Física de Materiales
Departamento
José Pedro
Santos Blanco
Publicaciones en las que colabora con José Pedro Santos Blanco (17)
2018
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Gas sensors based on elasticity changes of nanoparticle layers
Sensors and Actuators, B: Chemical, Vol. 268, pp. 93-99
2017
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Love wave toluene sensor based on multi-guiding layers
2017 Spanish Conference on Electron Devices, CDE 2017
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Sensors and Systems for Environmental Monitoring and Control
Journal of Sensors
2015
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Liquid characterization by means of Love-wave device combined with microfluidic platform
Proceedings of the 2015 10th Spanish Conference on Electron Devices, CDE 2015
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Propagation of acoustic waves in metal oxide nanoparticle layers with catalytic metals for selective gas detection
Sensors and Actuators, B: Chemical, Vol. 217, pp. 65-71
2014
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Cascade of Artificial Neural Network committees for the calibration of small gas commercial sensors for NO2, NH3 and CO
Proceedings of IEEE Sensors
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Characterization of an array of Love-wave gas sensors developed using electrospinning technique to deposit nanofibers as sensitive layers
Talanta, Vol. 120, pp. 408-412
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Love-wave sensors combined with microfluidics for fast detection of biological warfare agents
Sensors (Switzerland), Vol. 14, Núm. 7, pp. 12658-12669
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Nanocrystalline tin oxide nanofibers deposited by a novel focused electrospinning method. Application to the detection of TATP precursors
Sensors (Switzerland), Vol. 14, Núm. 12, pp. 24231-24243
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Real-time characterization of electrospun PVP nanofibers as sensitive layer of a surface acoustic wave device for gas detection
Journal of Nanomaterials, Vol. 2014
2013
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Comparison of two types of acoustic biosensors to detect immunoreactions: Love-wave sensor working in dynamic mode and QCM working in static mode
Sensors and Actuators, B: Chemical, Vol. 189, pp. 123-129
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Detection of bacteriophages in dynamic mode using a Love-wave immunosensor with microfluidics technology
Sensors and Actuators, B: Chemical, Vol. 185, pp. 218-224
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Microfluidics applied to Love-wave devices to detect biological warfare agents in dynamic mode
Proceedings of the 2013 Spanish Conference on Electron Devices, CDE 2013
2012
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Comparative evaluation between two acoustic immunosensors: Love-wave and QCM, and systems of measurement: Dynamic and static
Procedia Engineering
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Love-wave sensor array to detect, discriminate and classify chemical warfare agent simulants
Sensors and Actuators, B: Chemical, Vol. 175, pp. 173-178
2011
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Discrimination and classification of chemical warfare agent simulants using a Love-wave sensor array
Procedia Engineering
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Single-walled carbon nanotube microsensors for nerve agent simulant detection
Sensors and Actuators, B: Chemical, Vol. 157, Núm. 1, pp. 253-259