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Books > Science & Mathematics > Chemistry > Analytical chemistry > Qualitative analytical chemistry > Chemical spectroscopy, spectrochemistry
The unique compendium presents special principles and techniques of
spectroscopic measurements that are used in semiconductor
manufacturing.Since industrial applications of spectroscopy are
significantly different from those traditionally used in scientific
laboratories, the design concepts and characteristics of industrial
spectroscopic devices may vary significantly from conventional
systems. These peculiarities are thus succinctly summarized in this
volume for a wide audience of students, engineers, and scientific
workers.Exceptionally well-illustrated with practical solutions in
detail, this useful reference text will open new horizons in new
research areas.
Metrology is part of the essential but largely hidden
infrastructure of the modern world. This book concentrates on the
infrastructure aspects of metrology. It introduces the underlying
concepts: International system of units, traceability and
uncertainty; and describes the concepts that are implemented to
assure the comparability, reliability and quantifiable trust of
measurement results. It is shown what benefits the traditional
metrological principles have in fields as medicine or in the
evaluation of cyber physical systems.
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Applications
(Hardcover)
Alfred J. Meixner, Monika Fleischer, Dieter P. Kern, Evgeniya Sheremet, Norman McMillan
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Nanospectroscopy addresses the spectroscopy of very small objects
down to single molecules or atoms, or high-resolution spectroscopy
performed on regions much smaller than the wavelength of light,
revealing their local optical, electronic and chemical properties.
This work highlights modern examples where optical nanospectroscopy
is exploited in photonics, optical sensing, medicine, or
state-of-the-art applications in material, chemical and biological
sciences. Examples include the use of nanospectroscopy in such
varied fields as quantum emitters, dyes and two-dimensional
materials, on solar cells, radiation imaging detectors, biosensors
and sensors for explosives, in biomolecular and cancer detection,
food science, and cultural heritage studies.
Electron paramagnetic resonance (EPR) applications remain highly
significant in modern analytical science and this volume compiles
critical coverage of developments in the recent literature. The
topics covered in this volume describe contrasting types of EPR
application, including rapid scan EPR, using the EPR toolkit to
investigate the structural dynamics of membrane proteins and pulse
dipolar EPR spectroscopy for investigating biomolecular binding
events. An additional chapter reviewing the PARACAT collaboration
from the EU has also been included. Providing a snapshot of the
area by a handpicked group of researchers at the cutting-edge of
the field, this book is a useful addition to any library supporting
this research.
Biopharmaceuticals are a unique class of compounds due to their
extreme structural complexity. The current text puts together a
variety of the state-of-the art approaches that use mass
spectrometry to evaluate various aspects of biopharmaceutical
products ranging from monitoring stress-related structural changes
to their quantitation in pharmacokinetic studies.
Electron Paramagnetic Resonance (EPR) applications remain very
significant in modern analytical science and this volume compiles
critical coverage of developments in the recent literature by a
handpicked group of researchers at the cutting-edge of the field.
The topics covered in this volume describe contrasting types of EPR
application, including light induced hyperpolarization and
disordered proteins to spin labels and nanomaterials. Providing a
snap shot of the area, this book is a useful addition to any
library supporting this research.
Spectroscopy in this book has been made easier and attractive by
adopting a non-mathematical pictorial path. The essential feature
of this approach involves use of visual images at the molecular
level. Further, to keep the reader involved, every chapter has a
large number of solved problems. This approach brings molecular
spectroscopy within the comprehension of the average reader.
Application of molecular spectroscopy in determining molecular
structure and the study of intermolecular interactions have also
been discussed. A chapter on the applications of molecular
spectroscopy has been prepared from the latest research work where
molecular spectroscopy has been used as a tool to the research
problems. This will give an idea as to how wide and divergent
spectroscopy has its applications. Again, the approach intends to
develop reasoning ability to the maximum.
Spectroscopic Properties of Inorganic and Organometallic Compounds:
Techniques, Materials and Applications provides a unique source of
information in an important area of chemistry. Since Volume 40 the
nature and ethos of this series have been altered to reflect a
change of emphasis towards 'Techniques, Materials and
Applications'. Researchers will now find up-to-date critical
reviews which provide in-depth analyses of the leading papers in
the field, with authors commenting of the quality and value of the
work in a wider context. Focus areas will include
structure-function relationships, photochemistry and spectroscopy
of inorganic complexes, and catalysis; materials such as ceramics,
cements, pigments, glasses and corrosion products; techniques such
as advanced laser spectroscopy and theoretical methods.
