Kindly note that we have put a lot of effort into researching the best books on Electrolytic Cells subject and came out with a recommended list of top 10 best books. The table below contains the Name of these best books, their authors, publishers and an unbiased review of books on "Electrolytic Cells" as well as links to the Amazon website to directly purchase these books. As an Amazon Associate, we earn from qualifying purchases, but this does not impact our reviews, comparisons, and listing of these top books; the table serves as a ready reckoner list of these best books.
|1. “Electrochemical Reactor Design” by D J Pickett|
| 2. “Polymer Electrolyte Fuel Cell Durability” by Schmidt Inaba Buchi
“Polymer Electrolyte Fuel Cell Durability” Book Review: The main idea of the book is Polymer Electrolyte Fuel Cells (PEFCs). It targets students and workers new to the field. The book covers topics of design, operation and durability aspects of PEFCs. The book deals with the degradation process of these PEFCs. Degradation effects on components, cells and stacks, and applications is emphasised. The book consists of a total of 23 chapters.
| 3. “Polymer Electrolyte Fuel Cells: Physical Principles of Materials and Operation” by Kulikovsky Eikerling
“Polymer Electrolyte Fuel Cells: Physical Principles of Materials and Operation” Book Review: The book in discussion covers various facets of fuel cell research. The book is prescribed for researchers of the domain. The book begins by talking about global energy challenge, electrochemical energy conversion, electrochemical, thermodynamic properties of PEFCs. Subsequent chapters deal with aspects of fuel cell research such as components, length scales, physicochemical processes, and scientific disciplines. Other topics covered are: molecular-level processes in proton-conducting media, electrocatalytic systems, performance issues. electrochemical performance, water management, durability, and analysis of failure mechanisms.
| 4. “Polymer Electrolyte Fuel Cell Degradation” by T Nejat Veziroglu
“Polymer Electrolyte Fuel Cell Degradation” Book Review: The book presents views on durability of fuel cell stack components. Professionals and researchers of PEM fuel cells. Testing and protocol for durability ranging from membranes to bipolar plates is covered. Another key topic covered is Computational Modeling Aspects of PEFC Durability. Every chapter also lists tools required for advancement towards commercialization.
| 5. “Modeling, Analysis, and Optimal Control of Fuel Cell Electrochemistry” by Abhishek Dhanda
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“Modeling, Analysis, and Optimal Control of Fuel Cell Electrochemistry” Book Review: The book elucidates all the key topics of fuel cell power systems. It targets both students and researchers of the field alike. The book initially introduces fuel cells before talking about their operation and physical principles. Further, topics of electroanalytical and experimental techniques required in fuel cell research are covered. Mathematical prerequisites are also elucidated, A few other topics covered are: modeling of electrochemical reactions, reaction kinetics of fuel cell catalyst structure, practical implementation of proposed controllers on fuel cell power systems.
| 6. “Gel Polymer Electrolyte for Direct Borohydride Fuel Cell” by Ahmad Azmin Mohamad
“Gel Polymer Electrolyte for Direct Borohydride Fuel Cell” Book Review: The electrochemistry of a direct borohydride fuel cell is explained. It is recommended for practitioners involved in fuel cell processes. Advantages of natural polymers over synthetic polymers as host polymers are elucidated. Preparation of a fuel consisting of sago, potassium hydroxide (KOH) as reactant, and sodium borohydride (NaBH4) is elaborated which is used as novel gel polymer electrolyte. Properties of sago + 6 M KOH + 2 M NaBH4 gel polymer electrolyte are explained.
| 7. “Transport Phenomena Models for Polymer Electrolyte Fuel Cell Stacks” by Agus Pulung Sasmito
“Transport Phenomena Models for Polymer Electrolyte Fuel Cell Stacks” Book Review: The book in discussion presents topics of mathematical and numerical models for PEFC stacks. It is prescribed to fuel cell engineers working in the design of fuel cells. The book begins by giving an introduction to fuel cells before dwelling into transport phenomena of a single cell or stack. Emphasis is laid on development and integration of PEFC single stack and cell. A few other topics covered in the book include electrochemical processes, multiphase flow, thermal, gas and water management issues for optimum fuel cell performance.
| 8. “Novel and Inexpensive Polymer Electrolyte Membranes for Fuel Cells” by Syed Tauqir Ali Sherazi
“Novel and Inexpensive Polymer Electrolyte Membranes for Fuel Cells” Book Review: The book in discussion talks about PEM materials for fuel cells. It is prescribed for researchers and practitioners of the field. Process of manufacturing of Polymer Electrolyte Membrane with the help of styrene and ultrahigh molecular weight polyethylene powder is described. Mathematical concepts such as Fourier Transform Infra-Red spectroscopy, Thermal Gravimetric Analysis, Differential Scanning Calorimetry are required in the process are elucidated. Other topics covered include gamma irradiation, sulfonation, X-ray Diffraction, X-ray Photoelectron Spectroscopy, Transmission Electron Microscopy, Impedance Spectroscopy.
| 9. “Polymer Electrolyte Fuel Cells: Science, Applications, and Challenges” by Alejandro A Franco
“Polymer Electrolyte Fuel Cells: Science, Applications, and Challenges” Book Review: The book focuses on degradation phenomena of PEFCs applied in automotive technology. Researchers and industrialists of the automotive sector can access this book. The book covers all the essential topics and aspects of degradation of PEFC materials. Both experimental and theoretical analysis standpoints are covered. Preparation techniques of the materials are also elucidated. Readers can find numerous applications throughout the text.
| 10. “Modeling and Diagnostics of Polymer Electrolyte Fuel Cells” by Wang
“Modeling and Diagnostics of Polymer Electrolyte Fuel Cells” Book Review: The book covers a plethora of topics of PEMs. It is prescribed for electrochemists and researchers of electrochemistry. The book consists of a total of 9 chapters. It begins by talking about durability of PEM cells before dwelling into membrane electron assembly degradation. Subsequent chapters talk about Neutron radiography, Magnetic Resonance Imaging (MRI) in PEM fuel cells. The last section of the book deals with mesoscopic and atomic modeling of polymer electrolyte fuel cells.
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