Online ISSN : 1884-6440
Print ISSN : 0385-1036
ISSN-L : 0385-1036
特集:膜シンポジウム2022 特集号 招待講演
高分子ガス膜技術でCO2 ネットゼロ経済を
Easan Sivaniah
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ジャーナル オープンアクセス

2023 年 48 巻 2 号 p. 56-59

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We identified ways to stop the dissociative swelling of graphene oxide membranes in the presence of humidity by incorporating nanodiamonds. The stabilization phenomenon is identified as an enhanced electrostatic interaction between the negatively charged graphene oxide sheets and the positively charged carbonaceous nanodiamonds. Essentially, through the introduction of nanodiamonds, water is prevented from (a) absorbing within the graphene oxide structures, (b) blocking the pathways for hydrogen transport, and (c) irreversibly re–organizing the nanolaminated graphene oxide galleries. Of notable interest, the overall permaselective performance of the membrane was found to exceed that of any reported membrane material performance for the separation of carbon dioxide from hydrogen. For comparison, we surveyed best–in–class performances reported for silicas, polymers and metal and covalent organic frameworks.
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