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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >Acetosulfation of bacterial cellulose: An unexplored promising incipient candidate for highly transparent thin film
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Acetosulfation of bacterial cellulose: An unexplored promising incipient candidate for highly transparent thin film

机译:细菌纤维素的乙硫酸化:高度透明薄膜的未开发的有希望的初期候选者

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摘要

The rising consciousness about the benefits of environment friendly and biodegradable materials demand a substitute for the prevailing non-degradable and toxic materials. Towards this aspect bacterial cellulose (BC) has numerous potential applications owing to their vital properties like high biocompatibility, biodegradability, and ecofriendly nature. In the present study, we have synthesized BC using Komagataeibacter sucrofermentans strain through batch fermentation and functionalized it with sulfate groups to form bacterial cellulose sulfate (BCS) that has negligible reports so far. Using this BCS, we have synthesized a highly transparent film by drop casting method, which exhibited high optical transmittance of 90-92% in the visible wavelength range. BCS was thoroughly characterized using SEM and AFM for its surface morphology. The XPS, FTIR, TGA and XRD studies were performed to confirm the successful sulfonation, stability and crystallinity of BC and BCS. The film morphology, surface roughness and mechanical properties were monitored using SEM, AFM, and Instron universal testing machine. The results confirm smooth surface with good integrity and mechanical properties of the BCS film. Furthermore, cell viability studies confirmed the biocompatible nature of the sample. Owing to these salient features, BCS films hold tremendous potential in the field of biomedicine, optoelectronics as well as food packaging.
机译:对环保和可生物降解材料的好处的意识日益增强,因此需要一种替代流行的不可降解和有毒材料的替代品。在这方面,细菌纤维素(BC)由于其至关重要的特性(如高生物相容性,生物降解性和环保特性)而具有众多潜在应用。在目前的研究中,我们已经通过分批发酵法使用蔗糖发酵杆菌(Komagataeibacter sucrofermentans)菌株合成了BC,并用硫酸盐基团对其进行功能化,形成了细菌纤维素硫酸盐(BCS),迄今为止报道很少。使用这种BCS,我们通过滴铸法合成了高度透明的薄膜,该薄膜在可见光波长范围内具有90-92%的高透光率。使用SEM和AFM对BCS的表面形态进行了彻底表征。进行了XPS,FTIR,TGA和XRD研究,以证实BC和BCS的成功磺化,稳定性和结晶性。使用SEM,AFM和Instron万能试验机监测薄膜的形貌,表面粗糙度和机械性能。结果证实光滑的表面具有良好的完整性和BCS膜的机械性能。此外,细胞活力研究证实了样品的生物相容性。由于这些显着特征,BCS薄膜在生物医学,光电和食品包装领域具有巨大的潜力。

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