🗊 Презентация Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements

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Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №1 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №2 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №3 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №4 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №5 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №6 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №7 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №8 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №9 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №10 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №11 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №12 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №13 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №14 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №15 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №16 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №17 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №18 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №19 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №20 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №21 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №22 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №23 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №24 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №25 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №26 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №27 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №28 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №29 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №30 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №31 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №32 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №33 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №34 Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №35

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Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №1
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Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №12
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ELECTROCHROMIC CYCLOVOLTAMMOGRAMM
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ELECTROCHROMIC CYCLOVOLTAMMOGRAMM

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SPECTROELECTROCHEMISTRY MEASUREMENTS
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SPECTROELECTROCHEMISTRY MEASUREMENTS

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Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №15
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PANI FILM-THROUGH CONDUCTIVITY MEASUREMENT
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PANI FILM-THROUGH CONDUCTIVITY MEASUREMENT

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Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №17
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Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №18
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MEMRISTIVE EFFECT MOVIE
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MEMRISTIVE EFFECT MOVIE

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Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №24
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CONCLUSIONS Polymer electrochemistry is a complicated matter Polyaniline-based memristor operating mechanism is determined by change of Red-Ox states...
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CONCLUSIONS Polymer electrochemistry is a complicated matter Polyaniline-based memristor operating mechanism is determined by change of Red-Ox states of PANi Probably TiO2, VOx memristors operation is similar. It is not clear why PANi-Nafion films do not change Red-Ox states It is possible to make simple neural networks based on PANi

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Stability at 55oC
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Stability at 55oC

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Discharge to short circuit
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Discharge to short circuit

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Discharge to 3 Ohm
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Discharge to 3 Ohm

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I-V curve at 40 C
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I-V curve at 40 C

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Impedance at 40 C
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Impedance at 40 C

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Results of approximation of equivalent circuit
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Results of approximation of equivalent circuit

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Resistive switch Red-Ox behavior as mechanism behind the operation of polyaniline memristors and neural network elements, слайд №35
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