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首页> 外文期刊>Macromolecular Research >Preparation of Thin-Layer Graphene Using RAFT Polymerization and a Thiol-Ene Click Reaction
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Preparation of Thin-Layer Graphene Using RAFT Polymerization and a Thiol-Ene Click Reaction

机译:使用筏聚合制备薄层石墨烯和硫醇-NE键反应

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In this paper, functionalization of graphene is conducted through click reactions for its effective dispersion. The poly(sodium 4-styrenesolfonate) (PSS) was synthesized using reversible addition-fragmentation chain transfer (RAFT) polymerization. The chain end dithioester group of RAFT-polymerized PSS was reduced to a thiol and used to couple PSS to graphene oxide (GO) via a thiol-ene click reaction. An aqueous dispersion of reduced GO with PSS (PSS-rGO) resisted sedimentation due to steric effects and charge-charge repulsion between the PSS attached to rGO. Atomic force microscopy showed that the PSS-rGO mixture was composed of dispersed particles of thin-layer (1.5 nm thick) graphene. Thickness of the PSS-rGO was close to that of GO. This indicates that there was no significant re-aggregation during GO reducing process.
机译:在本文中,通过咔烯的官能化通过咔哒反应进行其有效分散体。 使用可逆添加 - 碎片链转移(RAFT)聚合来合成聚(4-苯乙烯纤维酸盐)(PSS)。 将链末将的筏子聚合的PSS族聚合的PSS还原成硫醇,并通过硫醇-NE点击反应将PSS耦合到石墨烯氧化物(GO)。 由于附着于RGO的PSS之间的空间效应和电荷排斥,减少与PSS(PSS-RGO)抗性沉降的水分散体。 原子力显微镜显示PSS-Rgo混合物由薄层(1.5nm厚)石墨烯的分散颗粒组成。 PSS-RGO的厚度接近Go。 这表明在降低过程中没有显着的重新聚合。

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