Advancements in Complementary Metal-Oxide Semiconductor-Compatible Tunnel Barrier Engineered Charge-Trapping Synaptic Transistors for Bio-Inspired Neural Networks in Harsh Environments
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Lee, D.-H.; Park, H.; Cho, W.-J. Advancements in Complementary Metal-Oxide Semiconductor-Compatible Tunnel Barrier Engineered Charge-Trapping Synaptic Transistors for Bio-Inspired Neural Networks in Harsh Environments. Biomimetics 2023, 8, 506. https://doi.org/10.3390/biomimetics8060506
Lee D-H, Park H, Cho W-J. Advancements in Complementary Metal-Oxide Semiconductor-Compatible Tunnel Barrier Engineered Charge-Trapping Synaptic Transistors for Bio-Inspired Neural Networks in Harsh Environments. Biomimetics. 2023; 8(6):506. https://doi.org/10.3390/biomimetics8060506
Chicago/Turabian StyleLee, Dong-Hee, Hamin Park, and Won-Ju Cho. 2023. "Advancements in Complementary Metal-Oxide Semiconductor-Compatible Tunnel Barrier Engineered Charge-Trapping Synaptic Transistors for Bio-Inspired Neural Networks in Harsh Environments" Biomimetics 8, no. 6: 506. https://doi.org/10.3390/biomimetics8060506
APA StyleLee, D.-H., Park, H., & Cho, W.-J. (2023). Advancements in Complementary Metal-Oxide Semiconductor-Compatible Tunnel Barrier Engineered Charge-Trapping Synaptic Transistors for Bio-Inspired Neural Networks in Harsh Environments. Biomimetics, 8(6), 506. https://doi.org/10.3390/biomimetics8060506

