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Titlebook: Chemical Electrostatics; New Ideas on Electro Fernando Galembeck,Thiago A. L. Burgo Book 2017 Springer International Publishing AG 2017 Mec

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发表于 2025-3-21 17:54:00 | 显示全部楼层 |阅读模式
书目名称Chemical Electrostatics
副标题New Ideas on Electro
编辑Fernando Galembeck,Thiago A. L. Burgo
视频video
概述Highlights the role of electrostatics in the world around us, covering the full gamut of relevant topics.Explains a complicated and multidisciplinary subject while providing a stimulus for new ideas.D
图书封面Titlebook: Chemical Electrostatics; New Ideas on Electro Fernando Galembeck,Thiago A. L. Burgo Book 2017 Springer International Publishing AG 2017 Mec
描述.This book provides new clues for understanding electrostatic charging in solids and liquids, resulting from the surge of research in this active area of science that is taking place since the 1990‘s but is still largely unknown to most researchers, lecturers and engineers. .Written by a leading researcher in this field, this book describes the formation and properties of the Earth capacitor, the production of environmental electricity and its effect on natural and anthropic systems and examines many situations in which water may play a decisive role in electrostatic behavior..The authors present an informed critique of the long-held assumption that pure substances should be electroneutral. In this regard, the authors show that charge partition and accumulation is expected considering the electrochemical potential under non-zero electrostatic potential, which prevails at Earth surface.. .This book provides conceptual tools to guide the reader through thecomplexities and consequences of electrostatic phenomena while covering exciting current topics such as energy scavenging from the environment, electrostatic based green production, energy-saving processes, electrochemistry at the s
出版日期Book 2017
关键词Mechanochemistry at insulator interfaces; Electrostatics of dielectrics; Non-electroneutral water; Elec
版次1
doihttps://doi.org/10.1007/978-3-319-52374-3
isbn_softcover978-3-319-84889-1
isbn_ebook978-3-319-52374-3
copyrightSpringer International Publishing AG 2017
The information of publication is updating

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Charge Carriers Within the Atomic-Molecular Theory,ood and they have been at the center of enduring controversy. Evidence in favor of electrons and ions has been presented in many situations, raising new questions concerning their sources. This chapter reviews evidence supporting the mechanisms for charge carrier formation and motion, fitting electr
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Charge at Interfaces,es have been extensively examined in electrochemistry and colloid chemistry where the concepts of double layer, triple layer, and ionic atmosphere are well established. A special case is the formation of excess charge at hydrophobic-aqueous interfaces, as the result of asymmetric partitioning of hyd
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Charge Patterns, Charge Separation, size range, from molecules to bulk matter. Positive and negative charge separation, partition and/or segregation is caused by many agents: solvents, large electric fields, radiation, mechanical forces, Brownian motion/diffusion and gravity (sedimentation). It appears in transients like the liquid j
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Hygroelectricity: The Atmosphere as a Charge Reservoir,ies of the solid surface. This is a complicating factor in the study of water adsorption that was observed in many different systems: cellulose, various metals and particulate solids including oxides, clay and surfactants. Another important consequence of water adsorption on solids is its effect in
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Excess Charge in Solids: Electrets,, using analytical transmission electron and scanning probe microscopies. Moreover, charged species may be formed and trapped within solids following different events: charge injection, mechanochemical reactions, penetration of radiation and energetic particles, ion implantation or phase transitions
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Self-assembly, and macroscopic surfaces with a strong participation of solvent water. Its importance was revealed during the elucidation of biological structures, from the smaller proteins to ribosomes, cell nuclei and membranes where electrostatic interactions are energetically as important as hydrophobic intera
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