jiang, R . In-field degradation of polybutylene adipate- co -terephthalate (PBAT) films, microplastic formation, and impacts on soil health . Environ. Res. , 2025 , 272 , 121086 .
Wufuer, R. ; Duo, J. ; Pei, L. ; Wang, S. Z. ; Li, W . F.; Feasibility study on the application of biodegradable plastic film in farmland soil in southern Xinjiang, China: planting tomatoes as an example . Toxics , 2023 , 11 ( 5 ), 467 .
Singh, G. ; Ramadass, K. ; Sooriyakumar, P. ; Hettithanthri, O. ; Vithange, M. ; Bolan, N. ; Tavakkoli, E. ; Van Zwieten, L. ; Vinu, A . Nanoporous materials for pesticide formulation and delivery in the agricultural sector . J. Control. Release , 2022 , 343 , 187 – 206 .
Pandey, A. ; Arputharaj, A. ; Vigneswaran, N. ; Raja, A. S. M. ; Kumar, T. S. ; Patil, S. ; Kumar, P. S. ; Raja, D. ; Pandiselvam, R . Advancement in biodegradable foam for packaging, filtration, thermal insulation, and medical application: a review . Waste Biomass Valorization , 2025 , 1 – 21 .
Das, A. ; K N, C. ; Salins, S. S. ; Shetty, R. ; Shetty, S . Poly(butylene adipate- co -terephthalate) (PBAT) in biomedical applications: a comprehensive review of material properties, fabrication methods, and biofunctional potential . Mater. Res. Express , 2025 , 12 ( 6 ), 062002 .
Ahmed, Y. W. ; Loukanov, A. ; Tsai, H. C . State-of-the-art synthesis of porous polymer materials and their several fantastic biomedical applications: a review . Adv. Healthc. Mater. , 2025 , 14 ( 26 ), e2403743 .
Abdel-Karim, R . Nanoporous materials as versatile nanoplatforms for drug delivery applications: properties, recent progress, and challenges . Engineered Biomaterials . Singapore : Springer Nature Singapore , 2023 . 495 – 519 .
Hoc, D. ; Haznar-Garbacz, D . Foams as unique drug delivery systems . Eur. J. Pharm. Biopharm. , 2021 , 167 , 73 – 82 .
Alberts, A. ; Tudorache, D. I. ; Niculescu, A. G. ; Grumezescu, A. M . Advancements in wound dressing materials: highlighting recent progress in hydrogels, foams, and antimicrobial dressings . Gels , 2025 , 11 ( 2 ), 123 .
Guo, W. ; Liu, C. ; Bu, W. L. ; Yang, Y. J. ; Guo, F. ; Li, J. Q. ; Wang, E. Y. ; Mao, Y. F. ; Mai, H. M. ; You, H. ; Long, Y . 3D printing of polylactic acid/boron nitride bone scaffolds: mechanical properties, biomineralization ability and cell responses . Ceram. Int. , 2023 , 49 ( 15 ), 25886 – 25898 .
Guo, W. ; Yang, Y. J. ; Liu, C. ; Bu, W. L. ; Guo, F. ; Li, J. Q. ; Wang, E. Y. ; Peng, Z. Y. ; Mai, H. M. ; You, H. ; Long, Y . 3D printed TPMS structural PLA/GO scaffold: process parameter optimization, porous structure, mechanical and biological properties . J. Mech. Behav. Biomed. Mater. , 2023 , 142 , 105848 .
Liu, Y. F. ; Wei, Y. Z. ; Xiong, Q. Q. ; Xie, C. ; An, T. F. ; He, M. ; Xia, L. ; Wei, S. N. ; Yu, J. ; Cheng, S. ; Xu, B. X. ; Ahmad, M. ; Zeng, X. ; Yu, J. ; Luo, S. H. ; Luo, H . Hollow porous PLA/PBAT composite microfibers with enhanced toughness and prolonged drug release for wound healing . Mater. Des. , 2024 , 237 , 112624 .
Qian, H. ; Gong, Z. ; Gao, X. L. ; Chen, Y. C. ; Zhao, L. ; Hu, D. D . Self-sensing actuators and piezoresistive sensors based on biodegradable and multi-responsive shape memory PBAT/PCL foams for machine learning-enabled multimodal intelligent monitoring . Compos. Part A Appl. Sci. Manuf. , 2025 , 199 , 109267 .
0
浏览量
772
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802046898号