Spectroscopic Properties of Inorganic and Organometallic Compounds:
Techniques, Materials and Applications provides a unique source of
information in an important area of chemistry. Since Volume 40 the
nature and ethos of this series have been altered to reflect a
change of emphasis towards 'Techniques, Materials and
Applications'. Researchers will now find up-to-date critical
reviews which provide in-depth analyses of the leading papers in
the field, with authors commenting of the quality and value of the
work in a wider context. Focus areas will include
structure-function relationships, photochemistry and spectroscopy
of inorganic complexes, and catalysis; materials such as ceramics,
cements, pigments, glasses and corrosion products; techniques such
as advanced laser spectroscopy and theoretical methods.
UV-Visible Spectrophotometry of Water and Wastewater is the first
book dedicated to the use of UV spectrophotometry for water and
wastewater quality monitoring. Using practical examples the reader
is shown how this technique can be a source of new methods of
characterization and measurement. Easy and fast to run, this simple
and robust analytical technique must be considered as one of the
best ways to obtain a quantitative estimation of specific or
aggregate parameters (eg. Nitrate, TOC), and simultaneously
qualitative information on the global composition of water and its
variation.
* First electronic library of UV-spectra providing data readily
available for researchers and users
* Provides a theoretical basis for further research in the field of
spectra exploitation
* Contains helpful practical applications
The topics covered in this volume describe contrasting types of
Electron Paramagnetic Resonance (EPR) application, including
inorganic paramagnetic systems, spin-labeling in highly dynamic
systems such as RNAs and IDPs and applications of nitroxides in
host:guest chemistry. EPR applications remain very significant in
modern science and this volume compiles critical coverage of
developments in the recent literature by a hand-picked group of
researchers at the cutting-edge of the field. Providing a snap shot
of the area, this book is a useful addition to any library
supporting this research.
Micro-Raman Spectroscopy introduces readers to the theory and
application of Raman microscopy. Raman microscopy is used to study
the chemical signature of samples with little preperation in a
non-destructive manner. An easy to use technique with ever
increasing technological advances, Micro-Raman has significant
application for researchers in the fields of materials science,
medicine, pharmaceuticals, and chemistry.
Over the last two decades, advances in the design, miniaturization,
and analytical capabilities of portable X-ray fluorescence (pXRF)
instrumentation have led to its rapid and widespread adoption in a
remarkably diverse range of applications in research and industrial
fields. The impetus for this volume was that, as pXRF continues to
grow into mainstream use, analysts should be increasingly empowered
with the right information to safely and effectively employ pXRF as
part of their analytical toolkit. This volume provides introductory
and advanced-level users alike with readings on topics ranging from
basic principles of pXRF and qualitative and quantitative
approaches, through to machine learning and artificial intelligence
for enhanced applications. It also includes fundamental guidance on
calibrations, the mathematics of calculating uncertainties, and an
extensive reference index of all elements and their interactions
with X-rays. Contributing authors have provided a wealth of
information and case studies in industry-specific chapters. These
sections delve into detail on current standard practices in
industry and research, including examples from agricultural and
geo-exploration sectors, research in art and archaeology, and
metals industrial and regulatory applications. As pXRF continues to
grow in use in industrial and academic settings, it is essential
that practitioners continue to learn, share, and implement informed
and effective use of this technique. This volume serves as an
accessible guidebook and go-to reference manual for new and
experienced users in pXRF to achieve this goal.
Surface-Enhanced Raman Scattering (SERS) was discovered in the
1970s and has since grown enormously in breadth, depth, and
understanding. One of the major characteristics of SERS is its
interdisciplinary nature: it lies at the boundary between physics,
chemistry, colloid science, plasmonics, nanotechnology, and
biology. By their very nature, it is impossible to find a textbook
that will summarize the principles needed for SERS of these rather
dissimilar and disconnected topics. Although a basic understanding
of these topics is necessary for research projects in SERS with all
its many aspects and applications, they are seldom touched upon as
a coherent unit during most undergraduate studies in physics or
chemistry. This book intends to fill this existing gap in the
literature. It provides an overview of the underlying principles of
SERS, from the fundamental understanding of the effect to its
potential applications. It is aimed primarily at newcomers to the
field, graduate student, researcher or scientist, attracted by the
many applications of SERS and plasmonics or its basic science. The
emphasis is on concepts and background material for SERS, such as
Raman spectroscopy, the physics of plasmons, or colloid science,
all of them introduced within the context of SERS, and from where
the more specialised literature can be followed.
* Represents one of very few books fully dedicated to the topic of
surface-enhanced Raman spectroscopy (SERS)
* Gives a comprehensive summary of the underlying physical concepts
around SERS
* Provides a detailed analysis of plasmons and plasmonics
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