Computational Methods for Sensor Material Selection /

Bibliographic Details
Corporate Author: SpringerLink (Online service)
Other Authors: Ryan, Margaret A. (Editor), Shevade, Abhijit V. (Editor), Taylor, Charles J. (Editor), Homer, M. L. (Editor), Blanco, Mario. (Editor), Stetter, Joseph R. (Editor)
Format: eBook
Language:English
Published: New York, NY : Springer New York : Imprint: Springer, 2010.
Edition:1st ed. 2010.
Series:Integrated Analytical Systems,
Subjects:
Table of Contents:
  • First Principles Methods For Materials Evaluation
  • Introduction: Experimental Methods in Chemical Sensor and Sensor Array Evaluation and Development
  • Electromechanical and Chemical Sensing at the Nanoscale: DFT and Transport Modeling
  • Quantum Mechanics and First-Principles Molecular Dynamics Selection of Polymer Sensing Materials
  • Prediction of Quartz Crystal Microbalance Gas Sensor Responses Using Grand Canonical Monte Carlo Method
  • Computer-Aided Design of Organic Host Architectures for Selective Chemosensors
  • First Principles Molecular Modeling of Sensing Material Selection for Hybrid Biomimetic Nanosensors
  • Statistical And Multivariate Methods For Materials Evaluation
  • Development of New Sensing Materials Using Combinatorial and High-Throughput Experimentation
  • Chemical Sensor Array Response Modeling Using Quantitative Structure-Activity Relationships Technique
  • Design and Information Content of Arrays of Sorption-Based Vapor Sensors Using Solubility Interactions and Linear Solvation Energy Relationships
  • Designing Sensing Arrays
  • A Statistical Approach to Materials Evaluation and Selection for Chemical Sensor Arrays
  • Statistical Methods for Selecting the Components of a Sensing Array
  • Hybrid Arrays for Chemical Sensing
  • Future Directions
  • Future Directions.