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physics.app-ph2024

Transient current responses of organic electrochemical transistors: Evaluating ion diffusion, chemical capacitance, and series elements

Juan Bisquert, Nir Tessler

For the successful implementation of organic electrochemical transistors in neuromorphic computing, bioelectronics, and real-time sensing applications it is essential to understand…

physics.app-ph2024

Relaxation Time of Multipore Nanofluidic Memristors for Neuromorphic Applications

Agustin Bou, Patricio Ramirez, Juan Bisquert

Memristors have been positioned at the forefront of the purposes for carrying out neuromorphic computation. Their tuneable conductivity properties enable the imitation of synaptic…

physics.app-ph2024

A biology-inspired model for the electrical response of solid state memristors

Agustin Bou, Cedric Gonzales, Pablo P. Boix +2

Memristors stand out as promising components in the landscape of memory and computing. Memristors are generally defined by a conductance equation containing a state variable that i…

physics.app-ph2024

Evolution of performance parameters of perovskite solar cells with current-voltage scan frequency

Enrique H. Balaguera, Juan Bisquert

Current-voltage measurements are a standard testing protocol to determine the efficiency of any solar cell. However, perovskite solar cells display significant kinetic phenomena th…

physics.app-ph2024

Switching response and ionic hysteresis in organic electrochemical transistors

Juan Bisquert, Baurzhan Ilyassov, Nir Tessler

Hysteresis in organic electrochemical transistors (OECT) is a basic effect in which the measured current depends on the voltage sweep direction and velocity. This phenomenon has an…