超级电容器电极用Ti_3C_2T_x基复合材料的研究进展
Research progress of Ti_3C_2T_x-based composites application in electrode for supercapacitors
查看参考文献41篇
文摘
|
碳化钛(Ti_3C_2T_x)作为一种MXene材料,具有独特的结构和优良的导电性、稳定性以及优越的电化学性能,常被用作超级电容器电极材料。本文结合碳化钛(Ti_3C_2T_x)材料层状结构的特性,梳理了超级电容器电极用Ti_3C_2T_x基复合材料的研究进展,重点阐述了Ti_3C_2T_x材料的结构、性能、制备以及通过不同技术手段与多类材料复合后的电化学性能;归纳了Ti_3C_2T_x基复合材料性能提升的原因,包括增大层间距、提供更多活性位点、提高坚韧性等;最后指出Ti_3C_2T_x基复合材料的未来研究重点,如探究新的基体母相、丰富刻蚀方法、改进现有复合材料、探究更多更高效的复合材料等。 |
其他语种文摘
|
Titanium carbide(Ti_3C_2T_x)as one of MXene materials,has unique structure,excellent conductivity,stability and superior electrochemical properties.It is often used as electrode material for supercapacitors.Based on the characteristics of the layered structure of Ti_3C_2T_x materials,the research progress in Ti_3C_2T_x based composite materials used for supercapacitor electrode was reviewed,and the structure,properties,preparation and electrochemical performance of Ti_3C_2T_x materials compounded with various types of materials through different technical means were emphatically described.The reasons for improving the properties of Ti_3C_2T_x matrix composites were summarized,including increasing the layer spacing,providing more active sites,and improving the toughness.Finally,the future research priorities of Ti_3C_2T_x matrix composites were pointed out,such as exploring new matrix parent phases,enriching etching methods,improving existing composites,and exploring more and more efficient composites. |
来源
|
材料工程
,2023,51(6):12-19 【核心库】
|
DOI
|
10.11868/j.issn.1001-4381.2022.000238
|
关键词
|
MXene
;
Ti_3C_2T_x
;
复合材料
;
电极材料
|
地址
|
1.
华东理工大学, 绿色能源化工国际联合研究中心, 上海, 200237
2.
同济大学新能源汽车工程中心, 上海, 201804
3.
同济大学汽车学院, 上海, 201804
|
语种
|
中文 |
文献类型
|
综述型 |
ISSN
|
1001-4381 |
学科
|
化学 |
基金
|
国家自然科学基金项目
;
国家科技支撑计划项目
|
文献收藏号
|
CSCD:7505499
|
参考文献 共
41
共3页
|
1.
孟思辰. 浅析新能源的现状及发展趋势.
数码世界,2018(5):513
|
CSCD被引
1
次
|
|
|
|
2.
高利芳. 新型二维纳米材料在电化学领域的应用与发展.
应用化学,2018,35(3):247-258
|
CSCD被引
8
次
|
|
|
|
3.
Novoselov K S. Two-dimensional gas of massless Dirac fermions in graphene.
Nature,2005,438(7065):197-200
|
CSCD被引
862
次
|
|
|
|
4.
Choi D. Fast and reversible surface redox reaction in nanocrystalline vanadium nitride supercapacitors.
Advanced Materials,2006,18(9):1178-1182
|
CSCD被引
39
次
|
|
|
|
5.
Naguib M. Two-dimensional transition metal carbides.
ACS Nano,2012,6(2):1322-1331
|
CSCD被引
294
次
|
|
|
|
6.
Anasori B. Look again.
MARS Bulletin,2012,37:176
|
CSCD被引
1
次
|
|
|
|
7.
Barsoum M W. The Mn+1AXnphases:a new class of solids: thermodynamically stable nanolaminates.
Progress in Solid State Chemistry,2000,28(1/4):201-281
|
CSCD被引
333
次
|
|
|
|
8.
王剑. 二维纳米材料MXenes的性质及应用研究进展.
西华大学学报(自然科学版),2020,39(3):76-89
|
CSCD被引
3
次
|
|
|
|
9.
李正阳. 二维晶体MXene的制备与性能研究进展.
硅酸盐通报,2013,32(8):1562-1566
|
CSCD被引
12
次
|
|
|
|
10.
党阿磊. 新型二维纳米材料MXene的制备及在储能领域的应用进展.
材料工程,2020,48(4):1-14
|
CSCD被引
13
次
|
|
|
|
11.
Dillon A D. Highly conductive optical quality solution-processed films of 2Dtitanium carbide.
Advanced Functional Materials,2016,26(23):4162-4168
|
CSCD被引
48
次
|
|
|
|
12.
Naguib M. 25th anniversary article:MXenes:a new family of two-dimensional materials.
Advanced Materials,2014,26(7):992-1005
|
CSCD被引
430
次
|
|
|
|
13.
Sun Z M. Electronic origin of shearing in M2AC(M=Ti,V,Cr,A = Al,Ga).
Journal of Physics,2005,17(46):7169-7176
|
CSCD被引
1
次
|
|
|
|
14.
Naguib M. Two-dimensional nanocrystals produced by exfoliation of Ti3AlC2.
Advanced Materials,2011,23(37):4248-4253
|
CSCD被引
767
次
|
|
|
|
15.
Tang Q. Are MXenes promising anode materials for Li ion batteries? Computational studies on electronic properties and Li storage capability of Ti_3C_2and Ti_3C_2X2(X= F,OH)monolayer.
Journal of the American Chemical Society,2012,134(40):16909-16916
|
CSCD被引
138
次
|
|
|
|
16.
Shein I R. Graphene-like titanium carbides and nitrides Tin+1Cn,Tin+1Nn(n=1,2,and 3)from de-intercalated MAX phases:first-principles probing of their structural, electronic properties and relative stability.
Computational Materials Science,2012,65:104-114
|
CSCD被引
35
次
|
|
|
|
17.
Lipatov A. Effect of synthesis on quality,electronic properties and environmental stability of individual monolayer Ti_3C_2MXene flakes.
Advanced Electronic Materials,2016,2(12):1600255
|
CSCD被引
91
次
|
|
|
|
18.
Lukatskaya M R. Cation intercalation and high volumetric capacitance of two-dimensional titanium carbide.
Science,2013,341(6153):1502-1505
|
CSCD被引
263
次
|
|
|
|
19.
Alhabeb M. Guidelines for synthesis and processing of two-dimensional titanium carbide (Ti_3C_2Tx MXene).
Chemistry of Materials,2017,29(18):7633-7644
|
CSCD被引
255
次
|
|
|
|
20.
马亚楠. 新型二维层状材料MXene的制备方法研究.
材料科学,2017,7(4):463-468
|
CSCD被引
1
次
|
|
|
|
|