Proteotronics : development of protein-based electronics /: development of protein-based electronics. (2015)
- Record Type:
- Book
- Title:
- Proteotronics : development of protein-based electronics /: development of protein-based electronics. (2015)
- Main Title:
- Proteotronics : development of protein-based electronics
- Further Information:
- Note: Eleonora Alfinito, Jeremy Pousset and Lino Reggiani.
- Authors:
- Alfinito, E
Pousset, Jeremy
Reggiani, L (Lino), 1941- - Contents:
- Preface Introduction General on Proteins Structural Properties Structure Levels Protein Folding Experimental Techniques to Investigate Structure and Functions of Proteins Classification of Proteins Sensing Proteins Type-One Opsins G-Protein Coupled Receptors GPCR Activation Models Structure and Sensing Action Electrical Characterization Main Properties of Investigated Proteins Electrical Properties: Experiments General Electrochemical Impedance Spectroscopy Model Lipid Bilayer Immobilization of GPCRs Experimental Results Carbon Nanotube Field-Effect-Transistor Metal-Protein-Metal Structure: Thin Film Technique Metal-Protein-Metal Structure: Nanolayer Technique Atomic Force Microscopy Technique Electrical Properties: Theory Theoretical Model Impedance Random Network Electrical Properties of a Single Protein Network Properties of the Protein Under Test Calculation of a Single-Protein Molecular Volume Conformational Process: General Conformation Process: Coordinate Model Conformation Process: Length Model Topological Investigation Resistance and Impedance Spectrum Random Fluctuations in the Impedance Network Dynamic Fluctuations of the Impedance Network: Oscillator Models Classical Harmonic Oscillator Link oscillation model Node Oscillation Model Results on Average Quantities Variance of Impedance Fluctuations Quantum Harmonic Oscillator Current-Voltage Characteristics Bacteriorhodopsin as Testing Prototype Modeling Topological Properties Current–Voltage Characteristics ScalingPreface Introduction General on Proteins Structural Properties Structure Levels Protein Folding Experimental Techniques to Investigate Structure and Functions of Proteins Classification of Proteins Sensing Proteins Type-One Opsins G-Protein Coupled Receptors GPCR Activation Models Structure and Sensing Action Electrical Characterization Main Properties of Investigated Proteins Electrical Properties: Experiments General Electrochemical Impedance Spectroscopy Model Lipid Bilayer Immobilization of GPCRs Experimental Results Carbon Nanotube Field-Effect-Transistor Metal-Protein-Metal Structure: Thin Film Technique Metal-Protein-Metal Structure: Nanolayer Technique Atomic Force Microscopy Technique Electrical Properties: Theory Theoretical Model Impedance Random Network Electrical Properties of a Single Protein Network Properties of the Protein Under Test Calculation of a Single-Protein Molecular Volume Conformational Process: General Conformation Process: Coordinate Model Conformation Process: Length Model Topological Investigation Resistance and Impedance Spectrum Random Fluctuations in the Impedance Network Dynamic Fluctuations of the Impedance Network: Oscillator Models Classical Harmonic Oscillator Link oscillation model Node Oscillation Model Results on Average Quantities Variance of Impedance Fluctuations Quantum Harmonic Oscillator Current-Voltage Characteristics Bacteriorhodopsin as Testing Prototype Modeling Topological Properties Current–Voltage Characteristics Scaling and Universality of High-Field Conductance in Bacteriorhodopsin Monolayers Global Quantities Generalized Gumbel Distributions Discussion Conclusion Survey of Other Proteins Proteorhodopsin Modeling Topological Properties Experiments A Comparative Analysis of Proteorhodopsin and Bacteriorhodopsin Electrical Properties Protein Resistance Small-signal electrical properties Current–voltage characteristics Conclusion Bovine Rhodopsin Modeling Engineering of Bovine Rhodopsin Spatial Structure Small-Signal Electrical Properties Current–Voltage Characteristics Conclusion Rat OR-I7 Modeling Topological Properties Small-Signal Electrical Properties Current–Voltage Characteristics Conclusion Human OR 17-40 Modeling Topological Properties Protein Resistance Small-Signal Electrical Properties Conclusion OR 7D4 Modeling Topological Properties Protein Resistance Small-Signal Electrical Properties Conclusion Human OR 2AG1 Modeling Topological Properties Protein Resistance Small-Signal Electrical Properties Conclusion Canine Cf OR 5269 Modeling Topological Properties Protein Resistance Small-Signal Electrical Properties Conclusion Azurin Modeling Topological Properties Protein Resistance Current–Voltage Characteristics Conclusion AChE Modeling Topological Properties Small-Signal Electrical Properties Conclusion Conclusion and Perspectives Appendix: Computational Details Calculation of Small-Signal Impedance Spectrum Analysis of the Protein Equivalent Circuit Obtained from Calculations of Bovinerhodopsin and AChE Calculations of Intrinsic Fluctuations of the Single-Protein Impedance Due to the Presence of Defects Calculations of Intrinsic Fluctuations of the Single-Protein Impedance due to Thermal Fluctuations Calculations of Static High-Field Current–Voltage Characteristics Inclusion of the Fowler–Nordheim Tunneling Mechanism List of acronyms Bibliography Index … (more)
- Edition:
- 1st
- Publisher Details:
- Singapore : Pan Stanford Publishing
- Publication Date:
- 2015
- Extent:
- 1 online resource
- Subjects:
- 621.381
Electronics -- Materials
Protein engineering - Languages:
- English
- ISBNs:
- 9789814613644
- Related ISBNs:
- 9789814613637
- Notes:
- Note: Description based on CIP data; item not viewed.
- Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.138293
- Ingest File:
- 02_156.xml