Durability of S- and N-doped graphene nanoplatelets for electrode performance in solid-state batteries
Vijay Kumar Srivastava,
Stefanos Mourdikoudis,
Jalal Azadmanjiri
et al.
Abstract:The main emphasis of the present review paper is to summarise reported works aiming to understand the effect of sulfur and nitrogen doping on graphene nanoplatelets for high capacity electrodes...
“…1,2 Meanwhile, graphene with a sp 2 hybridized network is also an ideal template electrode for studying the mechanisms of electrochemical energy storage. In this aspect, the surface states of graphene, such as its wettability, 3–5 defects 6–8 and functional groups, 9–11 would be very important for its electrochemical properties.…”
The surface characteristics of graphene, such as hydrophilicity and adsorptivity, have clear impact on the surface charged state and the transport of electrons.
“…1,2 Meanwhile, graphene with a sp 2 hybridized network is also an ideal template electrode for studying the mechanisms of electrochemical energy storage. In this aspect, the surface states of graphene, such as its wettability, 3–5 defects 6–8 and functional groups, 9–11 would be very important for its electrochemical properties.…”
The surface characteristics of graphene, such as hydrophilicity and adsorptivity, have clear impact on the surface charged state and the transport of electrons.
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