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Handbook of Electrochemistry

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TLDR
In this article, the authors present an overview of the basic fundamentals and applications of electrochemistry in small places and at novel interfaces, including the following: 1. Fundamentals Part Two: Laboratory Practical 2. Practical Electrochemical Cells 3. Solvents and Supporting Electrolytes 4. Reference Electrodes 5. Solid Electrode Materials: Pretreatment and Activation 6. Ultramicroelectrodes 7. Potentiometric Ion-Selective Electrodes 8. Chemically Modified Electrodes 9. Semiconductor Electrodes 10.
Abstract
Part One: Fundamentals 1. Fundamentals Part Two: Laboratory Practical 2. Practical Electrochemical Cells 3. Solvents and Supporting Electrolytes 4. Reference Electrodes 5. Solid Electrode Materials: Pretreatment and Activation 6. Ultramicroelectrodes 7. Potentiometric Ion-Selective Electrodes 8. Chemically Modified Electrodes 9. Semiconductor Electrodes 10. Microelectrode Arrays Part Three: Techniques 11. Classical Experiments 12. Scanning Electrochemical Microscopy 13. Electrogenerated Chemiluminesence 14. Spectroelectrochemistry Part Four: Applications 15. Determination of Electrode Kinetics 16. Metal Deposition 17. Electrochemistry in Small Places and at Novel Interfaces Part Five: Data 18. Electrode Potentials 19. Diffusion Coefficients 20. Liquid Junction Potentials

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Citations
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Electrogenerated Chemiluminescence and Its Biorelated Applications

TL;DR: ECL has now become a very powerful analytical technique and been widely used in the areas of immunoassay, food and water testing, and biowarfare agent detection and has also been successfully exploited as a detector of flow injection analysis (FIA), high-performance liquid chromatography (HPLC), capillary electrophoresis, and micro total analysis (μTAS).
Journal ArticleDOI

Electrochemically controlled drug delivery based on intrinsically conducting polymers.

TL;DR: It is concluded that ICPs hold great promise in drug delivering implants where the dose can be adjusted through application of external stimulus, thus optimising benefit to side effect ratio while simultaneously ensuring patient adherence.
Journal ArticleDOI

Computational electrochemistry: prediction of liquid-phase reduction potentials

TL;DR: This article reviews recent developments and applications in the area of computational electrochemistry, focusing on predicting the reduction potentials of electron transfer and other electrochemical reactions and half-reactions in both aqueous and nonaqueous solutions.
Journal ArticleDOI

Non-aqueous chromium acetylacetonate electrolyte for redox flow batteries

TL;DR: In this paper, a single-metal redox flow battery employing chromium(III) acetylacetonate in tetraethylammonium tetrafluoroborate and acetonitrile has been investigated using electrochemical techniques.
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Investigating the electrochemical windows of ionic liquids

TL;DR: In this article, the structure effect on the electrochemical windows (EWs) was studied using cyclic voltammetry (CV) in 16 ionic liquids (ILs), consisting of various cations such as piperidinium, pyrinium and phosphonium, morpholinium, ammonium, sulfonium and imidazolium, and anions including bis(trifluoromethylsulfonyl)imide, tris(pentafluoroethyl)triffluorophosphate, dicyanamide
References
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Purification of laboratory chemicals

TL;DR: Common physical techniques used in purification chemical methods used in Purification purification of organic chemicals Purification of inorganic and metal organic chemicals general methods for the purification classification of classes of compounds and natural products biochemicals and related products as mentioned in this paper.
Trending Questions (1)
How to use Gamry for electrochemistry study of semiconductors?

The provided paper does not mention the use of Gamry for electrochemistry study of semiconductors.