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      Future smart battery and management: Advanced sensing from external to embedded multi-dimensional measurement

      , , , , ,
      Journal of Power Sources
      Elsevier BV

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          Modeling of Galvanostatic Charge and Discharge of the Lithium/Polymer/Insertion Cell

          Marc Doyle (1993)
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            A review on the key issues for lithium-ion battery management in electric vehicles

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              Defect Chemistry of Nonprecious-Metal Electrocatalysts for Oxygen Reactions.

              Oxygen electrocatalysis, including the oxygen-reduction reaction (ORR) and oxygen-evolution reaction (OER), is a critical process for metal-air batteries. Therefore, the development of electrocatalysts for the OER and the ORR is of essential importance. Indeed, various advanced electrocatalysts have been designed for the ORR or the OER; however, the origin of the advanced activity of oxygen electrocatalysts is still somewhat controversial. The enhanced activity is usually attributed to the high surface areas, the unique facet structures, the enhanced conductivities, or even to unclear synergistic effects, but the importance of the defects, especially the intrinsic defects, is often neglected. More recently, the important role of defects in oxygen electrocatalysis has been demonstrated by several groups. To make the defect effect clearer, the recent development of this concept is reviewed here and a novel principle for the design of oxygen electrocatalysts is proposed. An overview of the defects in carbon-based, metal-free electrocatalysts for ORR and various defects in metal oxides/selenides for OER is also provided. The types of defects and controllable strategies to generate defects in electrocatalysts are presented, along with techniques to identify the defects. The defect-activity relationship is also explored by theoretical methods.
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                Author and article information

                Contributors
                Journal
                Journal of Power Sources
                Journal of Power Sources
                Elsevier BV
                03787753
                March 2021
                March 2021
                : 489
                : 229462
                Article
                10.1016/j.jpowsour.2021.229462
                bb8f8182-6ad9-49ff-9f24-61875756a1b3
                © 2021

                https://www.elsevier.com/tdm/userlicense/1.0/

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