arrow
Return

Defect-engineered monolayer MoS2 with enhanced memristive and synaptic functionality for neuromorphic computing

delete2024-09-16
delete0
delete
OA
AI
M
Manisha Rajput
S
Sameer Kumar Mallik
S
Sagnik Chatterjee
A
Ashutosh Kumar Shukla
S
Sooyeon Hwang
S
Satyaprakash Sahoo
G
G. V. Pavan Kumar
A
Atikur Rahman *
DOI:10.1038/s43246-024-00632-ydelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Two-dimensional transition metal dichalcogenides (TMDs)-based memristors are promising candidates for realizing artificial synapses in next-generation computing. However, practical implementation faces several challenges, such as high non-linearity and asymmetry in synaptic weight updates, limited dynamic range, and cycle-to-cycle variability. Here, utilizing optimal-power argon plasma treatment, we significantly enhance the performance matrix of memristors fabricated from monolayer MoS2. Our approach not only improves linearity and symmetry in synaptic weight updates but also increases the number of available synaptic weight updates and enhances Spike-Time Dependent Plasticity. Notably, it broadens the switching ratio by two orders, minimizes cycle-to-cycle variability, reduces non-linear factors, and achieves an energy consumption of similar to 30 fJ per synaptic event. Implementation of these enhancements is demonstrated through Artificial Neural Network simulations, yielding a learning accuracy of similar to 97% on the MNIST hand-written digits dataset. Our findings underscore the significance of defect engineering as a powerful tool in advancing the synaptic functionality of memristors.
Keywords:
2-DIMENSIONAL MATERIALS
SYNAPSES
MEMTRANSISTORS
STOICHIOMETRY
ELECTRONICS
HYSTERESIS
ORIGIN
DEVICE
END

Journal

C
Communications Materials
IF:
9.6
Papers:
1.4K
Citations:
4.3K

Organization

I
institute of physics bhubaneswar (iopb)
Scholars:
871
Papers: 1.0K
Citations: 1
U
united states department of energy (doe)
Scholars:
11.3W
Papers: 9.6W
Citations: 246
researcher View more organizations