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Metal oxide nanoparticles exhibit potential applications in energy
and environmental fields, such as solar cells, fuel cells, hydrogen
energy, and energy storage devices. This book covers all points
from synthesis, properties, and applications of transition metal
oxide nanoparticle materials in energy storage and conversion
devices. Aimed at graduate-level students and researchers
associated with the energy and environment sector, this book
addresses the application of nontoxic and environmentally friendly
metal oxide materials for a clean environment and deals with
synthesis properties and application metal oxides materials for
energy conversion, energy storage, and hydrogen generation.
Handbook of Nanomaterials for Wastewater Treatment: Fundamentals
and Scale up Issues provides coverage of the nanomaterials used for
wastewater treatment, covering photocatalytic nanocomposite
materials, nanomaterials used as adsorbents, water remediation
processes, and their current status and challenges. The book
explores the major applications of nanomaterials for effective
catalysis and adsorption, also providing in-depth information on
the properties and application of new advanced nanomaterials for
wastewater treatment processes. This is an important reference
source for researchers who need to solve basic and advanced
problems relating to the use of nanomaterials for the development
of wastewater treatment processes and technologies. As
nanotechnology has the potential to substantially improve current
water and wastewater treatment processes, the synthesis methods and
physiochemical properties of nanomaterials and noble metal
nanoparticles make their performance and mechanisms efficient for
the treatment of various pollutants.
This text deals with the advantages of rare earth activated
phosphors for the development of solid state lighting technology
and in enhancing the light conversion efficiency of Si solar cells.
The book initiates with a short overview of the atomic and
semiconductor theory followed by introduction to phosphor, its
working mechanism, role of rare earth ions in the lighting and PV
devices and host materials being used. Further, it introduces the
applications of inorganic phosphor for the development of green
energy and technology including advantages of UP/DC conversion
phosphor layers in the enhancing the cell response of PV devices.
Key Features: Focuses on discussion of phosphors for both solid
state lighting and photovoltaics applications Provides introduction
for practical applications including synthesis and characterization
of phosphor materials Includes broad, in-depth introduction of
semiconductors and related theory Enhances the basic understanding
of optical properties for rare earth phosphors Covers up-conversion
and down-conversion phosphor for energy harvesting applications
Nanoscale Compound Semiconductors and their Optoelectronics
Applications provides the basic and fundamental properties of
nanoscale compound semiconductors and their role in modern
technological products. The book discusses all important properties
of this important category of materials such as their optical
properties, size-dependent properties, and tunable properties. Key
methods are reviewed, including synthesis techniques and
characterization strategies. The role of compound semiconductors in
the advancement of energy efficient optoelectronics and solar cell
devices is also discussed. The book also touches on the
photocatalytic property of the materials by doping with graphene
oxides--an emerging and new pathway.
This text deals with the advantages of rare earth activated
phosphors for the development of solid state lighting technology
and in enhancing the light conversion efficiency of Si solar cells.
The book initiates with a short overview of the atomic and
semiconductor theory followed by introduction to phosphor, its
working mechanism, role of rare earth ions in the lighting and PV
devices and host materials being used. Further, it introduces the
applications of inorganic phosphor for the development of green
energy and technology including advantages of UP/DC conversion
phosphor layers in the enhancing the cell response of PV devices.
Key Features: Focuses on discussion of phosphors for both solid
state lighting and photovoltaics applications Provides introduction
for practical applications including synthesis and characterization
of phosphor materials Includes broad, in-depth introduction of
semiconductors and related theory Enhances the basic understanding
of optical properties for rare earth phosphors Covers up-conversion
and down-conversion phosphor for energy harvesting applications
Metal oxide nanoparticles exhibit potential applications in energy
and environmental fields, such as solar cells, fuel cells, hydrogen
energy, and energy storage devices. This book covers all points
from synthesis, properties, and applications of transition metal
oxide nanoparticle materials in energy storage and conversion
devices. Aimed at graduate-level students and researchers
associated with the energy and environment sector, this book
addresses the application of nontoxic and environmentally friendly
metal oxide materials for a clean environment and deals with
synthesis properties and application metal oxides materials for
energy conversion, energy storage, and hydrogen generation.
