Research progress of Ti-based MXene and its composites in metal-ion batteries

被引:0
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作者
Liu H. [1 ]
Yao W. [1 ]
机构
[1] School of National Defense Science and Technology SWUST, Southwest University of Science and Technology, Mianyang
关键词
Electrode material; Energy material; Energy storage; Li-ion battery; MXene; Na-ion battery;
D O I
10.13801/j.cnki.fhclxb.20200717.001
中图分类号
学科分类号
摘要
Since two-dimensional transition metal carbides (nitrides or carbonitrides) MXenes was first reported in 2011, its family members have been increasing. At present, more than 20 MXenes have been successfully synthesized. With unique layered structure, excellent physicochemical properties and designable surface functional group characteristics, MXenes are considered as promising electrode material. In recent years, some remarkable progress of MXenes and its composite materials are achieved in energy storage. To this end, this review presents the research progress of Ti-based MXenes and its composite materials in Lithium-ion batteries and Sodium-ion batteries. Combined with the preparation methods and characteristics of MXenes, the strategies or mechanisms of improving battery performance are introduced in detail. Finally, the challenges and prospects of MXenes and its composite materials in fabricating high-performance batteries are pointed out. Copyright ©2020 Acta Materiae Compositae Sinica. All rights reserved.
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页码:2984 / 3003
页数:19
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共 111 条
  • [91] LIU Z, YU Q, ZHAO Y, Et al., Silicon oxides: A promising family of anode materials for Lithium-ion batteries[J], Chemical Society Reviews, 48, 1, pp. 285-309, (2019)
  • [92] MU G, MU D, WU B, Et al., Microsphere-like SiO<sub>2</sub>/MXene hybrid material enabling high performance anode for Lithium ion batteries, Small, 16, 3, (2020)
  • [93] XIE K, WU P, ZHOU Y, Et al., Nitrogen-doped carbon-wrapped porous single-crystalline CoO nanocubes for high-performance Lithium storage[J], ACS Applied Materials and Interfaces, 6, 13, pp. 10602-10607, (2014)
  • [94] KANG W, ZHANG Y, FAN L, Et al., Metal-Organic framework derived porous hollow Co<sub>3</sub>O<sub>4</sub>/N-C polyhedron composite with excellent energy storage capability, ACS Applied Materials and Interfaces, 9, 12, pp. 10602-10609, (2017)
  • [95] SUN X, TAN K, LIU Y, Et al., A two-dimensional assembly of ultrafine cobalt oxide nanocrystallites anchored on single-layer Ti<sub>3</sub>C<sub>2</sub>T<sub>x</sub> nanosheets with enhanced Lithium storage for Li-ion batteries, Nanoscale, 11, 36, pp. 16755-16766, (2019)
  • [96] WANG Y, LI Y, QIU Z, Et al., Fe<sub>3</sub>O<sub>4</sub>@Ti<sub>3</sub>C<sub>2</sub> MXene hybrids with ultrahigh volumetric capacity as an anode material for Lithium-ion batteries, Journal of Materials Chemistry A, 6, 24, pp. 11189-11197, (2018)
  • [97] CHEN C, XIE X, ANASORI B, Et al., MoS<sub>2</sub>-on-MXene heterostructures as highly reversible anode materials for Lithium-ion batteries, Angewandte Chemie International Edition, 57, 7, pp. 1846-1850, (2018)
  • [98] LIN Y C, ZHANG W, HUANG J, Et al., Wafer-scale MoS<sub>2</sub> thin layers prepared by MoO<sub>3</sub> sulfurization, Nanoscale, 4, 20, pp. 6637-6641, (2012)
  • [99] WU Y, NIE P, WU L, Et al., 2D MXene/SnS<sub>2</sub> composites as high-performance anodes for Sodium ion batteries, Chemical Engineering Journal, 334, pp. 932-938, (2018)
  • [100] CHEN L, ZHOU G, LIU Z, Et al., Scalable clean exfoliation of high-quality few-layer black phosphorus for a flexible Lithium ion battery[J], Advanced Materials, 28, 3, pp. 510-517, (2016)