In 2005, Dennard scaling, which had hitherto delivered the performance enhancement of integrated circuit (IC) chips, completely collapsed. Hence, the need for new materials and material research emerged. Two-dimensional (2D) graphene emerged as a device material, and two-dimensional hexagonal boron nitride (BN) has emerged as the ideal substrate material. For the ongoing digital revolution to be sustained, petabit/second and exabit/second transmission links are needed. Graphene technology has matured to the level where functional graphene ICs on the wafer scale can be implemented, such as frequency multipliers, high-frequency graphene analog amplifiers and quaternary digital modulation circuits. These functional graphene ICs can be fabricated at the wafer scale because of the development of the imperfection-immune paradigm called very-large-scale-integration-compatible metallic carbon (C) nanotube removal technique. To harness the exotic properties of graphene nanomaterials in real-life applications at the macro scale, three-dimensional graphene-based monoliths have been developed, which could become the basis of future batteries and solar cells. Terahertz graphene chips will herald peta- and exabit rate optical fiber communication, which is the answer to the large data workload of the Internet. Graphene is emerging as an important thermoelectric material that is capable of converting temperature difference into electric current.
Article navigation
22 December 2020
Research Article|
November 23 2020
Wide application feasibility report on graphene
Bijay Kumar Sharma, PhD
Formerly Emeritus Professor, Fellow of Electronics & Commuincation Engineering
Department of National Institute of Technology Patna, Patna, India
Search for other works by this author on:
Publisher: Emerald Publishing
Received:
June 03 2019
Accepted:
October 14 2020
Online ISSN: 2046-0155
Print ISSN: 2046-0147
ICE Publishing: All rights reserved
2020
Emerging Materials Research (2020) 9 (4): 1168–1194.
Article history
Received:
June 03 2019
Accepted:
October 14 2020
Citation
Sharma BK (2020), "Wide application feasibility report on graphene". Emerging Materials Research, Vol. 9 No. 4 pp. 1168–1194, doi: https://doi.org/10.1680/jemmr.19.00068
Download citation file:
New and popular articles
Suggested Reading
In silico metaheuristic tailoring of quaternary copolymers
Emerging Materials Research (July,2017)
The band gap bowing of CdSxTe1−x alloys beyond the virtual crystal approximation
Emerging Materials Research (October,2020)
Correlation and convolution for binary image filter using QCA
Nanomaterials and Energy (June,2016)
Graphene: an exotic condensed matter and its impact on technology
Emerging Materials Research (June,2020)
Detection of CO using a graphene-island-based single-electron transistor
Nanomaterials and Energy (July,2019)
Related Chapters
The Future of Sustainable Interior Design in Light of Nanotechnology
AI in Modern Architecture and Design: Insights, Applications, New Openings
Career Mathways: Showcasing the Usefulness and Value of Mathematics to Secondary School Students and Teachers Through Careers
Mathematics Outreach: Examples and Impact from Across the Globe
Applications of Mimicking Technology in Understanding Consumer Behaviour and Its Effects on Consumer Engagement
Marketing 5.0: The Role of Human-Mimicking Technology
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
