Computational Methods for Sensor Material Selection
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Theory of Charge Transport in Carbon Electronic Materials
Zhigang Shuai, Linjun Wang, Chenchen Song
54.99 €
Part I covers first principles.
Part II focuses on identifying and evaluating candidate sensing materials and covers such topics as calculations of sensor-analyte interactions, statistical and semi-empirical methods based on characteristics of sensing material and analyte, and new experimental methods.
Part III advises on selecting materials for inclusion in arrays by use of statistical methods and algorithm-based methods for evaluating the array response to target analytes.
This book will appeal to researchers in academia and industry involved in chemical vapor sensing and monitoring. Also, it will be of special interest to those who are developing devices based on chemical sensing arrays. Chemical vapor sensing arrays have grown in popularity over the past two decades, finding applications for tasks such as process control, environmental monitoring, and medical diagnosis. This is the first in-depth analysis of the process of choosing materials and components for these "electronic noses", with special emphasis on computational methods. For a view of component selection with an experimental perspective, readers may refer to the complementary volume of Integrated Microanalytical Systems entitled "Combinatorial Methodologies for Sensor Materials."
2. Electromechanical and chemical sensing at the nanoscale: DFT and transport modeling
3. Quantum Mechanics and First-Principles Molecular Dynamics Selection of Polymer Sensing Materials
4. Prediction of quartz crystal microbalance gas sensor responses using Grand Canonical Monte Carlo method
5.Computer-Aided Design of Organic Host Architectures for Selective Chemosensors
6. First Principles Molecular Modeling of Sensing Material Selection for Hybrid Biomimetic Nano-Sensors
7. Development of new sensing materials using combinatorial and high-throughput experimentation
8. Chemical Sensor Array Response Modeling Using Quantitative Structure-Activity Relationships (QSAR) Technique
9. Design and Information Content of Arrays of Sorption-based Vapor Sensors using Solubility Interactions and Linear Solvation Energy Relationships
10. A Statistical Approach to Materials Evaluation and Selection for Chemical Sensor Arrays
11. Statistical Methods for Selecting the Components of a Sensing Array
12.Hybrid Arrays for Chemical Sensing
13. Future directions
- 2009, XV, 319 Seiten, 134 Schwarz-Weiß-Abbildungen, Maße: 16,7 x 24,2 cm, Gebunden, Englisch
- Verlag: Springer Berlin
- ISBN-10: 0387737146
- ISBN-13: 9780387737140
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181.89 €
123.04 €
171.19 €
181.89 €
171.19 €
160.49 €
85.59 €
181.89 €
49.90 €
14.99 €
117.69 €
Statt 34.99 € 19
22.47 €
267.49 €
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