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Preparation of water soluble graphene using polyethylene glycol: Comparison of covalent approach and noncovalent approach

机译:用聚乙二醇制备水溶性石墨烯:共价法和非共价法的比较

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摘要

Formulation of stable aqueous graphene solution is attempted either through esterification of GO with PEG and subsequent reduction in covalent approach or in situ chemical reduction of aqueous GO solution in the presence of NH2-PEG-NH2 in noncovalent approach. While covalent approach produces insoluble graphite-like precipitation, noncovalent approach produces practically homogeneous reduced graphene solution for several months without any precipitate. Noncovalent interaction between NH2-PEG-NH2 and graphene is crucial for formulating fully reduced graphene solution with high stability. Various wet process such as spin-coating, ink-jet printing, and spraying can be directly utilized to formulate graphene-based electronic devices such as transparent electrode or anti-static coating without any additional reduction process which is necessary when insulating GO solution is used instead. Nonconducting NH2-PEG-NH2 can be simply removed from conducting graphene film by simple filtration and washing process to formulate pure graphene film because interaction between graphene and NH2-PEG-NH2 is not covalent. The initial surface resistance of graphene thin film with NH2-PEG-NH2 is in the range of 10~6Ω/□ but it decreases to 10~4Ω/□ after removing NH2-PEG-NH2.
机译:尝试通过将GO与PEG酯化并随后以共价方式还原或在非共价方式下在NH2-PEG-NH2存在下原位化学还原GO水溶液来配制稳定的石墨烯水溶液。尽管共价方法产生了不溶性的类似石墨的沉淀,但非共价方法却产生了实际上均质的还原石墨烯溶液,持续了数月而没有任何沉淀。 NH2-PEG-NH2与石墨烯之间的非共价相互作用对于配制具有高稳定性的完全还原的石墨烯溶液至关重要。可以直接利用各种湿法工艺(例如旋涂,喷墨印刷和喷涂)来配制石墨烯基电子设备,例如透明电极或抗静电涂层,而无需使用绝缘GO溶液时需要的任何其他还原工艺代替。由于石墨烯与NH2-PEG-NH2之间的相互作用不是共价的,因此可以通过简单的过滤和洗涤工艺从导电石墨烯膜中简单地去除非导电NH2-PEG-NH2,从而制成纯石墨烯膜。带有NH2-PEG-NH2的石墨烯薄膜的初始表面电阻在10〜6Ω/□的范围内,但在去除NH2-PEG-NH2后降低到10〜4Ω/□。

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