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通过火焰中的干冰法制备的涡轮层状碳/石墨烯及其不同路线的纯化:一项比较研究

Turbostratic Carbon/Graphene Prepared via the Dry Ice in Flames Method and Its Purification Using Different Routes: A Comparative Study.

作者信息

Cuadros-Lugo Eduardo, Piñon-Espitia Manuel, Martinez-Rodríguez Harby A, Lardizabal-Gutierrez Daniel, Estrada-Guel Ivanovich, Herrera-Ramirez Jose M, Carreño-Gallardo Caleb

机构信息

Centro de Investigación en Materiales Avanzados-CIMAV, Miguel de Cervantes 120, Chihuahua 31136, Mexico.

Grupo de Propiedades Térmicas Dieléctricas de Compósitos, Universidad Nacional de Colombia Sede Manizales, Manizales 170001, Colombia.

出版信息

Materials (Basel). 2022 Mar 29;15(7):2501. doi: 10.3390/ma15072501.

Abstract

Although the dry ice method used to synthesize turbostratic carbon/graphene is little known and used, it has significant advantages over others, such as the following: it is low cost, simple, and a large quantity of material can be obtained using some inorganic and highly available acids (which can be reused). Despite the above advantages, the main reason for its incipient development is the resulting presence of magnesium oxide in the final product. In the present work, three different treatments were tested to remove this remnant using some acid chemical leaching processes, including hydrochloric acid, aqua regia, and piranha solution. Based on the experimental evidence, it was determined that using aqua regia and combining the leaching process with mechanical milling was the most efficient way of removing such a remnant, the residue being only 0.9 wt.%. This value is low compared to that obtained with the other acid leaching solutions and purification processes (2.8-29.6 wt.%). A mandatory high-energy mechanical milling stage was necessary during this treatment to expose and dissolve the highly insoluble oxide without secondary chemical reactions on the turbostratic carbon. High-energy mechanical milling is an effective route to exfoliate graphite, which allows the magnesium oxide to be more susceptible to acid treatment. A yield of turbostratic carbon/graphene of 1 wt.% was obtained from the metallic Mg. The obtained surface area was 504.8 mg; this high value resulting from the intense exfoliation can potentiate the use of this material for a wide variety of applications.

摘要

尽管用于合成乱层碳/石墨烯的干冰法鲜为人知且使用较少,但它相对于其他方法具有显著优势,如下:成本低、操作简单,并且使用一些无机且易得的酸(可重复使用)能够获得大量材料。尽管有上述优点,其初步发展缓慢的主要原因是最终产物中会存在氧化镁。在本工作中,测试了三种不同处理方法,通过一些酸性化学浸出工艺来去除这种残余物,包括盐酸、王水和硫酸与过氧化氢的混合溶液。基于实验证据,确定使用王水并将浸出过程与机械研磨相结合是去除此类残余物的最有效方法,残余物仅为0.9重量%。与其他酸浸出溶液和纯化工艺(2.8 - 29.6重量%)相比,该值较低。在此处理过程中,必须有一个高能机械研磨阶段,以使高度不溶性氧化物暴露并溶解,同时避免在乱层碳上发生二次化学反应。高能机械研磨是剥离石墨的有效途径,这使得氧化镁更容易受到酸处理。从金属镁中获得了1重量%的乱层碳/石墨烯产率。所获得的表面积为504.8平方米;这种因强烈剥离而产生的高值能够增强这种材料在各种应用中的使用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d41f/8999806/b89cedb1a85d/materials-15-02501-g001.jpg

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