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首页> 外文期刊>International journal of applied mechanics >Ultra-tough and highly ordered macroscopic fiber assembly from 2D functional metal oxide nanosheet liquid crystals and strong ionic interlayer bridging
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Ultra-tough and highly ordered macroscopic fiber assembly from 2D functional metal oxide nanosheet liquid crystals and strong ionic interlayer bridging

机译:来自2D功能金属氧化物纳米液晶和强离子层间桥接的超强和高度有序的宏观纤维组件

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Macroscopic assembly of 2D nanomaterials, especially for the one-dimensional macroscopic ordered fiber assembly from 2D liquid crystals (LCs), is rising to an unprecedented height and will continue to be an important topic in materials. However, this case of 2D functional metal oxide nanosheets is quite challenging. For the first time, the high-performance tungstate macroscopic fiber has been realized through an LC wet-spinning process involving the formation of LC colloid with spinnability and performance improvement by interlayer bridging in macroscopic assembly. The resultant macroscopic fiber yields record high tensile strength (198.5 MPa) and fracture toughness (3.0 MJ m(-3)) owing to their highly ordered structure and strong ionic interlayer bridging. Despite the intrinsically weak mechanical strength of the nanosheets, with only a few percent of graphene, the fibers manifest mechanical properties comparable to that of graphene fibers. Inspired by this concept, the possible macroscopic fibers assembled from other 2D functional metal oxide nanosheets will become a reality in the near future, holding great promise in aerospace and wearable applications.
机译:2D纳米材料的宏观组件,特别是对于来自2D液晶(LCS)的一维宏观有序的纤维组件,其上升至前所未有的高度,并且将继续成为材料的重要课题。然而,这种情况下的2D功能金属氧化物纳米液的情况非常具有挑战性。首次通过LC湿纺丝方法实现了高性能钨酸盐宏观纤维,所述LC湿纺丝方法涉及形成LC胶体,通过宏观组件中的层间桥接通过层间桥接的纺织性和性能改善。由于其高度有序的结构和强离子层间桥接,所得宏观纤维产生高抗拉强度(198.5MPa)和断裂韧性(3.0MJm(-3))。尽管纳米片的内在弱的机械强度,但只有百分之几的石墨烯,纤维的纤维表现出与石墨烯纤维相当的机械性能。灵感来自这种概念,从其他2D功能金属氧化物纳米液组装的可能宏观纤维将成为不久的将来的现实,在航空航天和可穿戴应用中持有巨大的希望。

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