TY - JOUR
T1 - Preparation, delamination and electrochemical performance of two-dimensional crystal Ti2CTx MXene
AU - Zhang, Tian
AU - Pan, Li Mei
AU - Tang, Huan
AU - Du, Fei
AU - Li, Xue Yan
AU - Yang, Hui
AU - Qiu, Tai
AU - Yang, Jian
N1 - Publisher Copyright:
© 2016, Chinese Ceramic Society. All right reserved.
PY - 2016/6/1
Y1 - 2016/6/1
N2 - Herein, exfoliation and delamination of two-dimensional (2D) Ti2CTx MXene using etchant of HCl+LiF, in which both etching and intercalation were achieved in exfoliation process, were thoroughly investigated with the focus of reaction temperature. The results suggest that increasing etching temperature promotes the exfoliation process, i.e., the transformation from Ti2AlC to multilayer Ti2CTx MXene, whereas the delamination ratio increases firstly and then decreases with the increasing temperature, and the samples etched at 40℃ show the highest delamination ratio of 18% (corresponding to a suspension concentration of Ti2CTx MXene flakes as high as 0.36 mg/mL). The prepared MXene flakes, about 1 nm thick, contained no obvious nanometer sized defects. As anode for lithium ion batteries, the delaminated Ti2CTx MXene show high capacity and good cycling behavior, and obtained specific capacities of 352 mAh·g-1, 245 mAh·g-1, 169 mAh·g-1 respectively at the current density of 100 mA·g-1, 300 mA·g-1, 1000 mA·g-1, twice to those of the Ti2CTx MXene prepared by conventional HF process.
AB - Herein, exfoliation and delamination of two-dimensional (2D) Ti2CTx MXene using etchant of HCl+LiF, in which both etching and intercalation were achieved in exfoliation process, were thoroughly investigated with the focus of reaction temperature. The results suggest that increasing etching temperature promotes the exfoliation process, i.e., the transformation from Ti2AlC to multilayer Ti2CTx MXene, whereas the delamination ratio increases firstly and then decreases with the increasing temperature, and the samples etched at 40℃ show the highest delamination ratio of 18% (corresponding to a suspension concentration of Ti2CTx MXene flakes as high as 0.36 mg/mL). The prepared MXene flakes, about 1 nm thick, contained no obvious nanometer sized defects. As anode for lithium ion batteries, the delaminated Ti2CTx MXene show high capacity and good cycling behavior, and obtained specific capacities of 352 mAh·g-1, 245 mAh·g-1, 169 mAh·g-1 respectively at the current density of 100 mA·g-1, 300 mA·g-1, 1000 mA·g-1, twice to those of the Ti2CTx MXene prepared by conventional HF process.
KW - Delamination
KW - Electrochemical performance
KW - Exfoliation
KW - MXene
KW - TiCT
UR - http://www.scopus.com/inward/record.url?scp=85012016547&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:85012016547
SN - 1000-985X
VL - 45
SP - 1514
EP - 1519
JO - Rengong Jingti Xuebao/Journal of Synthetic Crystals
JF - Rengong Jingti Xuebao/Journal of Synthetic Crystals
IS - 6
ER -