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Advanced Energy Storage Devices: Basic Principles, Analytical Methods, and Rational Materials Design

Advanced Science · 2017 · Vol. 5(1) · pp. 1700322–1700322
Jilei LiuJin WangChaohe XuHao JiangChunzhong LiLili ZhangJianyi LinZexiang Shen

Abstract

Tremendous efforts have been dedicated into the development of high-performance energy storage devices with nanoscale design and hybrid approaches. The boundary between the electrochemical capacitors and batteries becomes less distinctive. The same material may display capacitive or battery-like behavior depending on the electrode design and the charge storage guest ions. Therefore, the underlying mechanisms and the electrochemical processes occurring upon charge storage may be confusing for researchers who are new to the field as well as some of the chemists and material scientists already in the field. This review provides fundamentals of the similarities and differences between electrochemical capacitors and batteries from kinetic and material point of view. Basic techniques and analysis methods to distinguish the capacitive and battery-like behavior are discussed. Furthermore, guidelines for material selection, the state-of-the-art materials, and the electrode design rules to advanced electrode are proposed.

Supercapacitor Materials and FabricationAdvancements in Battery MaterialsAdvanced Battery Materials and TechnologiesEnergy storageRational designComputer scienceProcess engineeringNanotechnologyBiochemical engineeringMaterials scienceEngineeringThermodynamicsPhysics

Funding

  • Ministry of Education - Singapore
  • National Natural Science Foundation of China
  • East China University of Science and Technology
  • Ministry of Education, India
  • National Outstanding Youth Science Fund Project of National Natural Science Foundation of China
Citations
1,655
FWCI
32.96
field-weighted impact
References
168
Percentile
100%
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