4.7 Article

Development and Evaluation of Superabsorbent Hydrogels Based on Natural Polymers

Journal

POLYMERS
Volume 12, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/polym12102173

Keywords

alginate; ionic complexation; xanthan gum; chitosan; hydrogel; superabsorbent polymer

Funding

  1. Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior (CAPES/Brazil)
  2. Fundacao de Amparo a Pesquisa do Estado de Sergipe (FAPITEC, MS/CNPq/FAPITEC/SE/SES) [06/2018]
  3. Conselho Nacional de Pesquisas (CNPq, Apoio a Projetos de Pesquisa/MCTI/CNPQ/Universal) [14/2014]
  4. Portuguese Science and Technology Foundation (FCT) [M-ERA-NET/0004/2015, UIDB/04469/2020]
  5. FEDER
  6. Ministry of Science and Technical Development of the Republic of Serbia [200051 172015 OI]

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Superabsorbent hydrogels (SAHs) are three dimensional networks formed by polymers that can absorb aqueous solution of over 100% of their initial weight. This work aimed to develop and characterize SAHs of Chitosan/Xanthan gum (CG), Chitosan/Alginate (CA) and controlled Chitosan (C), Xanthan gum (G), and Alginate (A) produced using onion-like methodology. The swelling performance, the morphological structure, the crystallinity, and the Fourier transformed infrared spectroscopy characteristics of SAH were used for the characterization of polyelectrolytes complex. Swelling analysis showed that chitosan has a strong influence on the maintenance of hydrogels structure after swelling, mainly in the acid environment (pH = 2). The chitosan hydrogel presented around 3000% of acidic fluid absorption after 24 h. The chitosan:xanthan gum (1:1 and 2:1 named as C1G1 and C2G1, respectively) hydrogels were the best combination regarding swelling performance in an acid environment, reaching 1665% and 2024%, respectively, as well at pH 7.0, presenting 1005% (C1G1) and 667% (C2G1). Scanning electron microscopy analysis showed samples with pores, and with different shapes. The X-ray diffraction showed the presence of a characteristic peak at 2 theta = 20 degrees in all developed composition because of the crystalline nature of chitosan. This work shows the possibility of developing eco-friendly biopolymer-based SAHs at a low cost with a good swelling capacity and stability.

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