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Review article

Nano and Battery Anode: A Review

Hasan Sh. MajdiЗагир Азгарович ЛатиповElabuga Institute of KFU, Kazan Federal University, Elabuga, RussiaVitaliy BorisovSechenov First Moscow State Medical University, Moscow, RussiaNedorezova Olga YuryevnaDepartment of Legal and Social Sciences, Naberezhnye Chelny Institute, Kazan Federal University, Kazan, Russia. [email protected]Mustafa M. KadhimCollege of Technical Engineering, The Islamic University, Najaf, IraqWanich SuksatanFaculty of Nursing, HRH Princess Chulabhorn College of Medical Science, Chulabhorn Royal Academy, Bangkok, 10210, ThailandIbrahim Hammoud KhleweeDepartment of Prosthodontics, College of Health and Medical Technololgy, Al-Ayen University, Thi-Qar, IraqEhsan KianfarDepartment of Chemical Engineering, Arak Branch, Islamic Azad University, Arāk, Iran. [email protected]
2021en
ABI

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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Cited by 30 references