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煤基低维碳材料制备及其在有机太阳能电池的应用

Preparation of coal-based low-dimension carbon materials and the applications in organic solar cells

  • 摘要: 煤炭作为储量丰富的碳资源在能源行业中占据重要地位,但传统的煤炭利用方式存在环境污染和效率低等问题。煤及其衍生物富含丰富的稠环芳烃,可通过物理、化学等手段转化为高附加值的低维(零维、一维和二维)碳材料,这有利于推动新能源的发展以及实现煤炭资源的清洁利用。笔者首先阐述了我国能源与环境现状,以及煤炭资源在“双碳”时代清洁利用的迫切需求;重点介绍了煤基低维碳材料(碳量子点、碳纳米管、石墨烯、碳纳米片等)的结构特点、制备方法、改性策略以及新能源应用和市场前景;阐述了各种煤基低维碳材料制备方法的优缺点、创新性以及适用条件;深入探讨了这些低维碳材料在有机太阳能电池(Organic Solar Cells, OSC)各组分中的各种应用,并详细总结了其作为OSC电极、添加剂以及电荷传输层的应用优势和作用机理;分析了其在提高OSC能量转化效率、降低制造成本、提高稳定性以及推动可持续发展等方面的重要作用;对比了低维碳材料与其他低维材料在OSC中的应用优势和性能指标。最后,分析并总结了煤基低维碳材料在制备和新能源应用研究过程中存在问题及重点研发方向。随着高值碳材料制备技术的不断发展,生产成本的降低,以及规模化生产,煤基低维碳材料有望在新能源领域展现出更广阔的应用前景。

     

    Abstract: Coal, as an abundant carbon resource, holds a crucial position in the energy industry. However, conventional coal utilization methods are linked to environmental pollution and inefficiency. At the molecular level, coal and its derivatives display properties of polycyclic aromatic hydrocarbons, which could be transformed into valuable low-dimensional carbon materials (0D, 1D, and 2D) through physical and chemical processes. This transformation plays a significant role in achieving cleaner coal utilization and promoting the development of renewable energy sources. The article first elaborates on the current situation of energy and environment in China, as well as the urgent need for clean utilization of coal resources in the “dual carbon” era. The structural features, preparation methodologies, modification strategies, and new energy applications of coal-derived low-dimensional carbon materials, including carbon quantum dots, carbon nanotubes, graphene, carbon nanosheets, and etc. are explored. Additionally, it elucidates the benefits and limitations, innovation, as well as suitable conditions of various preparation techniques of low-dimensional carbon materials. Furthermore, it investigates the diverse applications of these materials in the components of organic solar cells (OSC), highlighting their application superiority and mechanisms as electrodes, additives, and charge transport layers in detail. The pivotal role of coal-based low-dimensional carbon materials in enhancing the power conversion efficiency of OSC, reducing manufacturing costs, improve stability, and supporting sustainable development is analyzed. The application advantages and performance indicators of low-dimensional carbon materials compared to other low-dimensional materials in OSC are discussed. Finally, the problems and key research directions in the preparation and new energy application research of coal-based low-dimensional carbon materials were analyzed and summarized. With the continuous development of high-value carbon material preparation technology, the reduction of production costs, and large-scale production, these materials are anticipated to have even broader application prospects in the realm of renewable energy.

     

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