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Surface Modifications and Growth of Titanium Dioxide for Photo-Electrochemical Water Splitting
Surface Modifications and Growth of Titanium Dioxide for Photo-Electrochemical Water Splitting
354,86
394,29 €
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This outstanding thesis provides a wide-ranging overview of the growth of titanium dioxide thin films and its use in photo-electrochemicals such as water splitting. The context for water splitting is introduced with the theory of semiconductor-liquid junctions, which are dealt with in detail. In particular plasmonic enhancement of TiO2 by the addition of gold nanoparticles is considered in depth, including a thorough and critical review of the literature, which discusses the possible mechanisms…
394.29
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  • ISBN-10: 3319342274
  • ISBN-13: 9783319342276
  • Format: 15.6 x 23.4 x 2.2 cm, kieti viršeliai
  • Language: English
  • SAVE -10% with code: EXTRA

Surface Modifications and Growth of Titanium Dioxide for Photo-Electrochemical Water Splitting (e-book) (used book) | bookbook.eu

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This outstanding thesis provides a wide-ranging overview of the growth of titanium dioxide thin films and its use in photo-electrochemicals such as water splitting. The context for water splitting is introduced with the theory of semiconductor-liquid junctions, which are dealt with in detail. In particular plasmonic enhancement of TiO2 by the addition of gold nanoparticles is considered in depth, including a thorough and critical review of the literature, which discusses the possible mechanisms that may be at work. Plasmonic enhancement is demonstrated with gold nanoparticles on Nb-doped TiO2. Finally, the use of temperature and pressure to control the phase and morphology of thin films grown by pulsed laser deposition is presented.

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  • Author: John Alexander
  • Publisher:
  • ISBN-10: 3319342274
  • ISBN-13: 9783319342276
  • Format: 15.6 x 23.4 x 2.2 cm, kieti viršeliai
  • Language: English English

This outstanding thesis provides a wide-ranging overview of the growth of titanium dioxide thin films and its use in photo-electrochemicals such as water splitting. The context for water splitting is introduced with the theory of semiconductor-liquid junctions, which are dealt with in detail. In particular plasmonic enhancement of TiO2 by the addition of gold nanoparticles is considered in depth, including a thorough and critical review of the literature, which discusses the possible mechanisms that may be at work. Plasmonic enhancement is demonstrated with gold nanoparticles on Nb-doped TiO2. Finally, the use of temperature and pressure to control the phase and morphology of thin films grown by pulsed laser deposition is presented.

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