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通过用不纯二氧化锰预氧化将石墨完全转化为氧化石墨烯水凝胶

Fully Converting Graphite into Graphene Oxide Hydrogels by Preoxidation with Impure Manganese Dioxide.

作者信息

Sun Jiaojiao, Yang Ningxin, Sun Zhe, Zeng Mengqi, Fu Lei, Hu Chengguo, Hu Shengshui

机构信息

Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences, Wuhan University , Wuhan 430072, China.

出版信息

ACS Appl Mater Interfaces. 2015 Sep 30;7(38):21356-63. doi: 10.1021/acsami.5b06008. Epub 2015 Sep 17.

Abstract

Potassium permanganate (KMnO4) has been proved to be an efficient oxidant for converting graphite into graphite oxide, but its slow diffusion in the interlayer of graphite seriously restricts the production of graphene oxide (GO). Here, we demonstrate that the preoxidation of graphite by impure manganese dioxide (MnO2) in a mixture of concentrated sulfuric acid (H2SO4) and phosphorus pentoxide (P2O5) can efficiently improve the synthesis of GO when KMnO4 is employed as the oxidant. The prepared honey-like GO hydrogels possess a high yield of single-layer sheets, large sizes (average lateral size up to 20 μm), wide ranges of stable dispersion concentrations (from dilute solutions, viscous hydrogels, to dry films), and good conductivity after reduction (~2.9 × 10(4) S/m). The mechanism for the improved synthesis of GO by impure MnO2 was explored. The enhanced exfoliation and oxidation of graphite by oxidative Mn ions (mainly Mn(3+)), which are synergistically produced by the reaction of impure MnO2 with H2SO4 and P2O5, are found to be responsible for the improved synthesis of such GO hydrogels. Particularly, preoxidized graphite (POG) can be partially dispersed in water with sonication, which allows the facile construction of flexible and highly conductive graphene nanosheet film electrodes with excellent electrochemical sensing properties.

摘要

高锰酸钾(KMnO₄)已被证明是一种将石墨转化为氧化石墨的有效氧化剂,但其在石墨层间的缓慢扩散严重限制了氧化石墨烯(GO)的制备。在此,我们证明,当使用KMnO₄作为氧化剂时,在浓硫酸(H₂SO₄)和五氧化二磷(P₂O₅)的混合物中用不纯的二氧化锰(MnO₂)对石墨进行预氧化可以有效提高GO的合成。制备的蜂蜜状GO水凝胶具有高产率的单层片、大尺寸(平均横向尺寸可达20μm)、宽范围的稳定分散浓度(从稀溶液、粘性水凝胶到干膜)以及还原后良好的导电性(约2.9×10⁴ S/m)。探讨了不纯MnO₂改善GO合成的机制。发现由不纯MnO₂与H₂SO₄和P₂O₅反应协同产生的氧化态锰离子(主要是Mn³⁺)增强了石墨的剥离和氧化,这是此类GO水凝胶合成得到改善的原因。特别地,预氧化石墨(POG)在超声处理下可部分分散于水中,这使得能够轻松构建具有优异电化学传感性能的柔性且高导电的石墨烯纳米片薄膜电极。

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