Closed-loop recyclable polymers: from monomer and polymer design to the polymerization-depolymerization cycle

被引:20
作者
Yang, Shuaiqi [1 ]
Du, Shuai [1 ]
Zhu, Jin [2 ]
Ma, Songqi [1 ]
机构
[1] Jiangnan Univ, Sch Chem & Mat Engn, Key Lab Synthet & Biol Colloids, Minist Educ, Wuxi 214122, Peoples R China
[2] Chinese Acad Sci, Ningbo Inst Mat Technol & Engn, Key Lab Biobased Polymer Mat Technol & Applicat Zh, Ningbo 315201, Peoples R China
基金
中国国家自然科学基金;
关键词
RING-OPENING POLYMERIZATION; TRANSFER RADICAL POLYMERIZATION; THIOL-THIOESTER EXCHANGE; DIELS-ALDER REACTIONS; METATHESIS POLYMERIZATION; MICHAEL ADDITION; CROSS-LINKING; TEMPERATURE DEPOLYMERIZATION; HYDROLYTIC DEGRADATION; GAMMA-BUTYROLACTONE;
D O I
10.1039/d4cs00663a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The extensive utilization of plastic, as a symbol of modern technological society, has consumed enormous amounts of finite and non-renewable fossil resources and produced huge amounts of plastic wastes in the land or ocean, and thus recycling and reuse of the plastic wastes have great ecological and economic benefits. Closed-loop recyclable polymers with inherent recyclability can be readily depolymerized into monomers with high selectivity and purity and repolymerized into polymers with the same performance. They are deemed to be the next generation of recyclable polymers and have captured great and increasing attention from academia and industry. Herein, we provide an overview of readily closed-loop recyclable polymers based on monomer and polymer design and no-other-reactant-involved reversible ring-opening and addition polymerization reactions. The state-of-the-art of circular polymers is separately summarized and discussed based on different monomers, including lactones, thiolactones, cyclic carbonates, hindered olefins, cycloolefins, thermally labile olefin comonomers, cyclic disulfides, cyclic (dithio) acetals, lactams, Diels-Alder addition monomers, Michael addition monomers, anhydride-secondary amide monomers, and cyclic anhydride-aldehyde monomers, and polymers with activatable end groups. The polymerization and depolymerization mechanisms are clearly disclosed, and the evolution of the monomer structure, the polymerization and depolymerization conditions, the corresponding polymerization yield, molecular weight, performance of the polymers, monomer recovery, and depolymerization equipment are also systematically summarized and discussed. Furthermore, the challenges and future prospects are also highlighted. We present the state-of-the-art of circular polymers based on monomer and polymer design and reversible ring-opening and addition polymerization reactions without the involvement of other reactants.
引用
收藏
页码:9609 / 9651
页数:43
相关论文
共 370 条
[1]   Chemically recyclable thermoplastics from reversible-deactivation polymerization of cyclic acetals [J].
Abel, Brooks A. ;
Snyder, Rachel L. ;
Coates, Geoffrey W. .
SCIENCE, 2021, 373 (6556) :783-+
[2]   Catalytic ring opening of beta-propiothiolactones by dirhenium and dimanganese carbonyl complexes [J].
Adams, RD ;
Huang, MS ;
Huang, W .
ORGANOMETALLICS, 1997, 16 (20) :4479-4485
[3]   Metal-catalyzed immortal ring-opening polymerization of lactones, lactides and cyclic carbonates [J].
Ajellal, Noureddine ;
Carpentier, Jean-Francois ;
Guillaume, Clemence ;
Guillaume, Sophie M. ;
Helou, Marion ;
Poirier, Valentin ;
Sarazin, Yann ;
Trifonov, Alexander .
DALTON TRANSACTIONS, 2010, 39 (36) :8363-8376
[4]   Thioester functional polymers [J].
Aksakal, Suzan ;
Aksakal, Resat ;
Becer, C. Remzi .
POLYMER CHEMISTRY, 2018, 9 (36) :4507-4516
[5]   Depolymerization of End-of-Life Poly(lactide) to Lactide via Zinc-Catalysis [J].
Alberti, Christoph ;
Enthaler, Stephan .
CHEMISTRYSELECT, 2020, 5 (46) :14759-14763
[6]   Recent developments in ring opening polymerization of lactones for biomedical applications [J].
Albertsson, AC ;
Varma, IK .
BIOMACROMOLECULES, 2003, 4 (06) :1466-1486
[7]   2,2-Bis(hydroxymethyl) propionic acid based cyclic carbonate monomers and their (co)polymers as advanced materials for biomedical applications [J].
Ansari, Imran ;
Singh, Prabhjeet ;
Mittal, Anupama ;
Mahato, Ram, I ;
Chitkara, Deepak .
BIOMATERIALS, 2021, 275
[8]   Plastic Solid Waste (PSW) in the Context of Life Cycle Assessment (LCA) and Sustainable Management [J].
Antelava, Ana ;
Damilos, Spyridon ;
Hafeez, Sanaa ;
Manos, George ;
Al-Salem, Sultan M. ;
Sharma, Brajendra K. ;
Kohli, Kirtika ;
Constantinou, Achilleas .
ENVIRONMENTAL MANAGEMENT, 2019, 64 (02) :230-244
[9]   Dimanganese decacarbonyl catalyzed visible light induced ambient temperature depolymerization of poly(methyl methacrylate) [J].
Arslan, Zeynep ;
Kiliclar, Huseyin Cem ;
Yagci, Yusuf .
DESIGNED MONOMERS AND POLYMERS, 2022, 25 (01) :271-276
[10]   Aromatic disulfide crosslinks in polymer systems: Self-healing, reprocessability, recyclability and more [J].
Azcune, Itxaso ;
Odriozola, Ibon .
EUROPEAN POLYMER JOURNAL, 2016, 84 :147-160