2021•Unpublished venueRequires access

Photocatalytic Water Splitting: Fundamentals and Current Concepts

Kazuhiro Takanabe

Open publisher page 1 citations

Abstract

Recent research studies on photocatalyst powder materials have advanced both efficiency of the process and understanding of reaction materials. Particularly, photocatalytic water splitting reaction using photocatalyst powder for the application to solar energy conversion is focused in this chapter. The photocatalysis happens at multiscale temporal and spatial dimensions. This chapter focuses on the fundamental aspects of how photocatalyst powders can improve efficiency for photocatalytic water splitting.

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What this paper is about

Recent research studies on photocatalyst powder materials have advanced both efficiency of the process and understanding of reaction materials. Particularly, photocatalytic water splitting reaction using photocatalyst powder for the application to solar energy conversion is focused in this chapter. The photocatalysis happens at multiscale temporal and spatial dimensions. This chapter focuses on the fundamental aspects of how photocatalyst powders can improve efficiency for photocatalytic water splitting.

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Available abstract

Recent research studies on photocatalyst powder materials have advanced both efficiency of the process and understanding of reaction materials. Particularly, photocatalytic water splitting reaction using photocatalyst powder for the application to solar energy conversion is focused in this chapter. The photocatalysis happens at multiscale temporal and spatial dimensions. This chapter focuses on the fundamental aspects of how photocatalyst powders can improve efficiency for photocatalytic water splitting.

Key concepts: Photocatalysis, Water splitting, Solar energy conversion, Materials science, Photocatalytic water splitting, Nanotechnology, Solar energy, Process (computing)

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