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Biblioteca

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https://www.imb-cnm.csic.es/en/news-outreach/library

Library

Logo Red BibliotecasThe IMB-CNM library collection is specialized

https://www.imb-cnm.csic.es/en/news-outreach/library

Biblioteca

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https://www.imb-cnm.csic.es/en/news-outreach/library

Automated Determination of As(III) in Waters with an Electrochemical Sensor Integrated into a Modular Microfluidic System

  • Development of a robust electrochemical sensor integrated into a modular microfluidic system with the potential for on-site monitoring of inorganic As(III) species.
  • Microfluidic system enabling the automatic sensor calibration, sample uptake, sample preconditioning and eventual A
https://www.imb-cnm.csic.es/en/node/250

A self-calibrating and multiplexed electrochemical lab-on-a-chip for cell culture analysis and high-resolution imaging

This paper presents a new tool that allows a self-calibrating and multiplexed electrochemical lab-on-a-chip (ME-LoC) for cell culture analysis and high-resolution imaging.

https://www.imb-cnm.csic.es/en/node/251

Impedimetric transducers based on interdigitated electrode arrays for bacterial detection

This review is focused on publications dealing with interdigitated electrodes as a transducer unit and different bacteria detection systems using these devices.

https://www.imb-cnm.csic.es/en/node/252

Power module electronics in HEV/EV applications: New trends in wide ban-dgap semiconductor technologies and design aspects

This paper presents an in-deep review of the state of the art concerning power modules, identifying the electrical requirements for the modules and the power conversion topologies that will best suit future HEV/EV drives.

https://www.imb-cnm.csic.es/en/node/253

Growth Monitoring With Submonolayer Sensitivity Via Real-Time Thermal-Conductance Measurements

Growth monitoring during the early stages of vapor deposition is of prime importance to understand the growth process, the microstructure, and thus the overall layer properties.

https://www.imb-cnm.csic.es/en/node/254

Electric Field Gradients and Bipolar Electrochemistry effects on Neural Growth: A finite element study on immersed electroactive conducting electrode materials

Implantable electrodes act with direct electrical contact although recent work has shown that electrostimulation is also possible through non-contact wireless settings, through the generation of dipoles at the borders of the material by bipolar electrochemistry.

https://www.imb-cnm.csic.es/en/node/255

ND4ID: New Diagnostics for Infectious Diseases

https://www.imb-cnm.csic.es/en/node/256