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Selective removal of hydroxyl groups on graphene oxide has been achieved with ethanethiol–aluminium chloride complexes. The reduced graphene material exhibits improved electrochemical properties over its precursor graphite oxide (layered structure of graphite oxide depicted by the red layered wall of Antelope Canyon in Arizona). The selective defunctionalization of oxygen groups on graphene oxide...
Graphene has a wide range of potential applications, thus tremendous efforts have been put into ensuring that the most direct and effective methods for its large‐scale production are developed. The formation of graphene materials from graphene oxide through a chemical reduction method is still one of the most preferred routes. Numerous methods starting from various reducing agents have been developed...
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