Photocatalytic Hydrogen Fuel Generation - Abdullah, Hairus; (szerk.) - Prospero Internetes Könyváruház

Photocatalytic Hydrogen Fuel Generation: Designing Highly Efficient Semiconductor Materials
 
A termék adatai:

ISBN13:9789819619207
ISBN10:9819619203
Kötéstípus:Keménykötés
Terjedelem:330 oldal
Méret:235x155 mm
Nyelv:angol
Illusztrációk: 7 Illustrations, black & white; 179 Illustrations, color
700
Témakör:

Photocatalytic Hydrogen Fuel Generation

Designing Highly Efficient Semiconductor Materials
 
Kiadó: Springer
Megjelenés dátuma:
Kötetek száma: 1 pieces, Book
 
Normál ár:

Kiadói listaár:
EUR 213.99
Becsült forint ár:
93 021 Ft (88 591 Ft + 5% áfa)
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Az Ön ára:

85 579 (81 504 Ft + 5% áfa )
Kedvezmény(ek): 8% (kb. 7 442 Ft)
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  példányt

 
Rövid leírás:

This book highlights crucial parameters and strategies in photocatalytic water splitting. The process utilizes light energy to drive the separation of water into hydrogen and oxygen with the help of a photocatalyst. The efficiency and performance of catalytic activities are determined by various parameters supported by material characterizations. Commonly, the catalytic performances in visible-light photocatalytic water splitting are governed by bandgap energy, surface area, crystal structure, charge carrier dynamics, catalyst loading, cocatalyst, pH of solution, and reaction temperatures. However, covering all the requirements to obtain a highly efficient catalytic activity is an impossible task. Some recent strategies with promising results have been explored to improve and optimize the catalytic properties. In addition, various techniques for catalytic material characterizations, such as XRD, SEM, TEM, XPS, XANES, EXALFS, TRPL, TPC, EIS, and CV analysis, are also discussed. Finally, some related perspectives and outlook are discussed for future development. 

Hosszú leírás:

This book highlights crucial parameters and strategies in photocatalytic water splitting. The process utilizes light energy to drive the separation of water into hydrogen and oxygen with the help of a photocatalyst. The efficiency and performance of catalytic activities are determined by various parameters supported by material characterizations. Commonly, the catalytic performances in visible-light photocatalytic water splitting are governed by bandgap energy, surface area, crystal structure, charge carrier dynamics, catalyst loading, cocatalyst, pH of solution, and reaction temperatures. However, covering all the requirements to obtain a highly efficient catalytic activity is an impossible task. Some recent strategies with promising results have been explored to improve and optimize the catalytic properties. In addition, various techniques for catalytic material characterizations, such as XRD, SEM, TEM, XPS, XANES, EXALFS, TRPL, TPC, EIS, and CV analysis, are also discussed. Finally, some related perspectives and outlook are discussed for future development. 

Tartalomjegyzék:

1. Photocatalysis fundamental with essential parameters for a water-splitting process.- 2. Surface defect engineering in photocatalytic hydrogen evolution reaction.- 3 Composite semiconductor as a crucial strategy to enhance photocatalytic activities in hydrogen production.- 4. Surface plasmon resonance-based photocatalyst in evolving hydrogen fuel gas.- 5. Carbon-based nano photocatalyst with superior chemical and physical properties in enhancing hydrogen evolution reaction.