Transition Metal Carbides and Nitrides in Energy Storage and Conversion

Карбиды и нитриды переходных металлов в накоплении и преобразовании энергии
Xinhui Xia, Yu Zhong, Hong Jin Fan, Jiangping Tu, Fan Shi, Jiye Zhan
2016-02-04

2D MXenesLi-ion batteriesNa-ion batteriestransition metal carbidestransition metal nitrides
High-performance electrode materials are the key to advances in the areas of energy conversion and storage (e.g., fuel cells and batteries). In this Review, recent progress in the synthesis and electrochemical application of transition metal carbides (TMCs) and nitrides (TMNs) for energy storage and conversion is summarized. Their electrochemical properties in Li-ion and Na-ion batteries as well as in supercapacitors, and electrocatalytic reactions (oxygen evolution and reduction reactions, and hydrogen evolution reaction) are discussed in association with their crystal structure/morphology/composition. Advantages and benefits of nanostructuring (e.g., 2D MXenes) are highlighted. Prospects of future research trends in rational design of high-performance TMCs and TMNs electrodes are provided at the end.
1
Electrochemical performance of TMCs and TMNs is closely linked to their crystal structure, morphology, and composition.
2
Nanostructuring, including 2D MXenes, provides specific advantages for improving electrochemical properties of TMCs and TMNs.
3
The paper outlines prospects and future research trends for rational design of high-performance TMC and TMN electrodes.
4
The review summarizes synthesis methods and electrochemical applications of TMCs and TMNs for Li-ion and Na-ion batteries, supercapacitors, and electrocatalytic reactions (OER, ORR, HER).
5
Transition metal carbides (TMCs) and nitrides (TMNs) are promising high-performance electrode materials for energy conversion and storage applications such as fuel cells and batteries.

Transition metal carbides (TMCs) and nitrides (TMNs) as electrode materials for energy storage and conversion

Their synthesis, nanostructuring (including 2D MXenes), crystal structure/morphology/composition and resulting electrochemical properties and electrocatalytic performance in batteries (Li-ion, Na-ion), supercapacitors, and reactions (OER, ORR, HER)

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2016-02-04
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Authors
Xinhui Xia
Yu Zhong
Hong Jin Fan
Jiangping Tu
Fan Shi
Jiye Zhan
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