Biobased Flame Retardants from Lactic Acid Ester: Roles of Alkyl Chain Length in Flame Retardancy and Mechanical Properties of Poly(lactic acid)

被引:0
|
作者
Hu, Xu [1 ,2 ]
Wong, Kok Hoong [2 ]
Lai, Nai Yeen Gavin [2 ]
Li, Juan [3 ]
Yu, Haibin [1 ]
机构
[1] Chinese Acad Sci, Ningbo Inst Mat Technol & Engn, Ningbo 315201, Peoples R China
[2] Univ Nottingham Ningbo China, Dept Mech Mat & Mfg Engn, Ningbo 315100, Peoples R China
[3] NingboTech Univ, Inst Fire Safety Mat, Sch Mat Sci & Engn, Ningbo 315100, Peoples R China
来源
ACS APPLIED POLYMER MATERIALS | 2024年 / 6卷 / 17期
关键词
biobased; multifunctional flame retardant; poly(lactic acid); cyclophosphazene; lactic acidesters; transesterification; POLYLACTIC ACID; ONE-POT; GREEN; PLASTICIZERS; BLENDS; PVC;
D O I
10.1021/acsapm.4c02284
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
To enhance the fire resistance and mechanical properties of poly(lactic acid) (PLA), two biobased multifunctional flame retardants (HMLCP and HBLCP) were synthesized using methyl lactate, butyl lactate, and hexachlorocyclotriphosphazene. It was determined that HMLCP with short alkyl lactate shows stronger flame retardancy and reactivity but a weaker plasticizing effect on PLA and can better balance the flame retardancy and mechanical properties of PLA. The addition of 3 wt % HMLCP results in PLA achieving a UL-94 V0 rating and a limiting oxygen index (LOI) of 26.6 vol %. On the other hand, PLA will require 7 wt % HBLCP to obtain a V0 rating and 26.4 vol % LOI. The enhanced flame retardancy is primarily attributed to the self-extinguishing gas-phase effect of the phosphazene structure and the heightened melting-away effect induced by the lactic acid ester. HMLCP also displays a greater inclination to undergo transesterification with PLA, but both HMLCP and HBLCP are hard to leach after a long-time reaction with PLA. Both HMLCP and HBLCP slow the crystallization rate of PLA blends while enhancing the crystallinity. The results of this study have positive implications for the future development of multifunctional biobased additives for PLA, thereby expanding the range of applications for PLA.
引用
收藏
页码:11016 / 11027
页数:12
相关论文
共 50 条
  • [1] Enhancing flame retardancy of poly(lactic acid) with a novel fully biobased flame retardant synthesized from phytic acid and cytosine
    Qin, Wangping
    Zhang, Ruike
    Fu, Yan
    Chang, Jie
    POLYMER INTERNATIONAL, 2024, 73 (03) : 213 - 222
  • [2] Thermal degradation, flame retardancy and mechanical properties of DOPO derivatives/poly(lactic acid) composites
    Xu W.
    Long L.
    Xu G.
    Huang S.
    Xiang Y.
    Li J.
    Qin S.
    He M.
    Yu J.
    Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica, 2021, 38 (09): : 2841 - 2854
  • [3] Intrinsic flame retardancy of poly(lactic acid) bead foams
    Hoehne, Carl-Christoph
    Schmidt, Robert
    Berner, Valeria
    Metzsch-Zilligen, Elke
    Westphal, Erik
    Pfaendner, Rudolf
    Mack, Christoph
    JOURNAL OF APPLIED POLYMER SCIENCE, 2021, 138 (34)
  • [4] Microfibrous cyclodextrin boosts flame retardancy of poly(lactic acid)
    Decsov, Kata
    Takacs, Viktor
    Marosi, Gyorgy
    Bocz, Katalin
    POLYMER DEGRADATION AND STABILITY, 2021, 191
  • [5] Improving the flame retardancy and mechanical properties of poly(lactic acid) with a novel nanorod-shaped hybrid flame retardant
    Cao, Yu
    Ju, Yaqing
    Liao, Fenghui
    Jin, Xiaoxun
    Dai, Xiu
    Li, Jiawei
    Wang, Xinlong
    RSC ADVANCES, 2016, 6 (18): : 14852 - 14858
  • [6] Grafting of ammonium polyphosphate onto poly(lactic acid) and its effect on flame retardancy and mechanical properties
    J. D. Zuluaga-Parra
    L. F. Ramos-deValle
    S. Sánchez-Valdes
    R. Torres-Lubian
    R. Pérez-Mora
    E. Ramírez-Vargas
    J. G. Martínez-Colunga
    L. daSilva
    S. Vazquez-Rodriguez
    T. Lozano-Ramírez
    E. N. Cabrera-Álvarez
    Iranian Polymer Journal, 2023, 32 : 225 - 238
  • [7] Functionalization of Graphene and Its Influence on Mechanical Properties and Flame Retardancy of Jute/Poly(lactic acid) Composite
    Yu, Tao
    Hu, Changqing
    Li, Yan
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2019, 19 (11) : 7074 - 7082
  • [8] Grafting of ammonium polyphosphate onto poly(lactic acid) and its effect on flame retardancy and mechanical properties
    Zuluaga-Parra, J. D.
    Ramos-deValle, L. F.
    Sanchez-Valdes, S.
    Torres-Lubian, R.
    Perez-Mora, R.
    Ramirez-Vargas, E.
    Martinez-Colunga, J. G.
    DaSilva, L.
    Vazquez-Rodriguez, S.
    Lozano-Ramirez, T.
    Cabrera-Alvarez, E. N.
    IRANIAN POLYMER JOURNAL, 2023, 32 (02) : 225 - 238
  • [9] Green Composites Based on Poly (Lactic Acid) and Bamboo Fiber: Flame Retardancy, Thermal, and Mechanical Properties
    Shih, Yeng-Fong
    Lai, Zhong-Zhe
    NAC 2019: PROCEEDINGS OF THE 2ND INTERNATIONAL CONFERENCE ON NANOMATERIALS AND ADVANCED COMPOSITES, 2020, 242 : 61 - 69
  • [10] Flame Retardancy and Toughness of Poly(Lactic Acid)/GNR/SiAHP Composites
    Wu, Ningjing
    Yu, Jihang
    Lang, Wenchao
    Ma, Xiaobing
    Yang, Yue
    POLYMERS, 2019, 11 (07)