Cardanol-based polymer latex by radical aqueous miniemulsion polymerization

被引:29
|
作者
Li, W. S. J. [1 ]
Negrell, C. [1 ]
Ladmiral, V. [1 ]
Lai-Kee-Him, J. [2 ]
Bron, P. [2 ]
Lacroix-Desmazes, P. [1 ]
Joly-Duhamel, C. [1 ]
Caillol, S. [1 ]
机构
[1] Univ Montpellier, ICGM, CNRS, ENSCM, Montpellier, France
[2] Univ Montpellier, CBS, CNRS, INSERM, Montpellier, France
关键词
POLY(CARDANYL ACRYLATE); VEGETABLE-OILS; FATTY-ACID; COATINGS; MONOMER; NANOMATERIALS; SUSPENSION; RESOURCES; NUT;
D O I
10.1039/c8py00167g
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The facile one-pot, two-step synthesis of a new bio-sourced monomer derived from cardanol and its radical aqueous miniemulsion polymerization are presented in this work. As an abundant and renewable resource that does not compete with the food supply, cardanol is a compound of great interest for the replacement of petroleum-based materials due to its unique structure and properties. The new cardanol methacrylate (CM) was synthesized through hydroxyethylation of the phenolic hydroxyl group followed by methacrylation. The kinetics of the radical homopolymerization of CM and its copolymerization with methyl methacrylate (MMA) were investigated in toluene at 70 degrees C. The aqueous miniemulsion homo- and copolymerizations of CM and MMA were carried out at 20 wt% solids content, at 70 degrees C using 2,2-azobis(2,4-dimethylvaleronitrile) as a radical initiator, sodium dodecyl sulfate as a surfactant, and hexadecane as a hydrophobe. The latexes were colloidally stable with monomodal particle size distributions and mean particle diameters ranging from 100 to 245 nm. The physical and chemical properties of the resulting polymer films were studied by thermogravimetric analyses and rheology.
引用
收藏
页码:2468 / 2477
页数:10
相关论文
共 50 条
  • [31] Preparation of colored latex with polyurea shell by miniemulsion polymerization
    Takasu, M
    Kawaguchi, H
    COLLOID AND POLYMER SCIENCE, 2005, 283 (07) : 805 - 811
  • [32] Grafting polyacrylates on natural rubber latex by miniemulsion polymerization
    Lakshiminarayanan Ragupathy
    Ulrich Ziener
    Graf Robert
    Katharina Landfester
    Colloid and Polymer Science, 2011, 289 : 229 - 235
  • [33] Cardanol-Based Materials as Natural Precursors for Olefin Metathesis
    Vasapollo, Giuseppe
    Mele, Giuseppe
    Del Sole, Roberta
    MOLECULES, 2011, 16 (08) : 6871 - 6882
  • [34] Miniemulsion Polymerization by Predissolved Polymer as Costabilizer
    Yao Ning-Ning
    Ni Gang
    Zhao Wei-Zhen
    Xu Mei-Ru
    Du Juan
    CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 2011, 32 (06): : 1401 - 1406
  • [35] A Study on the Influence of the Temperature on the Formation of Cardanol-Based Phenolic Resin
    Shukla, Shrawan Kumar
    Maithani, Arun
    Srivastava, Deepak
    INTERNATIONAL JOURNAL OF CHEMICAL KINETICS, 2013, 45 (07) : 469 - 476
  • [36] Syntheses of cardanol-based cationic surfactants and their use in emulsion polymerisation
    Rui Wang
    Yuna Luo
    Chuan-Jie Cheng
    Qing-Hua Huang
    Hua-Shan Huang
    Shuang-Lin Qin
    Yuan-Ming Tu
    Chemical Papers, 2016, 70 : 1218 - 1227
  • [37] TEMPO-mediated radical polymerization of styrene in aqueous miniemulsion: Macroinitiator concentration effects
    Alam, Md. Nur
    Zetterlund, Per B.
    Okubo, Masayoshi
    POLYMER, 2008, 49 (16) : 3428 - 3435
  • [38] Particle size effects in TEMPO-mediated radical polymerization of styrene in aqueous miniemulsion
    Nakamura, Tadashi
    Zetterlund, Per B.
    Okubo, Masayoshi
    MACROMOLECULAR RAPID COMMUNICATIONS, 2006, 27 (23) : 2014 - 2018
  • [39] First Example of a Lipophilic Porphyrin-Cardanol Hybrid Embedded in a Cardanol-Based Micellar Nanodispersion
    Bloise, Ermelinda
    Carbone, Luigi
    Colafemmina, Giuseppe
    D'Accolti, Lucia
    Mazzetto, Selma Elaine
    Vasapollo, Giuseppe
    Mele, Giuseppe
    MOLECULES, 2012, 17 (10) : 12252 - 12261
  • [40] Application of cardanol-based unsaturated resin in wood enhanced modification
    Xiang, Wenli
    Tang, Hui
    Xu, Tianle
    Zhang, Baoyin
    Huagong Jinzhan/Chemical Industry and Engineering Progress, 2024, 43 (10): : 5653 - 5662