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首页> 外文期刊>Nanoscale >Comparative evaluation of MAX, MXene, NanoMAX, and NanoMAX-derived-MXene for microwave absorption and Li ion battery anode applications
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Comparative evaluation of MAX, MXene, NanoMAX, and NanoMAX-derived-MXene for microwave absorption and Li ion battery anode applications

机译:比较评价马克斯,MXene NanoMAX,NanoMAX-derived-MXene微波吸收和锂离子电池阳极的应用程序

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摘要

MAX and MXene phases possess unique physical properties, encompassing the realms of both ceramics and metals. Their nanolaminated layered configuration, high anisotropic electrical conductivity, and ability to scatter electromagnetic radiation are beneficial in multiple applications. Herein, detailed applications of MAX and MXene are studied in the fields of microwave absorption and Li ion batteries (LIB). In particular, coatings based on MAX, MXene, ball-milled NanoMAX, and NanoMAX-derived-MXene (MXene-N) and their composites are examined in terms of their comparative efficacy for the aforesaid applications. NanoMAX and MXene-N based composites with graphite exhibit superior performance with specific reflection loss values (representing absorbance when measured with metal-backing) of -21.4 and -19 dB cm(3) g(-1), respectively, as compared to their bulk counterparts, that too with a low density (0.63 g cm(-3)) and very small thickness (0.03 mm). These performance improvements in absorbance in only 30 mu m coatings can be attributed to reflective losses compounded with multiple internal reflections within the nanocomposite intensified by dielectric losses, arising from high interface density. The pristine samples were also studied for their performance as Li ion battery anodes. Herein, MXene-N exhibits the best performance with a specific capacity of 330 mA h g(-1) at 100 mA g(-1) and excellent cycling stability tested up to 1000 cycles.
机译:马克斯和MXene阶段拥有独特的物理属性,涵盖的领域陶瓷和金属。配置,高各向异性电电导率和散射能力电磁辐射是有益的多个应用程序。麦克斯和MXene的应用进行了研究微波吸收和李离子电池(自由)。马克斯,MXene,球磨NanoMAX,NanoMAX-derived-MXene (MXene-N)和他们的复合材料检查的比较上述功效应用程序。与石墨复合材料表现出优越性能与特定的反射损失值(代表吸光度测量时金属垫板)-21.4和-19分贝厘米(3)g (1),分别与他们的大部分同行,也有低密度(0.63 g厘米(3))和非常小的厚度(0.03毫米)。性能改进的吸光度只有30岁μm涂料可以归因于反射与多个内部损失加剧在纳米复合材料强化反思通过介电损失,因高界面密度。为其作为锂离子电池阳极性能。在此,MXene-N展示最佳的性能与一个特定的容量330毫安h g(1),享年100岁马g(1)和良好的循环稳定性测试1000周期。

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