English

Pioneering Advancements of 2D Graphene: Energy and Electronics applications

Mesoscale and Nanoscale Physics 2025-07-29 v2

Abstract

This review explores the synthesis, characterization, and potential applications of graphene, a two-dimensional material with exceptional properties. Graphene's versatility in energy and electronics applications is highlighted, with its high conductivity and huge surface area facilitating improved energy storage capabilities in supercapacitors and batteries. In electronics, graphene is revolutionizing the industry by enabling the development of flexible displays, high-speed transistors, and enhanced thermal management systems. The integration of graphene into composite materials presents opportunities for stronger, lighter, and more conductive materials. The study provides a comprehensive overview of graphene's current and future impact on technology, emphasizing its transformative potential in energy solutions and electronic advancements. In the energy sector, graphene's integration into batteries, energy storage systems, capacitors, fuel cells, and renewable energy technologies signifies a leap forward in efficiency, capacity, and sustainability. In the electronics sector, graphene's unique characteristics are utilized in RFID, sensors, and EMI shielding, leading to communication, security, and device miniaturization advancements. The study underscores graphene's potential to spearhead future innovations, reinforcing its status as a pivotal material in the ongoing technological evolution.

Keywords

Cite

@article{arxiv.2507.17028,
  title  = {Pioneering Advancements of 2D Graphene: Energy and Electronics applications},
  author = {Abdulrhman M. Alaraj and Aya A. Esmaeil and Mohamed A. Khamis and Naglaa M. Zian and Fatma Sameh and Abdallah M. Abdeldaiem and Ebrahem H. Abdelaal and Walid J. Hamouda and Sara R. Ghazal and Habiba E. El-Sayegh and Aml F. Dawood and Fayza R. Ramadan and Haneen A. Saad and Mena K. Selema and Nora H. El-Mowafy and Mohamed M. Kedra and Ahmed K. Abozaid and Ahmed M. Ragab and Ahmed A. El-Naggar and Walid Ismail and Swellam W. Sharshir and Abdelhamid El-Shaer and Mahmoud Abdelfatah},
  journal= {arXiv preprint arXiv:2507.17028},
  year   = {2025}
}