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Mechanically strong and electrically conductive multilayer MXene nanocomposites

机译:机械强劲,导电多层MXene纳米复合材料

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摘要

Polymer nanocomposites offer the opportunity to bridge properties of nanomaterials to the macroscale. In this work, layer-by-layer (LbL) assembly is used to demonstrate nanocomposites of 2D titanium carbide nanosheets (MXene) and clay nanoplatelets (montmorillonite) to fabricate freestanding thin films with unique multifunctional properties. These thin films can be tuned by adjusting the thickness to exhibit a tensile strength of 138 MPa-225 MPa, EMI specific shielding effectiveness normalized to thickness and density up to 24550 dB cm(2) g(-1), and sheet resistance from 855 Omega sq(-1)-3.27 k Omega sq(-1) (corresponding to a range of conductivity from 53 S m(-1) to 125 S m(-1)). This composite is the strongest MXene-based LbL film prepared to date, in part due to the nacre-like brick-and-mortar structure. Ultra-strong, multifunctional films of this nature are desirable for many applications ranging from membranes, to structural and multifunctional composites, energy harvesting and storage, and materials for aerospace.
机译:聚合物纳米复合材料提供了机会桥梁性能的纳米材料宏观尺度。组装用于演示的纳米复合材料2 d碳化钛nanosheets (MXene)和粘土nanoplatelets(蒙脱石)制造独立与独特的薄膜多功能属性。通过调整厚度表现出一个调优抗拉强度138 MPa - 225 MPa, EMI具体屏蔽效能标准化的厚度和密度可达24550分贝厘米(2)g(1)和表电阻从855ω的平方(1)-3.27 kω平方(1)(对应于一系列的导电性从125年代53 S m(1)(1))。是最强的MXene-based LbL电影准备目前为止,部分由于nacre-like实体结构。这种性质的多功能的电影对许多应用程序从可取的膜结构和多功能复合材料、能量收集和存储航空航天材料。

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