2016
DOI: 10.1038/srep27007
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Orientation selectivity in a multi-gated organic electrochemical transistor

Abstract: Neuromorphic devices offer promising computational paradigms that transcend the limitations of conventional technologies. A prominent example, inspired by the workings of the brain, is spatiotemporal information processing. Here we demonstrate orientation selectivity, a spatiotemporal processing function of the visual cortex, using a poly(3,4ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS) organic electrochemical transistor with multiple gates. Spatially distributed inputs on a gate electrode array … Show more

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Cited by 81 publications
(76 citation statements)
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(42 reference statements)
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“…When compared to the maximum amplitude I 0 , MAX , I 0 decreases up to 30% for the highest gate-drain distance at coordinates (x = 3, y = 3). Similarly with the case of a multi-gated OECT (with voltage inputs), 24 the amplitude I 0 displays a spatial inhomogeneity towards the drain electrode. This behaviour is attributed to the decrease of the electrolyte resistance as the distance between the gate-drain is decreased, which results in an enhancement of the transient current of the channel for smaller gate-drain distances.…”
Section: Electronics © 2016 Author(s) All Article Content Except Wmentioning
confidence: 99%
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“…When compared to the maximum amplitude I 0 , MAX , I 0 decreases up to 30% for the highest gate-drain distance at coordinates (x = 3, y = 3). Similarly with the case of a multi-gated OECT (with voltage inputs), 24 the amplitude I 0 displays a spatial inhomogeneity towards the drain electrode. This behaviour is attributed to the decrease of the electrolyte resistance as the distance between the gate-drain is decreased, which results in an enhancement of the transient current of the channel for smaller gate-drain distances.…”
Section: Electronics © 2016 Author(s) All Article Content Except Wmentioning
confidence: 99%
“…28,29 An "electrical" analogue of orientation selectivity was previously reported with a multi-gated OECT, in which a spatially oriented input voltage, was selectively correlated with the output of the transistor. 24 In this work we demonstrate an optoelectronic device platform that displays selectivity with respect to input light bars of different orientations, in analogy to the visual cortex cells. These results demonstrate the potential of organic neuromorphic devices for introducing spatial concepts in processing and sensing.…”
Section: Electronics © 2016 Author(s) All Article Content Except Wmentioning
confidence: 99%
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