[HTML][HTML] Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots

Z Xin, Y Tan, T Chen, E Iranmanesh, L Li… - Nanoscale …, 2021 - pubs.rsc.org
Neuromorphic vision sensors are designed to mimic the human visual system, which allows
image recognition with low power computational requirements. Photonic synaptic devices …

[PDF][PDF] Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots

Z Xin, Y Tan, T Chen, E Iranmanesh, L Li, KC Chang… - 2021 - researchgate.net
Neuromorphic vision sensors are designed to mimic the human visual system, which allows
image recognition with low power computational requirements. Photonic synaptic devices …

Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots

Z Xin, Y Tan, T Chen, E Iranmanesh… - Nanoscale …, 2021 - pubmed.ncbi.nlm.nih.gov
Neuromorphic vision sensors are designed to mimic the human visual system, which allows
image recognition with low power computational requirements. Photonic synaptic devices …

Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots.

Z Xin, Y Tan, T Chen, E Iranmanesh, L Li… - Nanoscale …, 2021 - europepmc.org
Neuromorphic vision sensors are designed to mimic the human visual system, which allows
image recognition with low power computational requirements. Photonic synaptic devices …

[HTML][HTML] Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots

Z Xin, Y Tan, T Chen, E Iranmanesh, L Li… - Nanoscale …, 2021 - ncbi.nlm.nih.gov
Neuromorphic vision sensors are designed to mimic the human visual system, which allows
image recognition with low power computational requirements. Photonic synaptic devices …

[PDF][PDF] Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots

Z Xin, Y Tan, T Chen, E Iranmanesh, L Li, KC Chang… - 2021 - pdfs.semanticscholar.org
Neuromorphic vision sensors are designed to mimic the human visual system, which allows
image recognition with low power computational requirements. Photonic synaptic devices …

Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots

Z Xin, Y Tan, T Chen, E Iranmanesh, L Li… - Nanoscale …, 2021 - ui.adsabs.harvard.edu
The detected wavelength of perovskite quantum dots embedded in IGZO TFT can be tuned
by replacing the quantum dot halogen ions. It is expected that a color-distinguishable …

Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots

Z Xin, Y Tan, T Chen, E Iranmanesh, L Li, KC Chang… - Nanoscale …, 2021 - Elsevier
Neuromorphic vision sensors are designed to mimic the human visual system, which allows
image recognition with low power computational requirements. Photonic synaptic devices …

[PDF][PDF] Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots

Z Xin, Y Tan, T Chen, E Iranmanesh, L Li, KC Chang… - 2021 - researchgate.net
Neuromorphic vision sensors are designed to mimic the human visual system, which allows
image recognition with low power computational requirements. Photonic synaptic devices …

Visible-light-stimulated synaptic InGaZnO phototransistors enabled by wavelength-tunable perovskite quantum dots.

Z Xin, Y Tan, T Chen, E Iranmanesh, L Li… - Nanoscale …, 2021 - europepmc.org
Neuromorphic vision sensors are designed to mimic the human visual system, which allows
image recognition with low power computational requirements. Photonic synaptic devices …