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North Konami can provide high-performance self-supporting MXene film (customizable)
Research abstract
Benefiting from high electronic conductivity and unique layered microstructure, layered MXene films show great potential in many fields. However, the intrinsic oxidative nature and mechanical fragility of MXene films have become two major bottlenecks preventing their widespread application. In view of this, the research team of Professor Dong Yang of Fudan University published the latest research results in "Small", and proposed a simple and effective assembly strategy to solve the above problems by enhancing the arrangement and tightness of the MXene layers to enhance the interaction between the layers. . This method includes a multifunctional inorganic polymer (ammonium polyphosphate, APP)-assisted gelation process of MXene sheets, followed by a quasi-solid-state assembly by mechanical rolling, so that a 3D gel network can be realized The transition to 2D self-supporting MXene films. In addition, the obtained MXene-APP film (MAF) simultaneously exhibited high mechanical strength (286.4 ± 20.3 MPa) and excellent electronic conductivity (8012.4 ± 325.6 S cm-1), and also has good environmental stability. In electromagnetic shielding applications, MAFs exhibit outstanding electromagnetic shielding efficiency and long lifetime, illustrating the great potential of gel-assisted assembly strategies for large-area, high-performance MXene films for practical use.
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