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过渡金属嵌入MXenes:对电子和赝电容性质的影响。

Intercalation of Transition Metals into MXenes: Impact on Electronic and Pseudocapacitive Properties.

作者信息

Wee Shianlin, Lian Xiliang, Gomez Vazquez Dario, Salanne Mathieu, Lukatskaya Maria R

机构信息

Electrochemical Energy Systems Laboratory, Department of Mechanical and Process Engineering, ETH Zurich, 8092 Zurich, Switzerland.

Sorbonne Université, CNRS, Physicochimie des Électrolytes et Nanosystèmes Interfaciaux, F-75005 Paris, France.

出版信息

ACS Nano. 2025 Sep 16;19(36):32183-32191. doi: 10.1021/acsnano.5c06170. Epub 2025 Sep 5.

Abstract

MXenes are two-dimensional transition metal carbides and nitrides characterized by versatile electronic and electrochemical properties. Herein, we investigate the electronic interactions between various redox-active transition metals (Ni, Co, Mn, and Zn) intercalated into the conductive TiCT MXene host. Employing X-ray absorption spectroscopy (XAS) and Bader charge analysis, we reveal that the oxidation states of the intercalated ions remain unchanged upon insertion, whereas Ti atoms within the MXene layers become progressively oxidized with increasing intercalant concentration. Consequently, the electrical resistivity of the intercalated MXenes increases. Ab initio molecular dynamics (AIMD) and density functional theory (DFT) demonstrate distinct spatial arrangements and coordination environments of the intercalated cations, significantly influencing their electronic density of states and interactions with MXene surfaces. Pseudocapacitance measurements in 0.1 M NaOH show distinct behaviors: Co exhibits significant redox activity with less participation from Ti of MXene, while Ni ions show negligible oxidation state changes with predominant Ti redox involvement. Our findings reveal the complex electronic and redox behavior of transition metal-intercalated MXenes, guiding the targeted modification of 2D material properties through careful selection of intercalant species.

摘要

MXenes是二维过渡金属碳化物和氮化物,具有多种电子和电化学性质。在此,我们研究了插入导电TiCT MXene主体中的各种氧化还原活性过渡金属(Ni、Co、Mn和Zn)之间的电子相互作用。利用X射线吸收光谱(XAS)和巴德电荷分析,我们发现插入离子的氧化态在插入后保持不变,而MXene层内的Ti原子随着插入剂浓度的增加逐渐被氧化。因此,插入的MXenes的电阻率增加。从头算分子动力学(AIMD)和密度泛函理论(DFT)表明,插入阳离子具有不同的空间排列和配位环境,显著影响其电子态密度以及与MXene表面的相互作用。在0.1 M NaOH中的赝电容测量显示出不同的行为:Co表现出显著的氧化还原活性,MXene的Ti参与较少,而Ni离子的氧化态变化可忽略不计,主要是Ti的氧化还原参与。我们的研究结果揭示了过渡金属插入MXenes的复杂电子和氧化还原行为,通过仔细选择插入剂种类指导二维材料性能的定向改性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a220/12444977/1653e4c38514/nn5c06170_0001.jpg

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