「Applied Electrochemistry: Aspects in Material and Environmental Science」, 2nd Edition, by 「Krystyna Jackowska」 and 「Paweł Krysiński」 (De Gruyter, August 19, 2024), is a thoroughly revised and substantially expanded textbook designed to bridge rigorous electrochemical fundamentals with real-world applications.
The first edition (2020) already laid solid groundwork: it covered electrochemical kinetics, corrosion, electrocatalysis, electrodeposition, electrochemical nanostructure formation, semiconductor photoelectrochemistry, and solar-to-photocatalytic conversion. The 2024 second edition retains these strengths, but goes further—inserting entirely new chapters, deeper theoretical treatments, and fresh environmental science perspectives.
🧩 Structure & Scope of Content
The book is organized into four major parts:
1. 「Fundamental Principles」
Thermodynamic foundations, interface structures
Analytical and material-focused electrochemical methods
(Chapters 1–2)
2. 「Material Science Applications」
Corrosion science and its mitigation strategies
Electrocatalysis and electrodeposition, including UPD
Formation of nanostructured materials via electrochemical techniques
Theory and fundamentals of semiconductor interfaces under illumination
Photoelectrochemical cell designs for solar energy conversion
Photocatalytic activity of semiconductor particles
(Chapters 10–12)
4. 「Environmental and Green Electrochemistry」
Electrochemical sensing technologies for environmental monitoring
Electrochemical hydrogen production as a green fuel strategy
Combined electrochemical and photocatalytic methodologies for pollutant removal
(Chapters 13–15)
🎯 Pedagogical Approach & Audience
Designed primarily for graduate students, researchers, and advanced undergraduates, this edition emphasizes rigorous theoretical frameworks while maintaining strong links to experimental and industrial relevance. Each chapter features:
Clearly stated objectives
In-depth theoretical explanations
Mathematical derivations
Realistic case studies and industrial examples
The authors employ a structured—yet accessible—style that balances equations and theory with process-oriented discussions. This format enables both self-study and classroom instruction, supporting student comprehension and fostering independent critical thought.
🧪 Why It Matters
「Comprehensive Coverage」
Spanning from electrochemical kinetics to semiconductor photoelectrochemistry and green manufacturing, the textbook covers phenomena vital to fields such as corrosion science, sustainable energy, sensor technologies, nanomaterials, and environmental remediation.
「Industrial and Environmental Relevance」
New chapters dedicated to hydrogen production, pollutant degradation, green electrochemistry, and environmental sensing elevate its relevance to emerging global challenges.
「Strong Academic Credentials」
Krystyna Jackowska (Emeritus Professor, University of Warsaw) and Paweł Krysiński (Professor, University of Warsaw) bring a combined expertise in semiconductor electrochemistry, conducting polymers, biosensors, superparamagnetic nanostructures, and biomimetic charge-transfer systems.
「Visual Aids and Reference Tools」
The text includes approximately 50 illustrations plus 111 colored figures, 8 tables (two in color), an extensive list of abbreviations and symbols, and thorough indexation—enhancing clarity, referenceability, and teaching utility.
✅ Key Strengths at a Glance
Feature
Description
「Theoretical Rigor」
Deep engagement with thermodynamics, interface science, kinetics.
「Environmental Focus」
New chapters on green fuel and pollutant remediation.
「Lab–Industry Integration」
Case studies link theory to industrial practice.
「High-Quality Visuals」
Rich figures, tables, and reference appendices.
「Structured for Learning」
Goals, derivations, and context support readers methodically.
💡 How to Use This Book
「Graduate Coursework:」 Ideal for electrochemistry modules in physical chemistry, materials science, environmental engineering, and sustainable technology programs.
「Self‑Study Resource:」 Structured so students can work independently through problem sets, theory, and contemporary applications.
「Research Reference:」 Researchers will find comprehensive treatments of electrodeposition, corrosion mitigation, photoelectrochemistry, and electro-bio interfaces handy for contextualizing findings.
🧭 Conclusion
「Applied Electrochemistry (2nd Edition)」 by Jackowska and Krysiński sets a new benchmark in electrochemical education, uniting foundational theory with modern environmental and industrial relevance. Whether you're a graduate student seeking conceptual depth, a researcher pursuing sustainable electrochemical solutions, or an educator curating rigorous coursework, this text is an indispensable asset. It offers both breadth and depth—covering classic electrochemical approaches and emergent green strategies—in a single coherent volume. 🌱🔋
✍️ Final Thoughts
「Master the fundamentals」, from thermodynamics to kinetics.
「Explore contemporary advances」, including nanomaterials and biosensors.
「Engage with environmental electrochemistry」, from hydrogen energy to pollutant degradation.
「Integrate theory and practice」 with rich industrial and application-focused content.
Embark on your journey through electrochemistry with this updated edition—it offers both intellectual rigor and practical insight. Happy reading—and may your experiments be both illuminating and sustainable! 😊
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Biochemistry The Molecular Basis of Life 7e By Trudy McKee, James McKee 📘 Introduction to Biochemistry: The Molecular Basis of Life (7th ed.) 「Authors」 : Trudy McKee & James R. McKee 「Edition」 : 7th (January 2, 2020), Oxford University Press; 「ISBN‑13」 : 978‑0190847685; 「 pages」 : 816
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