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Low Temperature Synthesis of Carbon Nanostructures

  • Ruchi Bharti,
  • Priya Kaushik,
  • Shivani Naik,
  • Ajay Thakur,
  • Monika Verma,
  • Renu Sharma

摘要

The low-temperature synthesis of carbon nanostructures has emerged as a noteworthy area of research and development in the field of nanotechnology. Carbon-based materials, like graphene and CNTs, possess distinctive properties that make them highly desirable for an extensive variety of applications. However, conventional high-temperature synthesis methods often come with limitations, including energy consumption and challenges in controlling the structure and features of the resulting nanostructures. This abstract explores the burgeoning field of low-temperature synthesis techniques for carbon nanostructures. It discusses the various methods and strategies employed to create these materials at reduced temperatures, highlighting the advantages they offer in terms of energy efficiency, precise control over structural parameters, and the ability to synthesize novel carbon allotropes. Furthermore, this abstract underscores the potential applications and implications of low-temperature-synthesized carbon nanostructures in areas such as electronics, energy storage, sensors, and composites. By harnessing the unique properties of carbon nanostructures through low-temperature synthesis, researchers are poised to unlock new opportunities and drive innovation in diverse industrial sectors. Carbon nanostructures, comprising graphene and CNTs, have obtained interest because of their own unique characteristics and utilization in diverse areas like electronics, showcasing their potential. Traditional synthesis methods often require high temperatures and energy-intensive processes, limiting their scalability and practicality. In recent years, low-temperature synthesis techniques have emerged as a promising avenue for producing high-quality carbon nanostructures while mitigating energy consumption and environmental impacts. This review article gives an outline of recent advances in low-temperature synthesis methods for carbon nanostructures and highlights their applications in cutting-edge technologies.