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This book introduces recent progress in preparation and application
of core-shell and yolk-shell structures for attractive design of
catalyst materials. Core-shell nanostructures with active core
particles covered directly with an inert shell can perform as
highly active and selective catalysts with long lifetimes.
Yolk-shell nanostructures consisting of catalytically active core
particles encapsulated by hollow materials are an emerging class of
nanomaterials. The enclosed void space is expected to be useful for
encapsulation and compartmentation of guest molecules, and the
outer shell acts as a physical barrier to protect the guest
molecules from the surrounding environment. Furthermore, the
tunability and functionality in the core and the shell regions can
offer new catalytic properties, rendering them attractive platform
materials for the design of heterogeneous catalysts. This book
describes the recent development of such unique nanostructures to
design effective catalysts which can lead to new chemical
processes. It provides an excellent guide for design and
application of core-shell and yolk-shell structured catalysts for a
wide range of readers working on design of attractive catalysts,
photocatalysts, and electrocatalysts for energy, environmental, and
green chemical processes.
This book introduces recent progress in preparation and application
of core-shell and yolk-shell structures for attractive design of
catalyst materials. Core-shell nanostructures with active core
particles covered directly with an inert shell can perform as
highly active and selective catalysts with long lifetimes.
Yolk-shell nanostructures consisting of catalytically active core
particles encapsulated by hollow materials are an emerging class of
nanomaterials. The enclosed void space is expected to be useful for
encapsulation and compartmentation of guest molecules, and the
outer shell acts as a physical barrier to protect the guest
molecules from the surrounding environment. Furthermore, the
tunability and functionality in the core and the shell regions can
offer new catalytic properties, rendering them attractive platform
materials for the design of heterogeneous catalysts. This book
describes the recent development of such unique nanostructures to
design effective catalysts which can lead to new chemical
processes. It provides an excellent guide for design and
application of core-shell and yolk-shell structured catalysts for a
wide range of readers working on design of attractive catalysts,
photocatalysts, and electrocatalysts for energy, environmental, and
green chemical processes.
While books on semiconductor TiO2 photocatalysis are legion,
nanostructured controlled photocatalysts are attractive beyond
standard semiconductors, and this book is devoted to the many novel
uses of advanced TiO2 and MOF-based photocatalysts. Details on
synthesis, characterization, and reaction applications of
nanostructured photocatalysts are summarized. Other new materials
discussed in this book are Bi- W- oxides, metal complexes, and
unique porous materials. This book contains methods of preparation
and characterization of unique nanostructured photocatalysts, and
details about their catalytic action. Contributors to this volume
are leading Asian researchers in Photocatalysis. It will appeal to
researchers wishing to know how to design new types of
photocatalysts with controlled nanostructures.
While books on semiconductor TiO2 photocatalysis are legion,
nanostructured controlled photocatalysts are attractive beyond
standard semiconductors, and this book is devoted to the many novel
uses of advanced TiO2 and MOF-based photocatalysts. Details on
synthesis, characterization, and reaction applications of
nanostructured photocatalysts are summarized. Other new materials
discussed in this book are Bi- W- oxides, metal complexes, and
unique porous materials. This book contains methods of preparation
and characterization of unique nanostructured photocatalysts, and
details about their catalytic action. Contributors to this volume
are leading Asian researchers in Photocatalysis. It will appeal to
researchers wishing to know how to design new types of
photocatalysts with controlled nanostructures.
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