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Synthesis, Preparation and Characterization of Amine-Induced Bacterial Cellulose-Poly (Vinyl Alcohol) Semi-Interpenetrating Network Hydrogel

机译:胺诱导的细菌纤维素 - 聚(乙烯醇)半渗透网络水凝胶的合成,制备和表征

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Bacterial cellulose (BC) was synthesized using Gluconacetobacter xylinus (BCRC 14182). Synthesized BC was powdered and dissolved in Bis(ethylenediamine) copper (II) hydroxide (Cuen) solution to introduce the amine (NH_2) group onto the BC network to yield modified BC (mBC) which was then blended with poly (vinyl alcohol) (PVA) and subsequently crosslinked with genipin (Gp). Pristine, modified and crosslinked hydrogels were studied using Fourier Transform Infrared Spectroscopy (FTIR), Scanning Electron Microscopy (SEM) and swelling behavior in water. FTIR revealed a distortion on the BC network chain via a reduction in the absorption of OH peak of mBC and the emergence of peaks at 1587 and 1560 cm-1 attributed to N-H stretching of the induced NH2 group. SEM confirmed the 3-D fibril and porous structure of BC which became distorted after modification and crosslinking. The hydrogels showed equilibrium water content of 86.5%, 67.5%, 66.7% and 33.0 % for BC, PVA, mBC-PVA and mBC-PVA-Gp, respectively. The decreased swelling in mBC-PVA-Gp indicated that genipin was able to crosslink the modified BC.
机译:使用葡聚糖杆菌(BCRC 14182)合成细菌纤维素(BC)。合成的Bc被粉末状并溶解在双(乙二胺)铜(II)氢氧化物(CuE)溶液中,将胺(NH_2)基团引入BC网络上,得到改性的BC(MBC),然后与聚(乙烯醇)混合( PVA)随后与Genipin(GP)交联。使用傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM)和水中溶胀行为研究原始,改性和交联的水凝胶。 FTIR通过减少MBC的OH峰的吸收和1587和1560cm-1的出现归因于诱导的NH 2族的N-H拉伸的峰值,揭示了BC网络链对BC网络链的变形。 SEM证实了BC的3-D原纤维和多孔结构,其在改性和交联后变得扭曲。水凝胶分别显示出平均水含量为86.5%,67.5%,66.7%和33.0%,分别为BC,PVA,MBC-PVA和MBC-PVA-GP。 MBC-PVA-GP中的溶胀降低表明Genipin能够交联改性的BC。

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