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"This book will present examples of chemical biology approaches that have resulted in the identification of new small chemicals with an impact on plant development and physiology, and give illustrations of how the mode of action is being studied using molecular tools. Although molecular laboratory experiments have a high discovery rate and give very detailed information on the studied processes, the interchange of field studies and that of lab scale investigations is required to narrow down the parameters that determine the effectiveness of biostimulants, something that is of great importance for the successful commercialization of these products. Examples will be given of studies that contribute to closing the gap between the lab and the field. Topics covered include: Introduction to biostimulants. Categories of biostimulants: humic acid and fulvic acid, amino acids and protein hydrolysate, seaweed extracts, chitin/chitosan/oligosaccharides, substances with hormone like activities: Small molecule identification and metabolomics: technology to detect the fate of biostimulants, chemical screens and reporter systems. Biostimulant mode of action. Biostimulant by design: in silico structure prediction. Biostimulants, a practical guide: Examples of commercial biostimulants with more or less known mode of action. The biostimulant business and agricultural scientists are showing an increased interest in investigating the mode of action of biostimulants. This book will help them to get an overview of different aspects of biostimulant research, and provide access to new approaches and methods being developed in the wake of chemical biological studies"--
Plant growth promoting substances. --- Plant biotechnology. --- Plants --- Botanical chemistry. --- Phytochemistry --- Plant biochemistry --- Plant chemistry --- Biochemistry --- Botany --- Phytochemicals --- Plant biochemical genetics --- Plant chemical composition --- Botanical chemistry --- Crop biotechnology --- Crops --- Agricultural biotechnology --- Growth promoting substances --- Plant regulators --- Composition. --- Chemical composition --- Biotechnology
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"This book will present examples of chemical biology approaches that have resulted in the identification of new small chemicals with an impact on plant development and physiology, and give illustrations of how the mode of action is being studied using molecular tools. Although molecular laboratory experiments have a high discovery rate and give very detailed information on the studied processes, the interchange of field studies and that of lab scale investigations is required to narrow down the parameters that determine the effectiveness of biostimulants, something that is of great importance for the successful commercialization of these products. Examples will be given of studies that contribute to closing the gap between the lab and the field. Topics covered include: Introduction to biostimulants. Categories of biostimulants: humic acid and fulvic acid, amino acids and protein hydrolysate, seaweed extracts, chitin/chitosan/oligosaccharides, substances with hormone like activities: Small molecule identification and metabolomics: technology to detect the fate of biostimulants, chemical screens and reporter systems. Biostimulant mode of action. Biostimulant by design: in silico structure prediction. Biostimulants, a practical guide: Examples of commercial biostimulants with more or less known mode of action. The biostimulant business and agricultural scientists are showing an increased interest in investigating the mode of action of biostimulants. This book will help them to get an overview of different aspects of biostimulant research, and provide access to new approaches and methods being developed in the wake of chemical biological studies"--
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This book presents a comprehensive review of recent developments in vanadium-based nanomaterials for next-generation electrochemical energy storage. The basic electrochemical energy storage and conversion equipment are elaborated, and the vanadium-based nanomaterials of the synthesis approaches, characterizations, electrochemical storage mechanisms, and performance optimization tactics are discussed. Examples are taken from various chemical energy storage devices to expound the functions of advanced vanadium-based nanomaterials for specific applications. Finally, various challenges and perspectives on vanadium-based nanomaterial development as an emerging energy storage solution are considered. Describes their intrinsic physical and chemical properties and storage mechanisms for chemical energy storage devices; Provides examples to elaborate on the functions of advanced vanadium-based nanomaterials for specific applications; Discusses the various challenges and perspectives for these emerging energy storage options.
Energy storage. --- Nanotechnology. --- Materials. --- Catalysis. --- Force and energy. --- Mechanical and Thermal Energy Storage. --- Materials Engineering. --- Materials for Energy and Catalysis.
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Physics --- Chemical thermodynamics --- Enzymology --- Relation between energy and economics --- Materials sciences --- Electrical engineering --- Applied physical engineering --- katalyse --- materiaalkennis --- energie-economie --- nanotechniek --- elektrische netwerken --- energie (technologie) --- fysica --- elektriciteitsdistributie
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