CARBON SOOT AS A POTENTIAL AND SUSTAINABLE SOURCE OF POROUS NANOSTRUCTURE FOR ENERGY STORAGE

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CARBON SOOT AS A POTENTIAL AND SUSTAINABLE SOURCE OF POROUS NANOSTRUCTURE FOR ENERGY STORAGE

Abstract:
With the increasing demand for sustainable and efficient energy storage systems, the development of novel materials for energy storage applications has become a significant area of research. Carbon-based materials have emerged as promising candidates due to their excellent electrical conductivity, high surface area, and chemical stability. This abstract focuses on the potential and sustainability of carbon soot as a source of porous nanostructures for energy storage applications.

Carbon soot, a byproduct of incomplete combustion processes, is abundantly available and can be obtained from various sources such as biomass, fossil fuels, or industrial processes. It is predominantly composed of amorphous carbon with a high degree of disorder, making it an attractive starting material for the synthesis of porous nanostructures. The utilization of carbon soot for energy storage applications offers a sustainable solution by repurposing a waste material and reducing the reliance on non-renewable resources.

Porous nanostructures derived from carbon soot exhibit unique properties that make them suitable for energy storage applications. The high surface area and porosity of these materials provide a large number of active sites for electrochemical reactions, enabling high-capacity energy storage. Additionally, the interconnected pore network facilitates rapid ion diffusion and electron transport, leading to improved charge/discharge rates and overall performance.

Various strategies can be employed to convert carbon soot into porous nanostructures. Activation processes such as physical or chemical activation, carbonization, and templating techniques can be utilized to induce porosity and tailor the specific surface area, pore size, and distribution. Furthermore, surface functionalization and doping of carbon soot-derived nanostructures can enhance their electrochemical properties, stability, and cyclability.

Carbon soot-derived porous nanostructures have shown promising results in diverse energy storage systems, including supercapacitors, lithium-ion batteries, and emerging technologies such as sodium-ion batteries and hybrid capacitive deionization. The scalable production, low cost, and eco-friendly nature of carbon soot-based materials contribute to their potential for large-scale energy storage applications.

In conclusion, carbon soot represents a sustainable and abundant source of porous nanostructures for energy storage applications. The unique properties of carbon soot-derived materials, coupled with their facile synthesis and cost-effectiveness, make them a promising alternative to conventional energy storage materials. Further research and development efforts in this field hold the potential to address the challenges associated with energy storage and contribute to the advancement of sustainable energy technologies.

CARBON SOOT AS A POTENTIAL AND SUSTAINABLE SOURCE OF POROUS NANOSTRUCTURE FOR ENERGY STORAGE. GET MORE MATERIALS SCIENCE AND ENGINEERING

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