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CARBON NANOSTRUCTURES SYNTHESIZE FROM COCONUT COIR DUST MEDIATED BY LAYERED CLAYS THROUGH HYDROTHERMAL PROCESS

机译:水热法从层状粘土介导的椰壳粉尘中合成碳纳米结构

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Brazil has a large potential for energy generation and development of new materials from renewable resources through eco-friendly routes, which presents an alternative for construction of an eco-technological platform, where the entire lifecycle of the material or industrial product be sustainable. The proposal of the present work was synthesize carbon nanostructures from coconut coir dust and via template synthesis mediated by layered clays through hydrothermal process. The obtained materials were characterized by Raman Spectroscopy, Fourier Transform Infrared Spectroscopy and Scanning Electron Microscope (SEM). Carbon phase formation was indicated by infrared results with bands at 1444 cm~(-1) and 1512 cm~(-1) assigned to C=C of aromatic groups. Raman spectroscopy results showed presence of carbonaceous species by the appearance of D and G bands assigned to disordered and graphitic crystallites, respectively. SEM results showed overlapping sheets and plates formation. High Resolution Transmission Electron Microscopy measures are in progress.
机译:巴西具有巨大的潜力,可通过生态友好的路线利用可再生资源来生产和开发新材料,这为构建生态技术平台提供了替代方案,在该平台上,材料或工业产品的整个生命周期都是可持续的。本工作的建议是从椰子椰壳粉尘中并通过水热过程通过层状粘土介导的模板合成来合成碳纳米结构。所获得的材料通过拉曼光谱,傅立叶变换红外光谱和扫描电子显微镜(SEM)进行表征。红外结果表明碳相的形成,在1444 cm〜(-1)和1512 cm〜(-1)的谱带对应于芳族基团C = C。拉曼光谱结果表明,通过分别分配给无序和石墨微晶的D和G带的出现,碳质物质的存在。 SEM结果显示重叠的片和板形成。高分辨率透射电子显微镜技术正在开发中。

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