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Diisocyanate modifiable commercial filter paper with tunable hydrophobicity, enhanced wet tensile strength and antibacterial activity

机译:二异氰酸酯可改性商业滤纸,可调谐疏水性,增强湿拉伸强度和抗菌活性

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摘要

Paper made of cellulose has the advantages of substantial resource, good biocompatibility, large operation scale, and low production cost, however, it is usually hindered to replace plastic due to its inferior stability to water and poor mechanical strength. Herein, commercial filter paper (FP) was reacted with methylene diphenyl diisocyanate (MDI) to fabricate modified paper with tunable hydrophobicity and enhanced we tensile strength. Due to the formation of urethane linkages in the reaction, both hydrophobicity and we mechanical properties can be tuned and improved by varying the MDI cross-linking agent, exhibiting highest water contact angle of 137.0 degrees and we tensile strength of 4.8 MPa. In addition, the modified MDI-FPs exhibited excellent antibacterial performance against Escherichia coil compared with the original FP. Overall, this study provides a more simple approach to modify cellulose paper to produce versatile cellulose-based materials that can potentially replace the non-biodegradable plastics.
机译:由纤维素制成的纸具有实质性的资源,良好的生物相容性,大的操作规模和低生产成本的优点,然而,由于其劣质水和机械强度差,通常阻碍塑料。这里,商业滤纸(FP)与亚甲基二苯基二异氰酸酯(MDI)反应以制造具有可调谐疏水性的改性纸,并增强了我们的拉伸强度。由于在反应中形成氨基甲酸酯键,可以通过改变MDI交联剂来调谐和改善疏水性和我们的机械性能,表现出最高的水接触角为137.0度,并且我们拉伸强度为4.8MPa。此外,与原始FP相比,改性的MDI-FPS对大肠杆菌线圈表现出优异的抗菌性能。总体而言,该研究提供了一种更简单的方法来修饰纤维素纸以产生可以替代非可生物降解的塑料的多功能纤维素的材料。

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