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A review of the energy storage aspects of chemical elements for lithium-ion based batteries

Journal

ENERGY MATERIALS
Volume 1, Issue 2, Pages -

Publisher

OAE PUBLISHING INC
DOI: 10.20517/energymater.2021.20

Keywords

Lithium-ion based batteries; specific capacity; cathode materials; anode materials

Funding

  1. National Natural Science Foundation of China [21703147, U1401248]
  2. China Scholarship Council [2018SLJ022487]

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This article discusses the importance of energy storage devices in society, as well as the role of the periodic table in lithium-ion battery systems. It outlines the challenges and prospects of different elements and hybrid materials for future battery systems.
Energy storage devices such as batteries hold great importance for society, owing to their high energy density, environmental benignity and low cost. However, critical issues related to their performance and safety still need to be resolved. The periodic table of elements is pivotal to chemistry, physics, biology and engineering and represents a remarkable scientific breakthrough that sheds light on the fundamental laws of nature. Here, we provide an overview of the role of the most prominent elements, including s-block, p-block, transition and inner-transition metals, as electrode materials for lithium-ion battery systems regarding their perspective applications and fundamental properties. We also outline hybrid materials, such as MXenes, transition metal oxides, alloys and graphene oxide. Finally, the challenges and prospects of each element and their derivatives and hybrids for future battery systems are discussed, which may provide guidance towards green, low-cost, versatile and sustainable energy storage devices.

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