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Two-dimensional (2D) materials for photocatalytic applications have
attracted attention in recent years due to their unique
thickness-dependent physiochemical properties. 2D materials offer
enhanced functionality over traditional three-dimensional (3D)
photocatalysts due to modified chemical composition and electronic
structures, as well as abundant surface active sites. This book
reviews the applications of 2D-related nano-materials in
solar-driven catalysis, providing an up-to-date introduction to the
design and use of 2D-related photo(electro)catalysts. This includes
not only application areas such as fine chemicals synthesis, water
splitting, CO2 reduction, and N2 fixation, but also catalyst design
and preparation. Some typical 2D and 2D-related materials (such as
layered double hydroxides (LDHs), layered metal oxides, transition
metal dichalcogenide (TMDs), metal-organic frameworks (MOFs),
graphene, g-C3N4, etc.) are classified, and relationships between
structure and property are demonstrated, with emphasis on how to
improve 2D-related materials performance for practical
applications. While the focus of this book will primarily be on
experimental studies, computational results will serve as a
necessary reference. With chapters written by expert researchers in
their fields, Photocatalysis Using 2D Nanomaterials will provide
advanced undergraduates, postgraduates and other researchers
convenient introductions to these topics.
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