Graphene properties and applications in nanoelectronic

T Radsar, H Khalesi, V Ghods - Optical and Quantum Electronics, 2021 - Springer
Reduction in the dimensions of silicon based devices has produced extraordinary
developments in the performance of electronic systems. Recently, the advantages and …

Graphene nanoribbon field effect transistors analysis and applications

T Radsar, H Khalesi, V Ghods - Superlattices and Microstructures, 2021 - Elsevier
The dimension down scaling capability of the silicon based transistors has produced
significant developments in the electronic industry. The channel length reduction has been …

An efficient GNRFET-based circuit design of ternary half-adder

E Abbasian, M Orouji, ST Anvari - AEU-International Journal of Electronics …, 2023 - Elsevier
Attaining low energy consumption in digital circuits design is a main task for designers
because emerging applications are based on batteries and face limited-energy. Designing …

Dual gate AlGaN/GaN MOS-HEMT biosensor for electrical detection of biomolecules-analytical model

R Mann, S Rewari, S Sharma… - … Science and Technology, 2023 - iopscience.iop.org
This paper proposes an analytical model for a dual gate AlGaN/GaN Metal oxide
semiconductor-high-electron-mobility transistor (MOS-HEMT) biosensor for electrical …

Characterisation of graphene nano-ribbon field effect transistor and design of high performance PPN 12T GNRFET Full adder

M Elangovan, K Sharma, A Sachdeva - Physica Scripta, 2023 - iopscience.iop.org
Owing to the balanced electrical properties of graphene nanoribbon field effect transistors
(GNRFETs), they are suitable next-generation devices for designing high performance …

A power efficient 32 nm ternary multiplier using graphene nanoribbon field-effect transistor technology

Z Rohani, AAE Zarandi - ECS Journal of Solid State Science and …, 2023 - iopscience.iop.org
As circuit complexity grows, designers are exploring ternary logic as an alternative to binary
logic to solve interconnection and energy problems. One effective approach to implementing …

Simulation for a low-energy ternary multiplier cell based on Graphene nanoribbon field-effect transistor

Z Rohani, AA Emrani Zarandi - International Journal of Nano …, 2024 - ijnd.tonekabon.iau.ir
The multiplier circuit is considered to be a significant component of larger circuits, such as
the arithmetic and logic unit (ALU), and it is crucial to enhance its energy efficiency. This …

A highly-efficient ternary-capable GNRFETs-based three-valued half adder circuit using unary operators

E Abbasian, A Elbarbary - Materials Science and Engineering: B, 2024 - Elsevier
Maximizing energy efficiency is of utmost importance for IoT devices that rely on batteries.
This research recommends the utilization of multi-valued logic (MVL) in conjunction with …

Area-energy optimized ternary multiplier using efficient design approaches in GNRFET technology

F Wang, Q Zhu, KA Alnowibet - AEU-International Journal of Electronics …, 2024 - Elsevier
The semiconductor industry has long benefited from CMOS transistors in realizing advanced
VLSI circuits. However, achieving area-energy optimization in CMOS-based VLSI circuits …

Effects of channel dimension and doping concentration of source and drain contacts on GNRFET performance

T Radsar, H Khalesi, V Ghods, A Izadbakhsh - Silicon, 2021 - Springer
Growth of the electronic industry has been accompanied by the increasing number of
components on a chip. Consequently, it is necessary to shrink device dimension. In this …