2D Materials for Surface Plasmon Resonance-based Sensors
portes grátis
2D Materials for Surface Plasmon Resonance-based Sensors
Singh, Yadvendra; Raghuwanshi, Sanjeev Kumar; Kumar, Santosh
Taylor & Francis Ltd
12/2021
316
Dura
Inglês
9781032041421
15 a 20 dias
453
Descrição não disponível.
Chapter 1 Introduction of Plasmons and Plasmonics
Chapter 2 Fundamental Optical Properties of 2D Materials
Chapter 3 Theoretical Design and Analysis of Surface Plasmon Resonance Chemical Sensors Assisted by 2D Materials
Chapter 4 Black Phosphorus: Narrow Gap and Wide Application in SPR Sensors
Chapter 5 MXene as a 2D Material for the Surface Plasmon Resonance Sensing
Chapter 6 Introduction to Carbon Nanotube 2D Layer Assisted by Surface Plasmon Resonance Based Sensor
Chapter 7 Recent Trends of Transition-Metal Dichalcogenides (TMDC) Materials for SPR Sensors
Chapter 8 Application of SPR Sensors for Clinical Diagnosis
Chapter 9 Future Trends of Emerging Materials in SPR Sensing
Chapter 2 Fundamental Optical Properties of 2D Materials
Chapter 3 Theoretical Design and Analysis of Surface Plasmon Resonance Chemical Sensors Assisted by 2D Materials
Chapter 4 Black Phosphorus: Narrow Gap and Wide Application in SPR Sensors
Chapter 5 MXene as a 2D Material for the Surface Plasmon Resonance Sensing
Chapter 6 Introduction to Carbon Nanotube 2D Layer Assisted by Surface Plasmon Resonance Based Sensor
Chapter 7 Recent Trends of Transition-Metal Dichalcogenides (TMDC) Materials for SPR Sensors
Chapter 8 Application of SPR Sensors for Clinical Diagnosis
Chapter 9 Future Trends of Emerging Materials in SPR Sensing
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Black Phosphorus;Mxene;Carbon Nanotubes;Transition Metal Dichalcogenides;Clinical Diagnosis;Plasmonics;SPR Biosensor;Transition Metal;SPR Phenomenon;SPR Sensor;Surface Plasmon;American Chemical Society;SPR;Gas Sensor;Max Phase;Kretschmann Configuration;Fiber Optic SPR Sensor;Pcf;AFM;Metal Dielectric Interface;Angular Interrogation;Mechanical Exfoliation;OSA;SPR Sense Chip;LSPR Sensor;SHM;FBG Sensor;Electrochemical Exfoliation;UV Vis NIR Absorption
Chapter 1 Introduction of Plasmons and Plasmonics
Chapter 2 Fundamental Optical Properties of 2D Materials
Chapter 3 Theoretical Design and Analysis of Surface Plasmon Resonance Chemical Sensors Assisted by 2D Materials
Chapter 4 Black Phosphorus: Narrow Gap and Wide Application in SPR Sensors
Chapter 5 MXene as a 2D Material for the Surface Plasmon Resonance Sensing
Chapter 6 Introduction to Carbon Nanotube 2D Layer Assisted by Surface Plasmon Resonance Based Sensor
Chapter 7 Recent Trends of Transition-Metal Dichalcogenides (TMDC) Materials for SPR Sensors
Chapter 8 Application of SPR Sensors for Clinical Diagnosis
Chapter 9 Future Trends of Emerging Materials in SPR Sensing
Chapter 2 Fundamental Optical Properties of 2D Materials
Chapter 3 Theoretical Design and Analysis of Surface Plasmon Resonance Chemical Sensors Assisted by 2D Materials
Chapter 4 Black Phosphorus: Narrow Gap and Wide Application in SPR Sensors
Chapter 5 MXene as a 2D Material for the Surface Plasmon Resonance Sensing
Chapter 6 Introduction to Carbon Nanotube 2D Layer Assisted by Surface Plasmon Resonance Based Sensor
Chapter 7 Recent Trends of Transition-Metal Dichalcogenides (TMDC) Materials for SPR Sensors
Chapter 8 Application of SPR Sensors for Clinical Diagnosis
Chapter 9 Future Trends of Emerging Materials in SPR Sensing
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Black Phosphorus;Mxene;Carbon Nanotubes;Transition Metal Dichalcogenides;Clinical Diagnosis;Plasmonics;SPR Biosensor;Transition Metal;SPR Phenomenon;SPR Sensor;Surface Plasmon;American Chemical Society;SPR;Gas Sensor;Max Phase;Kretschmann Configuration;Fiber Optic SPR Sensor;Pcf;AFM;Metal Dielectric Interface;Angular Interrogation;Mechanical Exfoliation;OSA;SPR Sense Chip;LSPR Sensor;SHM;FBG Sensor;Electrochemical Exfoliation;UV Vis NIR Absorption