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Nanomaterials for Green Energy (Paperback)
Bharat A Bhanvase, Vijay B Pawade, Sanjay J. Dhoble, Shirish Hari Sonawane, Muthupandian Ashokkumar
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R3,980
R3,521
Discovery Miles 35 210
Save R459 (12%)
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Ships in 12 - 17 working days
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Nanomaterials for Green Energy focuses on the synthesis,
characterization and application of novel nanomaterials in the
fields of green science and technology. This book contains
fundamental information about the properties of novel nanomaterials
and their application in green energy. In particular, synthesis and
characterization of novel nanomaterials, their application in solar
and fuel cells and batteries, and nanomaterials for a low-toxicity
environment are discussed. It will provide an important reference
resource for researchers in materials science and renewable energy
who wish to learn more about how nanomaterials are used to create
cheaper, more efficient green energy products.
Lanthanide Doped Aluminate Phosphors: Synthesis, Properties, and
Applications overviews advances in research on aluminate-based long
persistent phosphors and their applications in lighting, display,
radiation dosimetry and imaging. The book reviews the most
important categories of rare earth aluminate-based phosphors,
including aluminosilicates and aluminoborates. This category of
material is attractive for a wide range of applications because of
their high quantum efficiency, long afterglow life, chemical
stability and optical properties, which is discussed throughout.
Optical properties, in particular, are emphasized in the book along
with the relationship of the chemical composition and doping of
these materials and their optical performance. This book is
suitable for researchers and practitioners working in academia and
research and development in industry in the disciplines of
materials science and engineering, chemistry and physics.
Phosphor Handbook: Process, Properties and Applications provides a
comprehensive overview of the latest advances in research on the
synthesis, characterization and applications of organic and
inorganic phosphors. There is detailed information presented on the
characterization of the relevant phosphor groups, such as
up-conversion and down-conversion phosphors, inorganic LED
phosphors, organic LED phosphors and thermoluminescence and
dosimetric phosphors using various physical and chemical advances.
Finally, the advances in phosphor technologies are discussed,
including current barriers to their use in commercial applications
and emerging opportunities. This book is suitable for researchers
and practitioners in academia and those working in R&D in
industry in the disciplines of materials science and engineering,
materials chemistry, materials physics, photonics science and
technology, nanotechnology and physical chemistry.
An in-depth look at the luminescence of phosphor materials for
applications in optical devices, sensors, and medical technologies.
Optical Properties of Phosphate and Pyrophosphate Compounds gives a
broad introduction to pyrophosphates and phosphate-based phosphors,
including their fundamental properties, material composition,
synthesis methods, characterization techniques, and applications in
optical devices and technologies. The text describes the
development of the materials' shape and size, as well as crucial
characterization techniques for key applications. Additionally, it
includes essential information about recently used single and mixed
cations pyrophosphate and phosphate compounds. This book is
suitable for researchers working in materials science, engineering,
materials chemistry, and physics. It may also be helpful to
engineers and chemists working in R&D for solid state lighting.
Spectroscopy of Lanthanide Doped Oxide Materials provides a
comprehensive overview on the most essential characterization
techniques of these materials, along with their key applications.
The book describes the application of optical spectroscopy of
lanthanides doped inorganic phosphor hosts and gives information
about their structure and morphology, binding energies, energy of
transition and band gap. Also discussed are the properties and
applications of rare earth doped inorganic materials and the
barriers and potential solutions to enable the commercial
realization of phosphors in important applications. The book
reviews key information for those entering the field of phosphor
research, along with the fundamental knowledge of the properties of
transition series elements under UV/Visible/NIR light exposer.
Low-cost materials methods to synthesize the materials and
spectroscopic characterization methods are also detailed.
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