Addressing Transport Issues in Non-Aqueous Li–air Batteries to Achieving  High Electrochemical Performance

Addressing Transport Issues in Non-Aqueous Li–air Batteries to Achieving High Electrochemical Performance

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Schematic of mass transport processes during discharging of a Li–air

Effect of CO2-induced side reactions on the deposition in the non-aqueous Li-air batteries

Unexpected stable cycling performance at low temperatures of Li-ion batteries with Si/C anodes - ScienceDirect

Discharge/charge profiles of the Li–O2 cell with Ru/SP. The charge

Voltage profile of Li-O 2 batteries using GPE with different salt

Electrochemical Energy Reviews

Effect of air electrode thicknesses on battery specific capacity at 0.1

Schematic illustration of: a) the self-discharge of the redox mediator

A) The proposed reaction routes of capturing O 2 À by CO 2 . B),C) The

a) First specific discharge capacity for different concentrations of

Effect of CO2-induced side reactions on the deposition in the non-aqueous Li-air batteries

Electrochemical behaviors of redox mediators. (a) Steady-state CV