Engineering Laboratory of Specialty Fibers and Nuclear Energy Materials, Ningbo Institute of Materials Engineering and Technology, Chinese Academy of Sciences , Ningbo, Zhejiang 315201, China.
University of Chinese Academy of Sciences , 19A Yuquan Road, Shijingshan District, Beijing 100049, China.
ACS Nano. 2017 Apr 25;11(4):3841-3850. doi: 10.1021/acsnano.7b00030. Epub 2017 Apr 6.
We demonstrate fabrication of a two-dimensional Hf-containing MXene, HfCT, by selective etching of a layered parent Hf[Al(Si)]C compound. A substitutional solution of Si on Al sites effectively weakened the interfacial adhesion between Hf-C and Al(Si)-C sublayers within the unit cell of the parent compound, facilitating the subsequent selective etching. The underlying mechanism of the Si-alloying-facilitated etching process is thoroughly studied by first-principles density functional calculations. The result showed that more valence electrons of Si than Al weaken the adhesive energy of the etching interface. The MXenes were determined to be flexible and conductive. Moreover, this 2D Hf-containing MXene material showed reversible volumetric capacities of 1567 and 504 mAh cm for lithium and sodium ions batteries, respectively, at a current density of 200 mAg after 200 cycles. Thus, HfCT MXenes with a 2D structure are candidate anode materials for metal-ion intercalation, especially for applications where size matters.
我们通过选择性刻蚀层状母体 Hf[Al(Si)]C 化合物,成功制备了二维含 Hf 的 MXene,即 HfCT。Si 在 Al 位的取代固溶体有效地削弱了母体化合物单元晶胞中 Hf-C 和 Al(Si)-C 亚层之间的界面结合力,从而有利于随后的选择性刻蚀。我们通过第一性原理密度泛函计算,深入研究了 Si 合金化辅助刻蚀过程的潜在机制。结果表明,Si 的价电子数比 Al 多,从而削弱了刻蚀界面的粘附能。研究还确定了 MXenes 具有柔韧性和导电性。此外,这种二维含 Hf 的 MXene 材料在电流密度为 200 mAg 时,经过 200 次循环后,其锂离子和钠离子电池的可逆体积容量分别达到 1567 和 504 mAh cm。因此,具有二维结构的 HfCT MXenes 是金属离子插层的候选阳极材料,特别是在尺寸至关重要的应用中。