Comparison of acidic deep eutectic solvents in production of chitin nanocrystals

被引:75
|
作者
Yuan, Yang [1 ]
Hong, Shu [1 ,2 ]
Lian, Hailan [1 ]
Zhang, Kaitao [2 ]
Liimatainen, Henrikki [2 ]
机构
[1] Nanjing Forestry Univ, Coll Mat Sci & Engn, Nanjing 210037, Peoples R China
[2] Univ Oulu, Fibre & Particle Engn Res Unit, POB 4300, FI-90014 Oulu, Finland
基金
芬兰科学院; 中国国家自然科学基金;
关键词
Chitin; Nanocrystals; Deep eutectic solvents; Organic acid; MOLECULAR-WEIGHT CHITIN; TEMPO-MEDIATED OXIDATION; CHOLINE CHLORIDE; ALPHA-CHITIN; BIOMEDICAL APPLICATIONS; POLY(ETHYLENE GLYCOL); EFFICIENT CLEAVAGE; MODIFIED CELLULOSE; SHRIMP SHELLS; CROSS-LINKING;
D O I
10.1016/j.carbpol.2020.116095
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Five different acidic deep eutectic solvents (DESs) composed of choline chloride and organic acids were applied to fabricate chitin nanocrystals (ChNCs). All DESs resulted in high transmittance and stable ChNCs suspensions with very high mass yield ranging from 78 % to 87.5 % under proper reaction conditions. The acidic DESs had a dual role in ChNCs fabrication, i.e. they promoted hydrolysis of chitin and acted as an acylation reagent. Physicochemical characterization of chitin revealed that the removal of amorphous area during DES treatments led to increased crystallinity of ChNCs and a dimension diversity correlated the DES used. The average diameter and length of individual ChNCs ranged from 42 nm to 49 nm and from 257 nm to 670 nm, respectively. The thermal stability of ChNCs was comparable to that of pristine chitin. Thus, acidic DESs showed to be non-toxic and environmentally benign solvents for production of functionalized chitin nanocrystals.
引用
收藏
页数:7
相关论文
共 50 条
  • [31] Capture of Acidic Gases from Flue Gas by Deep Eutectic Solvents
    Wang, Yan
    Ren, Shuhang
    Hou, Yucui
    Wu, Weize
    PROCESSES, 2021, 9 (08)
  • [32] Comparison of Deep Eutectic Solvents on Pretreatment of Raw Ramie Fibers for Cellulose Nanofibril Production
    Yu, Wang
    Wang, Chaoyun
    Yi, Yongjian
    Wang, Hongying
    Zeng, Liangbin
    Li, Mao
    Yang, Yuanru
    Tan, Zhijian
    ACS OMEGA, 2020, 5 (10): : 5580 - 5588
  • [33] Comparison of deep eutectic solvents and solvent-free reaction conditions for aldol production
    Milker, S.
    Paetzold, M.
    Bloh, J. Z.
    Holtmann, D.
    MOLECULAR CATALYSIS, 2019, 466 : 70 - 74
  • [34] Deep desulfurization of fuels based on an oxidation/extraction process with acidic deep eutectic solvents
    Yin, Jingmei
    Wang, Jinping
    Li, Zhuo
    Li, Dan
    Yang, Guang
    Cui, Yingna
    Wang, Ailing
    Li, Changping
    GREEN CHEMISTRY, 2015, 17 (09) : 4552 - 4559
  • [35] Deep eutectic solvents for the production and application of new materials
    Tome, Luciana I. N.
    Baiao, Vanessa
    da Silva, Wanderson
    Brett, Christopher M. A.
    APPLIED MATERIALS TODAY, 2018, 10 : 30 - 50
  • [36] Lignocellulose Pretreatment by Deep Eutectic Solvents for Biobutanol production
    Huang, Bingqian
    Wang, Liyan
    Wei, Xuan
    Xu, Weichao
    Sun, Zhen
    Li, Tinggang
    PROGRESS IN CHEMISTRY, 2020, 32 (12) : 2034 - 2048
  • [37] Improved Production of 5-Hydroxymethylfurfural in Acidic Deep Eutectic Solvents Using Microwave-Assisted Reactions
    Morais, Eduarda S.
    Freire, Mara G.
    Freire, Carmen S. R.
    Silvestre, Armando J. D.
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (04)
  • [38] Deep Eutectic Solvents
    H. Surya Prakash Rao
    Resonance, 2023, 28 : 1865 - 1874
  • [39] Exploring the Sustainable Utilization of Deep Eutectic Solvents for Chitin Isolation from Diverse Sources
    Li, Rou
    Hsueh, Peng-Hui
    Ulfadillah, Siti Ayu
    Wang, Shang-Ta
    Tsai, Min-Lang
    Polymers, 2024, 16 (22)
  • [40] Deep Eutectic Solvents
    Rao, H. Surya Prakash
    RESONANCE-JOURNAL OF SCIENCE EDUCATION, 2023, 28 (12): : 1865 - 1874