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Hybrid Water Electrolysis
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Hybrid Water Electrolysis : Non-Oxide Electrocatalysts in Small Molecule Oxidation

Book Details

Format Hardback or Cased Book
ISBN-10 3527355820
ISBN-13 9783527355822
Publisher Wiley-VCH Verlag GmbH
Imprint Blackwell Verlag GmbH
Country of Manufacture GB
Country of Publication GB
Publication Date Aug 19th, 2026
Print length 448 Pages
Product Classification: Chemistry
Ksh 22,500.00
Not Yet Published 0 in stock

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Non-oxide electrocatalysts for energy-saving hybrid water electrolysis systems Replacing thermodynamically unfavorable oxygen evolution with small molecule oxidation can reduce the energy input of water electrolysis while co-producing value-added chemicals. Hybrid Water Electrolysis: Non-Oxide Electrocatalysts in Small Molecule Oxidation, written by a team of electrochemistry and catalysis researchers from four countries, provides detailed coverage of functional electrocatalysts -- metal sulfides, carbides, nitrides, phosphides, and single atom catalysts --applied to this coupled approach. The book examines nanostructured electrocatalytic materials developed via pulsed laser techniques and their deployment in hybrid electrolyzers for hydrogen fuel production alongside oxidation of benzyl alcohol, methanol, ethanol, urea, hydrazine, furfural, and formic acid. Coverage includes reaction mechanisms, governing principles for catalytic behavior, stability analysis, and an assessment of challenges and opportunities for scaling these systems to industrial application. Readers will also find: Detailed discussion of metal sulfide, carbide, nitride, and phosphide electrocatalysts and their catalytic mechanisms in small molecule oxidation reactionsCase studies illustrating how hybrid electrolyzer configurations simultaneously produce hydrogen fuel and value-added chemical products at reduced energy costAnalysis of single atom catalysts and their role in enhancing selectivity and activity for coupled electrolysis processesCoverage of pulsed laser synthesis techniques for fabricating nanostructured electrocatalytic materials with controlled morphology and compositionAssessment of scale-up challenges and industrial opportunities for transitioning hybrid water electrolysis from laboratory to commercial deployment Designed for catalytic chemists, surface chemists, physical chemists, inorganic chemists, and chemical engineers, this reference delivers the mechanistic detail and materials science coverage required to advance non-oxide electrocatalyst development for hybrid water electrolysis and sustainable hydrogen production.

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