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Organosilicon compounds --- Organometallic compounds. --- Polysilanes --- Polysiloxanes --- Silanes --- Silicon compounds
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Silane. --- Silane compounds. --- Hydrosilicons --- Silanes --- Silicans --- Silicohydrides --- Silicon hydrides --- Silicon compounds --- Hydrides --- Monosilane --- Silicohydride --- Silicomethane --- Silicon tetrahydride --- Silane compounds
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An important new technology, biosensors are made from biomolecules or cells which are immobilized but retain their functionality. This book is an up-to-date collection of reliable methods for immobilizing biomolecules. It includes techniques for measuring the functionality of biomolecules.
Analytical biochemistry --- Biosensors --- Immobilized ligands (Biochemistry) --- Ligand binding (Biochemistry) --- BIOCOMPATIBLE MATERIALS --- SILANES --- AVIDIN --- BIOTIN --- POLYMERS --- BIOSENSORS --- IMMOBILIZED LIGANDS (BIOCHEMISTRY) --- LIGAND BINDING (BIOCHEMISTRY) --- LABORATORY MANUALS
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Plastics --- Silane compounds --- Matières plastiques --- Matières plastiques --- Hydrosilicons --- Silanes --- Silicans --- Silicohydrides --- Silicon hydrides --- Silicon compounds --- Hydrides --- Plastic materials --- Plastic products --- Polymers --- Synthetic products --- Condensation products (Chemistry) --- Elastomers --- Plasticity
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Biosensors. --- Organosilicon compounds. --- Silane compounds. --- Hydrosilicons --- Silanes --- Silicans --- Silicohydrides --- Silicon hydrides --- Silicon compounds --- Hydrides --- Silicon organic compounds --- Organic compounds --- Biodetectors --- Biological detectors --- Biological sensors --- Biomedical detectors --- Biomedical sensors --- Detectors --- Medical instruments and apparatus --- Physiological apparatus
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This book entitled “Protein Crystallization under the Presence of an Electric Field” covers recent trends and original contributions on the use of electric fields (internal and external) for applications for nucleation control and the effect on the kinetics of crystallization processes. This book also includes basic strategies for growing crystals of biological macromolecules for characterization via X-ray and neutron diffraction as well as using modern X-ray-free electron-lasers. There are six main topics covered on this book, including recent insights into the crystallization process from nucleation and growth peculiarities, when using different kinds of electric fields; the effect of external electric fields on the kinetics of the dislocation-free growth of model proteins; the use of very strong external electric fields for the crystallization of a model protein glucose isomerase; and the use of alternant electric fields using different kinds of pulses and their combination with strong magnetic fields. There are also contributions related to applications in developing electron-transfer devices as well as graphene-based platforms for electrocrystallization and in situ X-ray diffraction characterization.
porous silicon --- silanes --- microbatch method --- growth kinetics --- impact of electric fields on the protein crystallization --- cytochrome C nucleation and crystallization --- protein infiltration --- I–V characteristics --- electric fields --- number density --- protein crystallization --- protein crystals --- electron-transfer biomolecular devices --- external DC electric field --- classical and two-step nucleation mechanisms --- macromolecular crystallography --- in situ diffraction --- external and internal electric fields --- size and quality of protein crystals --- lysozyme --- magnetic fields --- electrical properties --- gel-growth --- crystal growth in solution --- electric field --- pulse-wave --- crystal quality --- crystallization --- serial crystallography --- microfluidics --- electrocrystallization
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