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Polaritons in Periodic and Quasiperiodic Structures (Hardcover, New): Eudenilson L. Albuquerque, Michael G. Cottam Polaritons in Periodic and Quasiperiodic Structures (Hardcover, New)
Eudenilson L. Albuquerque, Michael G. Cottam
R3,816 Discovery Miles 38 160 Ships in 12 - 17 working days

In recent years there have been exciting developments in techniques for producing multilayered structures of different materials, often with thicknesses as small as only a few atomic layers. These artificial structures, known as superlattices, can either be grown with the layers stacked in an alternating fashion (the periodic case) or according to some other well-defined mathematical rule (the quasiperiodic case). This book describes research on the excitations (or wave-like behavior) of these materials, with emphasis on how the material properties are coupled to photons (the quanta of the light or the electromagnetic radiation) to produce mixed waves called polaritons.
.Clear and comprehensive account of polaritons in multilayered structures
.Covers both periodic and quasiperiodic superlattices
.Careful attention to theoretical developments and tools
.Invaluable guide for researchers in this field
.Shows developments from the basics to advanced topics

Quantum Chemistry Simulation of Biological Molecules (Hardcover): Eudenilson L. Albuquerque, Umberto L. Fulco, Ewerton W. S.... Quantum Chemistry Simulation of Biological Molecules (Hardcover)
Eudenilson L. Albuquerque, Umberto L. Fulco, Ewerton W. S. Caetano, Valder N. Freire
R1,974 Discovery Miles 19 740 Ships in 12 - 17 working days

Nano-biotechnology crosses the boundaries between physics, biochemistry and bioengineering, and has profound implications for the biomedical engineering industry. This book describes the quantum chemical simulation of a wide variety of molecular systems, with detailed analysis of their quantum chemical properties, individual molecular configurations, and cutting-edge biomedical applications. Topics covered include the basic properties of quantum chemistry and its conceptual foundations, the nanoelectronics and thermodynamics of DNA, the optoelectronic properties of the five DNA/RNA nucleobase anhydrous crystals, and key examples of molecular diode prototypes. A wide range of important applications are described, including protein binding of drugs such as cholesterol-lowering, anti-Parkinson and anti-migraine drugs, and recent developments in cancer biology are also discussed. This modern and comprehensive text is essential reading for graduate students and researchers in multidisciplinary areas of biological physics, chemical physics, chemical engineering, biochemistry and bioengineering.

Quantum Chemistry Methods for Oncological Drugs: Eudenilson L. Albuquerque Quantum Chemistry Methods for Oncological Drugs
Eudenilson L. Albuquerque
R4,194 Discovery Miles 41 940 Ships in 9 - 15 working days

Quantum Chemistry Methods for Oncological Drugs provides a comprehensive reference text for student, researchers, and academic staff across disciplines working in the field of Nanobiotechnology, who need to grasp the unique inter-relationship of the physical, chemical, and biological properties of oncological drugs and their interactions. It provides a theoretical/computational framework based on quantum chemistry and addresses key questions in which detailed analysis and precise predictions are always required. The sophisticated molecular recognition of various natural biological materials has been used in the formation of a complex network of structures potentially useful for a variety of pharmaceutical applications. They offer solutions to many of the obstacles that need to be overcome, with accuracy not feasible with the technologies usually available in materials science. Important common challenges presented in this book are aspects related to the biology of cancer using our immunological checking points, specialized proteins that act as brakes in the immune system, allowing it to recognize and attack more efficiently only the cancer cells, avoiding the destruction of healthy cells as in conventional chemotherapy and radiotherapy treatments. This book is devoted to this burgeoning area of Nanobiotechnology for oncological drugs and will be valuable in covering the new developments that have occurred in the last decade or so. It is aimed at graduate students, faculty members and other researchers in physics, chemistry, biology, pharmacology, and medicine.

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