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Two-dimensional nanomaterial MXenes for efficient gas separation: a review

机译:用于高效气体分离的二维纳米材料MXenes研究进展

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Transition metal carbides/nitrides (MXenes) are emerging two-dimensional (2D) materials that have been widely investigated in recent years. In general, these materials can be obtained from MAX phase ceramics after intercalation, etching, and exfoliation to obtain multilayer MXene nanosheet structures; moreover, they have abundant end-group functional groups on their surface. In recent years, the excellent high permeability, fine sieving ability and diverse processability of MXene series materials make the membranes prepared using them particularly suitable for membrane-based separation processes in the field of gas separation. 2D membranes enhance the diversity of the pristine membrane transport channels by regulating the gas transport channels through in-plane pores (intrinsic defects), in-plane slit-like pores, and planar to planar interlayer channels, endowing the membrane with the ability to effectively sieve gas energy efficiently. Herein, we review MXenes, a class of 2D nanomaterials, in terms of their unique structure, synthesis method, functionalization method, and the structure–property relationship of MXene-based gas separation membranes and list examples of MXene-based membranes used in the field of gas separation. By summarizing and analyzing the basic properties of MXenes and demonstrating their unique advantages compared to other 2D nanomaterials, we lay a foundation for the discussion of MXene-based membranes with outstanding carbon dioxide (CO2) capture performance and outline and exemplify the excellent separation performances of MXene-based gas separation membranes. Finally, the challenges associated with MXenes are briefly discussed and an outlook on the promising future of MXene-based membranes is presented. It is expected that this review will provide new insights and important guidance for future research on MXene materials in the field of gas separation.
机译:过渡金属碳化物和氮化物(MXenes)新兴的二维(2 d)材料近年来被广泛研究。一般情况下,这些材料可以从马克斯后阶段陶瓷夹层、蚀刻和剥离获得多层MXene nanosheet结构;末端官能团的表面。近年来,优秀的高磁导率,细筛分能力和多样化的加工性能MXene系列材料的膜准备使用它们特别适合膜基分离过程气体分离。多样性的原始膜运输渠道通过调节气体传输通道通过平面毛孔(内在缺陷),平面slit-like毛孔,平面平面层间通道,赋予膜有效地筛气体能量的能力高效。二维纳米材料,其独特的结构、合成方法、功能化方法和组织性能的关系MXene-based气体分离膜和列表MXene-based膜中使用的例子气体分离领域。MXenes基本性质的分析展示他们独特的优势相比其他二维纳米材料,我们奠定基础的讨论MXene-based膜杰出的二氧化碳(CO2)捕获性能和大纲和例证MXene-based良好的分离性能气体分离膜。与MXenes简要讨论一个前景MXene-based的发展前景提出了膜。评估将提供新的见解和重要指导未来研究MXene材料在气体分离领域。

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