首页> 外文期刊>Nanoscale >A strategy of tailoring polymorphs and nanostructures to construct self-reinforced nonswelling high-strength bacterial cellulose hydrogels
【24h】

A strategy of tailoring polymorphs and nanostructures to construct self-reinforced nonswelling high-strength bacterial cellulose hydrogels

机译:定制的策略多晶型物纳米结构构建self-reinforcednonswelling高强度细菌纤维素水凝胶

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A serious decline in mechanical properties of polysaccharide hydrogels caused by swelling has always been a difficult problem which greatly limited their application especially in the medical field. Herein, nonswelling high-strength natural hydrogels based on self-reinforced double-crosslinked bacterial cellulose (SDBC) were prepared. Inspired by the concept of homogeneous composite materials, by regulating the ratio of LiOH/urea alkaline solvent, the aggregation structure and nanostructure of SDBC hydrogels can be controlled, thereby a unique nanofiber-network-self-reinforced (FNSR) structure was constructed and a new self-reinforcing mechanism is proposed. The prepared SDBC hydrogels have excellent mechanical properties at a high water content (>91%) for the combination of double-crosslinking and a unique FNSR structure, which can effectively prevent crack propagation and dissipate a large amount of energy. In particular, the compressive strength can reach 3.17 MPa which is 56 times that of native bacterial cellulose (BC). It is worth mentioning that no swelling occurs for the hydrogel, and the mechanical strength still remains in excess of 90% for 15 days in water, which is favorable for promising application in underwater equipment, implantable ionic devices, and tissue engineering scaffolds. This study also opens up a new horizon for the preparation of self-reinforced hydrogels.
机译:力学性能严重下降多糖水凝胶引起的肿胀一直是一个困难的问题他们的应用特别是在有限医学领域。基于self-reinforced自然水凝胶double-crosslinked细菌纤维素(SDBC)都准备好了。均质复合材料,通过调节LiOH /尿素碱性溶剂的比例,聚合SDBC的结构和纳米结构水凝胶可以控制,从而一个独特nanofiber-network-self-reinforced (FNSR)它结构构造和一个新的提出了自我强化的机制。准备SDBC水凝胶具有良好的机械属性在一个较高的水分含量(> 91%)double-crosslinking和独特的组合FNSR结构,它可以有效防止裂纹扩展和大量的消散能量。可以达到3.17 MPa的56倍吗原生细菌纤维素(BC)。提及,没有肿胀的发生水凝胶和机械强度仍然超过90%在水中15天,这是有前途的应用有利吗水下设备,植入离子设备,和组织工程支架。的制备开辟了一个新的视野self-reinforced水凝胶。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号