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This book examines the most novel and state-of-the-art applications
of biomaterials, with chapters that exemplify approaches with
targeted drug delivery, diabetes, neurodegenerative diseases and
cranioplasty implants. Expert contributors analyze biomaterials
such as calcium phosphate, sol-gel and quenched glasses, metallic
and polymer implants, bioactive glass, and polymer composites while
also covering important areas such as the soft tissue replacement,
apatites, bone regeneration and cell encapsulation. This book is
appropriate for biomedical engineers, materials scientists, and
clinicians who are seeking to implement the most advanced
approaches and technologies with their patients.
This book describes the history, origin and basic characteristics
of bioactive materials. It includes a chapter dedicated to
hydroxyapatite mineral, its formation and its bioactive properties.
The authors address how cytotoxicity is a determining step for
bioactivity. Applications of bioactive materials in the contexts of
tissue regeneration, bone regeneration and cancer therapy are also
covered. Silicate, metallic and mesoporous glasses are described,
as well as the challenges and future prospects of research in this
field.
This book examines the most novel and state-of-the-art applications
of biomaterials, with chapters that exemplify approaches with
targeted drug delivery, diabetes, neurodegenerative diseases and
cranioplasty implants. Expert contributors analyze biomaterials
such as calcium phosphate, sol-gel and quenched glasses, metallic
and polymer implants, bioactive glass, and polymer composites while
also covering important areas such as the soft tissue replacement,
apatites, bone regeneration and cell encapsulation. This book is
appropriate for biomedical engineers, materials scientists, and
clinicians who are seeking to implement the most advanced
approaches and technologies with their patients.
This book describes the history, origin and basic characteristics
of bioactive materials. It includes a chapter dedicated to
hydroxyapatite mineral, its formation and its bioactive properties.
The authors address how cytotoxicity is a determining step for
bioactivity. Applications of bioactive materials in the contexts of
tissue regeneration, bone regeneration and cancer therapy are also
covered. Silicate, metallic and mesoporous glasses are described,
as well as the challenges and future prospects of research in this
field.
PEM Fuel Cells: Fundamentals, Advanced Technologies, and Practical
Application provides a comprehensive introduction to the principles
of PEM fuel cell, their working condition and application, and the
latest breakthroughs and challenges for fuel cell technology. Each
chapter follows a systematic and consistent structure with clear
illustrations and diagrams for easy understanding. The opening
chapters address the basics of PEM technology; stacking and
membrane electrode assembly for PEM, degradation mechanisms of
electrocatalysts, platinum dissolution and redeposition,
carbon-support corrosion, bipolar plates and carbon nanotubes for
the PEM, and gas diffusion layers. Thermodynamics, operating
conditions, and electrochemistry address fuel cell efficiency and
the fundamental workings of the PEM. Instruments and techniques for
testing and diagnosis are then presented alongside practical tests.
Dedicated chapters explain how to use MATLAB and COMSOL to conduct
simulation and modeling of catalysts, gas diffusion layers,
assembly, and membrane. Degradation and failure modes are discussed
in detail, providing strategies and protocols for mitigation.
High-temperature PEMs are also examined, as are the fundamentals of
EIS. Critically, the environmental impact and life cycle of the
production and storage of hydrogen are addressed, as are the risk
and durability issues of PEMFC technology. Dedicated chapters are
presented on the economics and commercialization of PEMFCs,
including discussion of installation costs, initial capital costs,
and the regulatory frameworks; apart from this, there is a separate
chapter on their application to the automotive industry. Finally,
future challenges and applications are considered. PEM Fuel Cells:
Fundamentals, Advanced Technologies, and Practical Application
provides an in-depth and comprehensive reference on every aspect of
PEM fuel cells fundamentals, ideal for researchers, graduates, and
students.
Intermediate Temperature Solid Oxide Fuel Cells: Electrolytes,
Electrodes and Interconnects introduces the fundamental principles
of intermediate solid oxide fuel cells technology. It provides the
reader with a broad understanding and practical knowledge of the
electrodes, pyrochlore/perovskite/oxide electrolytes and
interconnects which form the backbone of the Solid Oxide Fuel Cell
(SOFC) unit. Opening with an introduction to the thermodynamics,
physiochemical and electrochemical behavior of Solid Oxide Fuel
Cells (SOFC), the book also discusses specific materials, including
low temperature brownmillerites and aurivillius electrolytes, as
well as pyrochlore interconnects. This book analyzes the basic
concepts, providing cutting-edge information for both researchers
and students. It is a complete reference for Intermediate Solid
Oxide Fuel Cells technology that will be a vital resource for those
working in materials science, fuel cells and solid state chemistry.
Biomedical, Therapeutic and Clinical Applications of Bioactive
Glasses is an essential guide to bioactive glasses, offering an
overview of all aspects of the development and utilization of this
cutting-edge material. The book covers vital issues, including
mesoporosity, encapsulation technologies, scaffold formation and
coatings for a number of applications, including drug delivery,
encapsulation, scaffolds and coatings. Readers will gain a strong
understanding and practical knowledge of the therapeutic aspects of
bioceramics, with a focus on glasses from a clinical point-of-
view. Researchers, students and scientists involved in bioceramics,
bone tissue engineering, regeneration and biomedical engineering
will find this to be a comprehensive resource.
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