2021
DOI: 10.1002/pol.20210502
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Neuromorphic bioelectronics based on semiconducting polymers

Abstract: The recent development of neuromorphic devices with low power consumption and rapid response has been driven primarily by the growing demand for braininspired computing in human-like machines and human-machine interfaces. Remarkable progress has been made in developing neuromorphic bioelectronics that combine neuromorphic devices with electronic sensors. In this review, we provide an overview of semiconducting polymer-based neuromorphic devices and their applications in neuromorphic bioelectronics. We focus on… Show more

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Cited by 25 publications
(20 citation statements)
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“…7–17 Among the plethora of applications, in this section, the discussion will focus on two crucial applications, there are multilevel storage memory cells 7,8 and artificial synapses 10,11 due to the similarity of working principle utilization; 91 for other fascinating and feasible applications based on photonic memory devices can be found in the recent reports and literature reviews. 20,30,44,50,92–97…”
Section: Potential Applications Benefitted From Transistor Photomemor...mentioning
confidence: 99%
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“…7–17 Among the plethora of applications, in this section, the discussion will focus on two crucial applications, there are multilevel storage memory cells 7,8 and artificial synapses 10,11 due to the similarity of working principle utilization; 91 for other fascinating and feasible applications based on photonic memory devices can be found in the recent reports and literature reviews. 20,30,44,50,92–97…”
Section: Potential Applications Benefitted From Transistor Photomemor...mentioning
confidence: 99%
“…60 Knowing these parameters for the photosynaptic transistor-based device is essential. In the latter paragraph, the progress of photosynaptic transistors will be elaborated on the latest reports found in the literature which are not limited to the use of photoactive organics/polymers, 97,130,131 but also hybrid-inorganics and other potential photoactive materials. 115,118,119,121,132…”
Section: Potential Applications Benefitted From Transistor Photomemor...mentioning
confidence: 99%
“…Following, we choose several example materials to demonstrate their main features that suit biointegrated applications. [8,15] In the last a few decades-given the technological advances and the increasing thirst to find green materials to interface with different biological environments in the human body-various flexible natural materials have been used in the bio-integrated sensing fields. As shown in Figure 2 and Table 1, those materials have shown robust advances in several aspects, such as mechanical flexibility, biocompatibility, and nontoxic biodegradation, which are difficult to simultaneously find in other conventional synthetic materials.…”
Section: Materials Requirements For Bissmentioning
confidence: 99%
“…Following, we choose several example materials to demonstrate their main features that suit bio‐integrated applications. [ 8,15 ]…”
Section: Building Requirements For Bissmentioning
confidence: 99%
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