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Cited 2 time in webofscience Cited 3 time in scopus
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Inorganic p-Type Tellurium-Based Synaptic Transistors: Complementary Synaptic Pairs with n-Type Devices for Energy-Efficient Operation

Authors
Lee, Seung MinPark, Ji-MinAhn, SuhyeonJang, Seong CheolKim, HyungjinKim, Hyun-Suk
Issue Date
Jul-2024
Publisher
American Chemical Society
Keywords
thin film; tellurium; oxide gatedielectric; high-k dielectric constant; synaptictransistors; neuromorphic computing
Citation
ACS Applied Electronic Materials, v.6, no.7, pp 5371 - 5378
Pages
8
Indexed
SCIE
SCOPUS
Journal Title
ACS Applied Electronic Materials
Volume
6
Number
7
Start Page
5371
End Page
5378
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/26250
DOI
10.1021/acsaelm.4c01027
ISSN
2637-6113
2637-6113
Abstract
Neuromorphic computing is a rapidly emerging technology that can overcome the limitations of von Neumann-type architecture-based computing systems, offering the potential for implementing next-generation computing architectures. Here, we propose a p-type three-terminal synaptic device that successfully mimics the function of biological synapses. The proposed tellurium (Te) synaptic transistors incorporating SiO2 or Al2O3 gate dielectric layers modulate the synaptic weight-that is, the channel conductance-essential for realizing synaptic characteristics. Synaptic devices with optimal Al2O3 layers exhibit large hysteresis properties that efficiently induce conductance modulation, demonstrating low power consumption, good linearity, and short-/long-term plasticity. Furthermore, the proposed optimal Te synaptic transistor achieved a high recognition accuracy of 93.8%. These findings suggest that Te-based synaptic devices fabricated utilizing thin-film processes could enhance the efficiency of future neuromorphic computing systems.
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