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Titlebook: Combinatorial Methods for Chemical and Biological Sensors; Radislav A. Potyrailo,Vladimir M. Mirsky Book 2009 Springer-Verlag New York 200

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Combinatorial Development of Chemosensitive Conductive Polymersber of different physical and chemical factors. Application of combinatorial and high-throughput techniques to development and optimization of chemo and biosensors is reviewed. Methods for addressable synthesis of conductive polymers and protocols for comprehensive description of chemosensitive properties are discussed.
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Securing spatial terrain slopes, thermal devices. Review of chemical sensors includes various types of gas sensitive devices, potentiometric and amperometric sensors, and quartz microbalance applications. Mechanisms of biorecognition employed in biosensors are reviewed with the method of immobilization used. Some examples of biomi
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Mathcad Worksheet for Chapter 6rmaceutical (high-throughput) screening, medical diagnosis, or industrial process control. One of the major challenges for material research is the preparation of appropriate sensor surfaces, providing an interface with a high sensitivity and selectivity toward a given analyte. This chapter discusse
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Mathcad Worksheet for Chapter 10 the high-throughput screening experiments, we have found that when CdSe nanocrystals of different size (2.8 and 5.6 nm diameter) were incorporated into different types of polymer films, the photoluminescence (PL) response patterns upon laser excitation at 407-nm and exposure to polar and nonpolar s
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Mathcad Worksheet for Chapter 8ognition. Although there have been numerous publications on the use of molecular modeling in characterization of their affinity and selectivity, very few attempts have been made on the application of molecular modeling in computational design of synthetic receptors. This chapter discusses recent suc
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https://doi.org/10.1007/978-3-031-61605-1viewed. Various techniques to screen for binding and imprinting effects are discussed with reference to the application for which the sorbents are intended. State of the art high throughput synthesis techniques are outlined, and examples of how these have been used to identify suitable polymer build
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