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重新审视用于合成还原氧化石墨烯三维水凝胶的氧化还原反应。

Revisiting oxidation and reduction reactions for synthesizing a three-dimensional hydrogel of reduced graphene oxide.

作者信息

Le Hon Nhien, Dao Thi Bang Tam, Nguyen Trung Do, Dinh Duc Anh, Ha Thuc Chi Nhan, Le Van Hieu

机构信息

Faculty of Materials Science and Technology, University of Science 227 Nguyen Van Cu Street, Ward 4, District 5 Ho Chi Minh City 700000 Vietnam

Vietnam National University Linh Trung Ward, Thu Duc City Ho Chi Minh City 700000 Vietnam.

出版信息

RSC Adv. 2024 Sep 27;14(42):30844-30858. doi: 10.1039/d4ra05385k. eCollection 2024 Sep 24.

Abstract

An improvement to Hummers' method involving a cascade-design graphite oxidation reaction is reported to optimize safety and efficiency in the production of graphite oxide (GrO) and graphene oxide (GO). Chemical reduction using highly alkaline ammonia solution is a novel approach to synthesizing reduced graphene oxide (RGO). In this original research, we revisit the oxidation and reduction reactions, providing significant findings regarding the synthetic pathway to obtain a bioinspired water-intercalated hydrogel of RGO nanosheets. Influential factors in the graphite oxidation reaction, typically the exothermic reaction temperature and hydrogen peroxide effect, are described. Furthermore, the chemical reaction of GO reduction using highly alkaline ammonia solution (pH 14) was investigated to produce hydrated RGO nanosheets assembled in a hydrogel structure (97% water). Three-dimensional assembly and water intercalation are key to preserve the non-stacking state of RGO nanosheets. Therefore, ultrasound transmission to aqueous channels in the macroscopic RGO hydrogel vibrated and dispersed the RGO nanosheets in water. Analytical results revealed the single-layer nanostructures, functional groups, optical band gaps, optimized C/O ratios, particle sizes and zeta potentials of GO and RGO nanosheets. The reversible self-assembly of RGO hydrogels is essential for many applications, such as RGO coatings and polymer/RGO nanocomposites. In a water purification application, the RGO hydrogel was dispersed in aqueous solution by simple agitation and showed a high capacity for organic dye adsorption. After the adsorption, the RGO/dye particles were easily removed by filtration through ordinary cellulose paper. The process of adsorption and filtration is effective and inexpensive for practical environmental remediation. In summary, a bioinspired structure of RGO hydrogel is conceptualized for prospective nanotechnology.

摘要

据报道,对Hummers法进行的一项改进涉及级联设计的石墨氧化反应,以优化氧化石墨烯(GrO)和氧化石墨烯(GO)生产中的安全性和效率。使用高碱性氨溶液进行化学还原是合成还原氧化石墨烯(RGO)的一种新方法。在这项原创研究中,我们重新审视了氧化和还原反应,提供了关于获得受生物启发的RGO纳米片水插层水凝胶合成途径的重要发现。描述了石墨氧化反应中的影响因素,通常是放热反应温度和过氧化氢效应。此外,还研究了使用高碱性氨溶液(pH 14)还原GO的化学反应,以制备组装成水凝胶结构(97%为水)的水合RGO纳米片。三维组装和水插层是保持RGO纳米片非堆叠状态的关键。因此,超声传播到宏观RGO水凝胶中的水通道,使RGO纳米片在水中振动和分散。分析结果揭示了GO和RGO纳米片的单层纳米结构、官能团、光学带隙、优化的C/O比、粒径和zeta电位。RGO水凝胶的可逆自组装对于许多应用至关重要,例如RGO涂层和聚合物/RGO纳米复合材料。在水净化应用中,RGO水凝胶通过简单搅拌分散在水溶液中,对有机染料具有高吸附能力。吸附后,通过普通纤维素纸过滤可轻松去除RGO/染料颗粒。吸附和过滤过程对于实际环境修复有效且成本低廉。总之,为前瞻性纳米技术构思了一种受生物启发的RGO水凝胶结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8266/11427890/cb1a960057a0/d4ra05385k-f1.jpg

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