10 research outputs found

    Electro-grafted organic memristors: Properties and prospects for artificial neural networks based on STDP

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    International audienceThe capabilities of memristors to serve as artificial synapses in neural network type of circuits have been recently recognized. These two-terminal analog memory devices offer valuable advantages in terms of circuit architectures. In particular, with their room temperature processes and large diversity coming from chemistry, organic memristors represent a chance to develop devices that can be densely integrated above-IC. In this article, we present a new class of organic resistive memory based on a robust electrografted redox thin film as active material integrated in a planar metal/organic/metal topology. The combination of a specific redox polymer and of the electro-grafting technique leading to fully covalent films makes such organic memristors particularly robust. The devices display high RMAX/RMIN ratio, long retention time and multi-level conductivity. The potential of these devices to store analog synaptic weights in neural network circuit strategies is shown by demonstrating their compatibility with the Spike Timing Dependence Plasticity (STDP) learning rule and by implementing the associative memory function

    3,4-Ethylenedioxythiophene-based cobalt complex: An efficient co-mediator in dye-sensitized solar cells with poly(3,4-ethylenedioxythiophene) counter-electrode

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    © 2015 Elsevier Ltd. All rights reserved. A mixture of Co(phen)3+/2+ and Co(EtPy)3+/2+ complexes, where EtPy is a terpyridine ligand bearing an 3,4- ethylenedioxythiophene (EDOT) substituent, has been used as redox mediator in dye-sensitized solar cells. This combination of cobalt complexes allows an electron cascade leading to enhanced cell efficiency. To explain this result, we propose a synergy between the EDOT-functionalized cobalt complex and the PEDOT counter-electrode, which favors electron transfer and reduces recombination
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