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Scanning Tunneling Microscopy and its Application presents a unified view of the rapidly growing field of STM,and its many derivatives. A thorough discussion of the various principles provides the background to tunneling phenomena and leads to the many novel scanning-probe techniques, such as AFM, MFM, BEEM, PSTM, etc. After having examined the available instrumentation and the methods for tip and surface preparations, the monograph provides detailed accounts of STM application to metal and semiconductor surfaces, adsorbates and surface chemistry, biology, and nanofabrication. It examines limitations of the present-day investigations and provides hints about possible further trends. This second edition includes important new developments in the field.
In recent years, several advances have been made in the control of
molecular assembly, generating new and strategically important
applications of the resultant nanotechnology. This book exemplifies
the significant progress made in the understanding of the formation
and nature of molecular assemblies, and the consequent construction
of functional nanostructures.Expanding on discussions of the
characteristics of the various molecular assemblies presented in
the Theme Issue of Philosophical Transactions A, a the Royal
Society journal, Molecular Nanostructure and Nanotechnology
reflects the diverse nature of the interactions between the various
building blocks. This versatility leads to a wide variety of
molecular nanomaterials which have a broad range of technological
applications, and they are explored in this book. Chapters from
leading researchers provide overviews of the principles and
development of molecular assembly and the current topics in
molecular nanostructure and related nanotechnology.Academics across
the physical, chemical, material and biological sciences will find
this a valuable addition to the research literature in
nanochemistry.
Single-molecule studies constitute a distinguishable category of
focused - search in nanoscience and nanotechnology. This book is
dedicated to the - troduction of recent advances on single-molecule
studies. It will be illustrated that studying single molecules is
both intellectually and technologically ch- lenging, and also o?ers
vast potential in opening up new scienti?c frontiers. We wish to
present the readers with several di?erent techniques for studying
single molecules, such as electron-tunneling methods,
interaction-force m- surement techniques, optical spectroscopy,
plus a number of directions where further progress could be
pursued. We hope the work may assist the readers, especially
graduate students and those who wish to explore single molecules,
to become familiarized with the pace of the progress in this ?eld
and the relevant primary techniques. Due to limitation of space, we
are not able to elaborate on the technical details of all of the
experimental methods that are vital in single molecule studies, so
introductions to only selected experimental methods are touched in
the context. Since the technical details and theoretical analysis
of these
techniqueshavealreadybeenthoroughlycoveredinmanyliteratures,weonly
provide introductions to the basic principles of the detection
techniques here, and focus on their experimental achievements in
the area of single-molecule studies. These techniques have proven
to be highly e?ective when indep- dently used. The combinationof
those techniques could lead to further - vances in the detection
capabilities.
explains in detail how extracellular vesicles are produced,
endocytosed, and the mechanisms by which molecules play biological
roles in the treatment of various diseases.
Scanning Tunneling Microscopy and its Application presents a
unified view of the rapidly growing field of STM, and its many
derivatives. A thorough discussion of the various principles
provides the background to tunneling phenomena and leads to the
many novel scanning-probe techniques, such as AFM, MFM, BEEM, PSTM,
etc. After having examined the available instrumentation and the
methods for tip and surface preparations, the monograph provides
detailed accounts of STM application to metal and semiconductor
surfaces, adsorbates and surface chemistry, biology, and
nanofabrication. It examines limitations of the present-day
investigations and provides hints about possible further trends.
This second edition includes important new developments in the
field.
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