Polylactide cellulose-based nanocomposites

被引:113
|
作者
Vatansever, Emre [1 ]
Arslan, Dogan [2 ]
Nofar, Mohammadreza [1 ,2 ]
机构
[1] Istanbul Tech Univ, Polymer Sci & Technol Program, TR-34469 Istanbul, Turkey
[2] Istanbul Tech Univ, Met & Mat Engn Dept, Fac Chem & Met Engn, TR-34469 Istanbul, Turkey
关键词
Poly(lactic acid); Polylactide; PIA; Nanocomposite; Cellulose nanocrystal; Cellulose nanofiber; Bacterial cellulose; Blend; Foam; Review; POLY(LACTIC ACID) COMPOSITES; ACID/CELLULOSE NANOCRYSTAL FILMS; MODIFIED NANO-CELLULOSE; /MICRO-SIZED ADDITIVES; MECHANICAL-PROPERTIES; THERMAL-PROPERTIES; CRYSTALLIZATION BEHAVIOR; BACTERIAL CELLULOSE; SILVER NANOPARTICLES; BIONANOCOMPOSITE FILMS;
D O I
10.1016/j.ijbiomac.2019.06.205
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Among biopolymers, polylactide (PLA) is considered as the most appropriate substitute for the petroleum-based polymers which are widely used in various commodity and engineering applications. PLA, however, also suffers from series of shortcomings such as slow crystallization rate and low melt strength which result in poor process ability, formability and foamability which substantially limit its production and usage. Recently, the use of biobased/biodegradable cellulose nanoparticles such as cellulose nanocrystals (CNC), cellulose nanofibers (CNF), and bacterial nanocellulose (BC) have been proposed to manufacture fully green PLA-based biocomposites while they could resolve some of the noted drawbacks of PIA. However, due to their high hydrophilicity and the presence of hydrogen bonding cellulose nanoparticles are not compatible with hydrophobic polymers. Therefore, the dispersion of these nanoparticles in thermoplastics still remains as the main challenge to process/develop their nanocomposites. This article reviews the studies conducted on these challenges of developing PLA cellulose-based nanocomposites including the difficulties of their processing and possible enhancements of their rheological, thermal, and mechanical properties. The investigations that have been conducted on PLA-CNC, PLA-CNF, and PLA-BC nanocomposites are separately discussed in this review article, while the studies on the development of PLA-nanocellulose blend nanocomposites and PLA-nanocellulose microcellular foams are also highlighted. (C) 2019 Elsevier B.V. All rights reserved.
引用
收藏
页码:912 / 938
页数:27
相关论文
共 50 条
  • [31] Functional porous cellulose-based nanocomposites by phase separation from ionic liquid based solvents
    Wittmar, Alexandra
    Boehler, Hendrik
    Fu, Qian
    Kayali, Ahmad
    Ulbricht, Mathias
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2018, 256
  • [32] The fabrication of polylactide/cellulose nanocomposites with enhanced crystallization and mechanical properties
    Chai, Hongbin
    Chang, Yue
    Zhang, Yunchong
    Chen, Zhize
    Zhong, Yi
    Zhang, Linping
    Sui, Xiaofeng
    Xu, Hong
    Mao, Zhiping
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2020, 155 : 1578 - 1588
  • [33] Effect of preparation method on the properties of polylactide/cellulose nanocrystal nanocomposites
    Arslan, Dogan
    Vatansever, Emre
    Sarul, Deniz Sema
    Kahraman, Yusuf
    Gunes, Gurbuz
    Durmus, Ali
    Nofar, Mohammadreza
    POLYMER COMPOSITES, 2020, 41 (10) : 4170 - 4180
  • [34] Thin ply bacterial cellulose-reinforced polylactide nanocomposites
    Hervy, Martin
    Bock, Frederic
    Lee, Koon-Yang
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 253
  • [35] Shear rheology of polylactide (PLA)-cellulose nanocrystal (CNC) nanocomposites
    Bagheriasl, Davood
    Carreau, Pierre J.
    Riedl, Bernard
    Dubois, Charles
    Hamad, Wadood Y.
    CELLULOSE, 2016, 23 (03) : 1885 - 1897
  • [36] Shear rheology of polylactide (PLA)–cellulose nanocrystal (CNC) nanocomposites
    Davood Bagheriasl
    Pierre J. Carreau
    Bernard Riedl
    Charles Dubois
    Wadood Y. Hamad
    Cellulose, 2016, 23 : 1885 - 1897
  • [37] Polylactide/cellulose nanocrystals: The in situ polymerization approach to improved nanocomposites
    Gazzotti, Stefano
    Farina, Hermes
    Lesma, Giordano
    Rampazzo, Riccardo
    Piergiovanni, Luciano
    Ortenzi, Marco Aldo
    Silvani, Alessandra
    EUROPEAN POLYMER JOURNAL, 2017, 94 : 173 - 184
  • [38] Structural evolution of liquid-crystalline solutions of hydroxypropyl cellulose and hydroxypropyl cellulose-based nanocomposites during flow
    Kulichikhin, V. G.
    Makarova, V. V.
    Tolstykh, M. Yu.
    Picken, S. J.
    Mendes, E.
    POLYMER SCIENCE SERIES A, 2011, 53 (09) : 748 - 764
  • [39] Bacterial Cellulose-Based Nanocomposites Containing Ceria and Their Use in the Process of Stem Cell Proliferation
    Gofman, Iosif, V
    Nikolaeva, Alexandra L.
    Khripunov, Albert K.
    Ivan'kova, Elena M.
    Shabunin, Anton S.
    Yakimansky, Alexander, V
    Romanov, Dmitriy P.
    Popov, Anton L.
    Ermakov, Artem M.
    Solomevich, Sergey O.
    Bychkovsky, Pavel M.
    Baranchikov, Alexander E.
    Ivanov, Vladimir K.
    POLYMERS, 2021, 13 (12)
  • [40] Novel cationic cellulose-based nanocomposites for targeted delivery of methotrexate to breast cancer cells
    Abbasian, Mojtaba
    Hasanzadeh, Parisa
    Mahmoodzadeh, Farideh
    Salehi, Roya
    JOURNAL OF MACROMOLECULAR SCIENCE PART A-PURE AND APPLIED CHEMISTRY, 2020, 57 (02): : 99 - 115