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Synthesis of Carbon Nanomaterials from Biomass Utilizing Ionic Liquids for Potential Application in Solar Energy Conversion and Storage

机译:利用离子液体对生物量的合成碳纳米材料以利用离子液体在太阳能转换和储存中应用

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摘要

Considering its availability, renewable character and abundance in nature, this review assesses the opportunity of the application of biomass as a precursor for the production of carbon-based nanostructured materials (CNMs). CNMs are exceptionally shaped nanomaterials that possess distinctive properties, with far-reaching applicability in a number of areas, including the fabrication of sustainable and efficient energy harnessing, conversion and storage devices. This review describes CNM synthesis, properties and modification, focusing on reports using biomass as starting material. Since biomass comprises 60–90% cellulose, the current review takes into account the properties of cellulose. Noting that highly crystalline cellulose poses a difficulty in dissolution, ionic liquids (ILs) are proposed as the solvent system to dissolve the cellulose-containing biomass in generating precursors for the synthesis of CNMs. Preliminary results with cellulose and sugarcane bagasse indicate that ILs can not only be used to make the biomass available in a liquefied form as required for the floating catalyst CVD technique but also to control the heteroatom content and composition in situ for the heteroatom doping of the materials.
机译:考虑到其自然界的可用性,可再生性格和丰富,评价评估了生物量作为生产碳基纳米结构材料(CNMS)的前体的机会。 CNMS具有异常形状的纳米材料,其具有独特的性质,具有在许多区域中具有深远的适用性,包括制造可持续和有效的能量利用,转换和储存装置。该审查介绍了CNM合成,属性和修改,专注于使用生物质作为起始材料的报告。由于生物质包含60-90%的纤维素,因此目前的审查考虑了纤维素的性质。注意到,高结晶纤维素造成溶解的困难,提出了离子液体(IL)作为溶剂体系,以溶解含纤维素的生物质在产生前体以合成CNMS。纤维素和甘蔗果糖的初步结果表明ILS不能仅用于使浮动催化剂CVD技术的液化形式以液化形式可获得生物质,而且还可以控制杂原子含量和原位对材料的杂原子掺杂的组成。

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