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Pisma v Zhurnal Tekhnicheskoi Fiziki, 2020 Volume 46, Issue 19, Pages 3–6 (Mi pjtf4970)

The influence of diffusion barriers on the capacitance properties of composite anodes with Si–CuSi–Cu composition

È. Yu. Buchina, A. A. Mironenkob, V. V. Naumovb, A. S. Rudyia

a Yaroslavl branch of the Institute of physics and technology, Institution of Russian academy of sciences
b P.G. Demidov Yaroslavl State University

Abstract: As an anode material for liquid lithium-ion batteries, film structures consisting of several identical modules [Co$(x)$/$\alpha$-Si(100)/Cu(70)], where the value of $x$ varied from 2 to 10 nm, have been studied. It is shown that relatively thick cobalt layers are effective diffusion barriers for silicon and copper atoms, as well as lithium ions. This leads to a decrease in the capacitive properties of the studied films. Thin cobalt layers (less than 3 nm) with a network structure, on the contrary, contribute to an increase in the capacitive properties of anode films. This is due to a more uniform distribution in their volume of drift channels of lithium ions, which are formed at the initial stage of electrode cycling.

Keywords: composite film, reversible capacitance of the anode, cyclic resource, atom migration, barrier layer, lithiation, drift channels.

Received: 21.05.2020
Revised: 21.05.2020
Accepted: 12.06.2020

DOI: 10.21883/PJTF.2020.19.50034.18389


 English version:
Technical Physics Letters, 2020, 46:10, 943–946

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© Steklov Math. Inst. of RAS, 2024