Călina Ion, Demeter Maria, Scărișoreanu Anca, Micutz Marin
National Institute for Lasers Plasma and Radiation Physics, 409 Atomiștilor, 077125 Măgurele, Romania.
Department of Physical Chemistry, University of Bucharest, 4-12 Regina Elisabeta Blvd., 030018 Bucharest, Romania.
Gels. 2021 Oct 29;7(4):189. doi: 10.3390/gels7040189.
In this study, several superabsorbent hybrid hydrogel compositions prepared from xanthan gum (XG)/sodium carboxymethylcellulose (CMC)/graphene oxide (GO) were synthesized by e-beam radiation crosslinking. We studied and evaluated the effects of GO content from the chemical structure of the hydrogels according to: sol-gel analysis, swelling degree, diffusion of water, ATR-FTIR spectroscopy, network structure, and dynamic mechanical analysis. The gel fraction and swelling properties of the prepared hydrogels depended on the polymer compositions and the absorbed dose. The hybrid XGCMCGO hydrogels showed superabsorbent capacity and reached equilibrium in less than 6 h. In particular, the XGCMCGO (70:30) hydrogel reached the highest swelling degree of about 6000%, at an irradiation dose of 15 kGy. The magnitude of the elastic (G') and viscous (G″) moduli were strongly dependent on the absorbed dose. When the degree of crosslinking was higher, the G' parameter was found to exceed 1000 Pa. In the case of the XGCMCGO (80:20) hydrogel compositions, the Mc and ξ parameters decreased with the absorbed dose, while crosslinking density increased, which demonstrated that we obtained a superabsorbent hydrogel with a permanent structure.
在本研究中,通过电子束辐射交联合成了几种由黄原胶(XG)/羧甲基纤维素钠(CMC)/氧化石墨烯(GO)制备的高吸水性混合水凝胶组合物。我们根据以下方面从水凝胶的化学结构研究和评估了GO含量的影响:溶胶-凝胶分析、溶胀度、水扩散、ATR-FTIR光谱、网络结构和动态力学分析。所制备水凝胶的凝胶分数和溶胀性能取决于聚合物组成和吸收剂量。XGCMCGO混合水凝胶表现出高吸水性,并且在不到6小时内达到平衡。特别是,XGCMCGO(70:30)水凝胶在15 kGy的辐照剂量下达到约6000%的最高溶胀度。弹性模量(G')和粘性模量(G″)的大小强烈依赖于吸收剂量。当交联度较高时,发现G'参数超过1000 Pa。在XGCMCGO(80:20)水凝胶组合物的情况下,Mc和ξ参数随吸收剂量降低,而交联密度增加,这表明我们获得了具有永久结构的高吸水性水凝胶。