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Developments in Electrochemistry
Jang H. Chun
keywords: Electrochemistry;   
Publisher: INTECH
Subject:
【 摘 要 】
The book "Developments in Electrochemistry" contains five feature articles in recent advanced electrochemistry. These selected feature articles emphasize physical phenomena rather than mathematical formalisms of electrochemistry. The topics represented in the book are: The phase-shift method and correlation constants for determining the electrochemical Frumkin, Langmuir, and Temkin adsorption isotherms at interfaces; Quantitative separation of an adsorption effect in the form of defined current probabilistic responses for catalyzed/inhibited electrode processes; A quick, simple, and non-invasive method to evaluate sudomotor dysfunctions; Cyclohexane-based liquid-biphasic systems for organic electrochemistry; Electrochemical transformation of white phosphorus as a way to compounds with phosphorus-hydrogen and phosphorus-carbon bonds. The work represented in this book will be useful, effective, and beneficial to physicists, chemists, surface scientists, material scientists, engineers, and especially electrochemists.
【 授权许可】

CC BY   

【 预 览 】
附件列表
Files Size Format View
Cyclohexane-Based Liquid-Biphasic Systems for Organic Electrochemistry.pdf 563KB PDF download
Developments in Electrochemistry.jpg 77KB Image download
Developments in Electrochemistry_ The Phase-Shift Method and Correlation Constants for Determining the Electrochemical Adsorption Isotherms at Noble and Highly Corrosion-Resistant Metal_Solution Interfaces.pdf 789KB PDF download
Electrochemical Basis for EZSCAN_SUDOSCAN_ A Quick, Simple, and Non-Invasive Method to Evaluate Sudomotor Dysfunctions.pdf 1289KB PDF download
Electrochemical Transformation of White Phosphorus as a Way to Compounds With Phosphorus-Hydrogen and Phosphorus-Carbon Bonds.pdf 1047KB PDF download
Quantitative Separation of an Adsorption Effect in Form of Defined Current Probabilistic Responses for Catalyzed _ Inhibited Electrode Processes.pdf 2714KB PDF download
【 图 表 】

Developments in Electrochemistry.jpg

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