Pure oxygen terminated MXenes prepared by NaOH/NaI eutectic molten salt
作者:Tianze Zhang, Pei-Yu Cao, Qiuxiang Wang, Bin Yang, Hujie Wan, Libo Chang, Guozheng Zhang, Qi Jin, Yi Deng, Chao Yang, Yang Wang, Ye‐Chuang Han, Tianpeng Ding, Xu Xiao · 发表于:Fundamental Research · 年份:2025 · DOI:10.1016/j.fmre.2025.10.005 · 被引用次数:4 · 研究领域:MXene and MAX Phase Materials、Advanced Memory and Neural Computing、2D Materials and Applications
MXenes, a promising class of two-dimensional materials derived from transition metal carbides and nitrides, are attracting considerable attention for their remarkable properties and potential uses in energy storage, EMI shielding, electronics, etc. Modifying surface terminations is essential for tuning the electron structure of MXenes, significantly affecting their properties. However, existing methods for altering the surface chemistry, particularly regarding oxygen termination, encounter significant challenges, such as low substitution efficiency and self-oxidation during treatment, resulting in the absence of pure O-terminated MXenes in the literature. Here, we present a general NaOH/NaI molten salt modification strategy that successfully prepares pure O-terminated MXenes. The effectiveness of this reaction stems from the naked OH ions in the molten salt, along with elevated temperatures that facilitate substitution, all while remaining below the temperatures that cause structural degradation and self-oxidation of MXenes. Consequently, the intrinsic properties of pure O-terminated MXenes undergo significant changes, including continuous tunability of the work function (3.67 to 4.17 eV) and distinct temperature-dependent resistance behavior. In addition, pure O-terminated Ti 3 C 2 demonstrates impressive performance for Li + storage, achieving a high specific capacity of 258 mAh g −1 at 0.1 A g −1 , which is more than two times that of pristine Ti 3 C 2 T x . In addition, a...