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      Nano and Battery Anode: A Review

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          Abstract

          Improving the anode properties, including increasing its capacity, is one of the basic necessities to improve battery performance. In this paper, high-capacity anodes with alloy performance are introduced, then the problem of fragmentation of these anodes and its effect during the cyclic life is stated. Then, the effect of reducing the size to the nanoscale in solving the problem of fragmentation and improving the properties is discussed, and finally the various forms of nanomaterials are examined. In this paper, electrode reduction in the anode, which is a nanoscale phenomenon, is described. The negative effects of this phenomenon on alloy anodes are expressed and how to eliminate these negative effects by preparing suitable nanostructures will be discussed. Also, the anodes of the titanium oxide family are introduced and the effects of Nano on the performance improvement of these anodes are expressed, and finally, the quasi-capacitive behavior, which is specific to Nano, will be introduced. Finally, the third type of anodes, exchange anodes, is introduced and their function is expressed. The effect of Nano on the reversibility of these anodes is mentioned. The advantages of nanotechnology for these electrodes are described. In this paper, it is found that nanotechnology, in addition to the common effects such as reducing the penetration distance and modulating the stress, also creates other interesting effects in this type of anode, such as capacitive quasi-capacitance, changing storage mechanism and lower volume change.

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          Most cited references169

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          Pseudocapacitive Contributions to Electrochemical Energy Storage in TiO2(Anatase) Nanoparticles

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            Challenges in the development of advanced Li-ion batteries: a review

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              Nanostructured materials for advanced energy conversion and storage devices.

              New materials hold the key to fundamental advances in energy conversion and storage, both of which are vital in order to meet the challenge of global warming and the finite nature of fossil fuels. Nanomaterials in particular offer unique properties or combinations of properties as electrodes and electrolytes in a range of energy devices. This review describes some recent developments in the discovery of nanoelectrolytes and nanoelectrodes for lithium batteries, fuel cells and supercapacitors. The advantages and disadvantages of the nanoscale in materials design for such devices are highlighted.
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                Author and article information

                Contributors
                ned988056@yandex.ru
                mustafa_kut88@yahoo.com
                e-kianfar94@iau-arak.ac.ir , ehsan_kianfar2010@yahoo.com , ehsankianfar775@gmail.com
                Journal
                Nanoscale Res Lett
                Nanoscale Res Lett
                Nanoscale Research Letters
                Springer US (New York )
                1931-7573
                1556-276X
                11 December 2021
                11 December 2021
                2021
                : 16
                : 177
                Affiliations
                [1 ]Department of Chemical Engineering and Petroleum Industries, Al-Mustaqbal University College, Babylon, 51001 Iraq
                [2 ]GRID grid.77268.3c, ISNI 0000 0004 0543 9688, Elabuga Institute of KFU, , Kazan Federal University, ; Elabuga, Russia
                [3 ]GRID grid.448878.f, ISNI 0000 0001 2288 8774, Sechenov First Moscow State Medical University, ; Moscow, Russia
                [4 ]GRID grid.77268.3c, ISNI 0000 0004 0543 9688, Department of Legal and Social Sciences, Naberezhnye Chelny Institute, , Kazan Federal University, ; Kazan, Russia
                [5 ]Department of Dentistry, Kut University College, Kut, Wasit 52001 Iraq
                [6 ]Faculty of Nursing, HRH Princess Chulabhorn College of Medical Science, Chulabhorn Royal Academy, Bangkok, 10210 Thailand
                [7 ]Department of Prosthodontics, College of Health and Medical Technololgy, Al-Ayen University, Thi-Qar, Iraq
                [8 ]GRID grid.411465.3, ISNI 0000 0004 0367 0851, Department of Chemical Engineering, Arak Branch, , Islamic Azad University, ; Arāk, Iran
                [9 ]GRID grid.510409.9, ISNI 0000 0004 6092 1266, Young Researchers and Elite Club, Gachsaran Branch, , Islamic Azad University, ; Gachsaran, Iran
                [10 ]GRID grid.444971.b, ISNI 0000 0004 6023 831X, College of Technical Engineering, , The Islamic University, ; Najaf, Iraq
                [11 ]Department of Pharmacy, Osol Aldeen University College, Baghdad, Iraq
                Article
                3631
                10.1186/s11671-021-03631-x
                8665917
                34894321
                e93e183d-4715-493b-8444-82079e3727f5
                © The Author(s) 2021

                Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.

                History
                : 12 September 2021
                : 19 November 2021
                Categories
                Nano Review
                Custom metadata
                © The Author(s) 2021

                Nanomaterials
                battery anode,high-capacity anodes,changing storage mechanism,capacitive quasi-capacitance,titanium oxide

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