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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Synergistic effect of cellulose nanofibres and bio- extracts for fabricating high strength sodium alginate based composite bio-sponges with antibacterial properties
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Synergistic effect of cellulose nanofibres and bio- extracts for fabricating high strength sodium alginate based composite bio-sponges with antibacterial properties

机译:纤维素纳米纤维和生物提取物制造高强度藻酸钠基复合生物海绵抗菌性能的协同作用

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摘要

This study investigates the synergistic potential of natural bio-extracts for preparing "all-natural" composite biosponges of sodium alginate (SA) with the reinforcement of a natural bio-nanomaterial i.e., cellulose nanofibres (CNFs). Aqueous suspensions of SA and CNFs in various combinations of bio-extracts (Rice water (Rw) and Giloy extract (Ge)) were freeze-dried to obtain the composite bio-sponges. Composites prepared using Rw resulted in structurally more stable samples with porosity above 75% that showed a compact honeycomb-like microstructure with interlocked CNFs network structures. A significant improvement in mechanical performance (400% increment in compressive strength and 800% increment in modulus) and thermal stability (decomposition temperature reaching up to 240 degrees C from 200 degrees C) for SA based composite bio-sponges was achieved due to the synergistic effect of Rw and CNFs as compared to conventionally prepared sponges in water. Additionally, the use of Ge has resulted in developing antimicrobial surfaces with up to 98% and 90% growth inhibition efficiency for gram-negative and gram-positive bacteria, respectively. Hence, CNFs and bio-extracts together played a competent role in effective tailoring of structural, thermo-mechanical and antibacterial properties of composite bio-sponges.
机译:本研究研究了用于制备藻酸钠(SA)的“全天然”复合钠(SA)的自然生物提取物的协同潜力,并加强天然生物纳米材料I.E.,纤维素纳米纤维(CNF)。将SA和CNF的水溶液和CNF在各种生物提取物(RW)和GiLoy提取物(GE))中冷冻干燥,得到复合生物海绵。使用RW制备的复合材料导致结构上更稳定的样品,其孔隙率高于75%,其显示具有互锁的CNFS网络结构的紧凑蜂窝状的微观结构。由于协同性,实现了基于基于SA的基于复合生物海绵的基于组合生物海绵的机械性能(压缩强度的抑制强度的增量和800%增加了800%C)的显着改善和热稳定性(从200摄氏度到200摄氏度)的热稳定性rw和cnfs与常规制备的海绵中的效果相比。另外,GE的使用产生了显影抗微生物表面,分别产生高达98%和90%的生长抑制效率的抗微生物表面。因此,CNF和生物提取物在一起在具有复合生物海绵的结构,热机械和抗菌性能的有效剪裁中起到了称重的作用。

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