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离子注入作为一种用于TiCT MXenes结构改性和功能化的方法。

Ion Implantation as an Approach for Structural Modifications and Functionalization of TiCT MXenes.

作者信息

Pazniak Hanna, Benchakar Mohamed, Bilyk Thomas, Liedl Andrea, Busby Yan, Noël Céline, Chartier Patrick, Hurand Simon, Marteau Marc, Houssiau Laurent, Larciprete Rosanna, Lacovig Paolo, Lizzit Daniel, Tosi Ezequiel, Lizzit Silvano, Pacaud Jérôme, Célérier Stéphane, Mauchamp Vincent, David Marie-Laure

机构信息

Institute Pprime, UPR 3346 CNRS, ISAE-ENSMA, Université de Poitiers, BP 30179, 86962 Cedex Futuroscope-Chasseneuil, France.

Institut de Chimie des Milieux et Matériaux de Poitiers (IC2MP), CNRS, Université de Poitiers, F-86073 Poitiers, France.

出版信息

ACS Nano. 2021 Mar 23;15(3):4245-4255. doi: 10.1021/acsnano.0c06735. Epub 2021 Feb 15.

Abstract

MXenes are a young family of two-dimensional transition metal carbides, nitrides, and carbonitrides with highly controllable structure, composition, and surface chemistry to adjust for target applications. Here, we demonstrate the modifications of two-dimensional MXenes by low-energy ion implantation, leading to the incorporation of Mn ions in TiCT (where T is a surface termination) thin films. Damage and structural defects caused by the implantation process are characterized at different depths by XPS on Ti 2p core-level spectra, by ToF-SIMS, and with electron energy loss spectroscopy analyses. Results show that the ion-induced alteration of the damage tolerant TiCT layer is due to defect formation at both Ti and C sites, thereby promoting the functionalization of these sites with oxygen groups. This work contributes to the inspiring approach of tailoring 2D MXene structure and properties through doping and defect formation by low-energy ion implantation to expand their practical applications.

摘要

MXenes是一类新型的二维过渡金属碳化物、氮化物和碳氮化物,其结构、组成和表面化学性质具有高度可控性,可针对目标应用进行调整。在此,我们展示了通过低能离子注入对二维MXenes进行改性,从而使Mn离子掺入TiCT(其中T为表面终端)薄膜中。通过对Ti 2p核心能级光谱进行XPS分析、采用飞行时间二次离子质谱(ToF-SIMS)以及进行电子能量损失谱分析,在不同深度对注入过程引起的损伤和结构缺陷进行了表征。结果表明,离子诱导的耐损伤TiCT层的改变是由于Ti和C位点均形成了缺陷,从而促进了这些位点与氧基团的官能化。这项工作为通过低能离子注入进行掺杂和形成缺陷来定制二维MXene结构和性能以拓展其实际应用这一鼓舞人心的方法做出了贡献。

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