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In this book, the author determines that a surface is itself a new
material for chemical reaction, and the reaction of the surface
provides additional new materials on that surface. The revelation
of that peculiarity is what makes this book different from an
ordinary textbook, and this new point of view will help to provide
a new impetus when graduate students and researchers consider their
results. The reaction of surface atoms provides additional new
compounds, but these compounds cannot be detached from the surface.
Some compounds are passive, but others work as catalysts. One
superior feature of the surface is the dynamic cooperation of two
or more different functional materials or sites on the same
surface. This fact has been well established in the preferential
oxidation of CO on platinum supported on a carbon nanotube with
Ni-MgO at its terminal end. The Pt and Ni-MgO are perfectly
separated, but these two are indispensable for the selective
oxidation of CO in H2, where the H2O molecule plays a key role. The
reader will understand that the complexity of catalysis is due to
the complexity of the dynamic processes on the surface.
In this book, the author determines that a surface is itself a new
material for chemical reaction, and the reaction of the surface
provides additional new materials on that surface. The revelation
of that peculiarity is what makes this book different from an
ordinary textbook, and this new point of view will help to provide
a new impetus when graduate students and researchers consider their
results. The reaction of surface atoms provides additional new
compounds, but these compounds cannot be detached from the surface.
Some compounds are passive, but others work as catalysts. One
superior feature of the surface is the dynamic cooperation of two
or more different functional materials or sites on the same
surface. This fact has been well established in the preferential
oxidation of CO on platinum supported on a carbon nanotube with
Ni-MgO at its terminal end. The Pt and Ni-MgO are perfectly
separated, but these two are indispensable for the selective
oxidation of CO in H2, where the H2O molecule plays a key role. The
reader will understand that the complexity of catalysis is due to
the complexity of the dynamic processes on the surface.
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