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Sensors Based on Nanostructured Materials [electronic resource] / edited by Francisco J. Arregui.

Por: Colaborador(es): Tipo de material: TextoTextoEditor: Boston, MA : Springer US : Imprint: Springer, 2009Descripción: online resourceTipo de contenido:
  • text
Tipo de medio:
  • computer
Tipo de soporte:
  • online resource
ISBN:
  • 9780387777535
  • 99780387777535
Tema(s): Formatos físicos adicionales: Printed edition:: Sin títuloClasificación CDD:
  • 620.11 23
Recursos en línea:
Contenidos:
Carbon Nanotube and Fullerene Sensors -- Non-carbon Nanotubes: Hydrogen Sensors Based on TiO2 -- Alternative Nanostructured Sensors: Nanowires, Nanobelts, and Novel Nanostructures -- Nanosensors: Controlling Transduction Mechanisms at the Nanoscale Using Metal Oxides and Semiconductors -- Quantum Dots for Sensing -- Nanostructured Magnetic Sensors -- Encapsulated Probes -- Optical Fiber Sensors Based on Nanostructured Coatings -- Nanostructured Flexible Materials: Metal Rubber™ Strain Sensors.
En: Springer eBooksResumen: Sensors Based on Nanostructured Materials presents the many different techniques and methods of fabricating materials on the nanometer scale and specifically, the utilization of these resources with regard to sensors. The techniques which are described here are studied from an application-oriented perspective, providing the reader with a broader view of the types of nanostructured sensors available. The material covered includes: Sensors based on carbon nanotubes and fullerenes Non-carbon nanotubes arrays Nanowires, nanocombs, nanobelts, nanorods, nanoswords and nanosquids Metal oxides and semiconductors: nanotemplates, nanowires and nanocrystals Quantum Dots Nanostructured magnetic sensors Encapsulated probes Optical fiber sensors based on nanostructured coatings Nanostructured sensors on flexible substrates Some of the sensing applications described in the 10 chapters of this book are: temperature, pressure, strain, radiation, flow, magnetic fields, gases, volatile organic compounds, ions, chemicals, biosensors, immunoassays, DNA detection, biological recognition, glucose, enzymatic detection, cell detection, magnetic resonance imaging (MRI) and others. Sensors Based on Nanostructures Materials is suitable for academic and industrial research scientists as well as engineers.
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Item type Current library Collection Call number Status Date due Barcode
Libros electrónicos Libros electrónicos CICY Libro electrónico Libro electrónico 620.11 (Browse shelf(Opens below)) Available

Carbon Nanotube and Fullerene Sensors -- Non-carbon Nanotubes: Hydrogen Sensors Based on TiO2 -- Alternative Nanostructured Sensors: Nanowires, Nanobelts, and Novel Nanostructures -- Nanosensors: Controlling Transduction Mechanisms at the Nanoscale Using Metal Oxides and Semiconductors -- Quantum Dots for Sensing -- Nanostructured Magnetic Sensors -- Encapsulated Probes -- Optical Fiber Sensors Based on Nanostructured Coatings -- Nanostructured Flexible Materials: Metal Rubber™ Strain Sensors.

Sensors Based on Nanostructured Materials presents the many different techniques and methods of fabricating materials on the nanometer scale and specifically, the utilization of these resources with regard to sensors. The techniques which are described here are studied from an application-oriented perspective, providing the reader with a broader view of the types of nanostructured sensors available. The material covered includes: Sensors based on carbon nanotubes and fullerenes Non-carbon nanotubes arrays Nanowires, nanocombs, nanobelts, nanorods, nanoswords and nanosquids Metal oxides and semiconductors: nanotemplates, nanowires and nanocrystals Quantum Dots Nanostructured magnetic sensors Encapsulated probes Optical fiber sensors based on nanostructured coatings Nanostructured sensors on flexible substrates Some of the sensing applications described in the 10 chapters of this book are: temperature, pressure, strain, radiation, flow, magnetic fields, gases, volatile organic compounds, ions, chemicals, biosensors, immunoassays, DNA detection, biological recognition, glucose, enzymatic detection, cell detection, magnetic resonance imaging (MRI) and others. Sensors Based on Nanostructures Materials is suitable for academic and industrial research scientists as well as engineers.

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