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Polymer Membranes/Biomembranes (Hardcover, 2010 ed.): Wolfgang Peter Meier, Wolfgang Knoll Polymer Membranes/Biomembranes (Hardcover, 2010 ed.)
Wolfgang Peter Meier, Wolfgang Knoll
R8,094 Discovery Miles 80 940 Ships in 10 - 15 working days

Themulticomponentnatureofbiologicalmembranesandtheirintra- andextracel- lar interactions make direct investigations on the membrane structure and processes nearly impossible. Clearly, a better understanding of the membrane properties and the mechanisms determining membrane protein functions is crucial to the imp- mentation of biosensors, bioreactors and novel platforms for medical therapy. For this reason, the interest in model systems suitable for the construction and study of complex lipid/protein membrane architectures has increased steadily over the years. The classical portfolio of model membranes used for biophysical and - terfacial studies of lipid (bi)layers and lipid/protein composites includes Langmuir monolayers assembled at the water/air interface, (uni- and multi-lamellar) vesicles in bulk (liposomal) dispersion, bimolecular lipid membranes (BLMs), and various types of solid-supported membranes. All these have speci?c advantages but also suffer from serious drawbacksthat limit their technical applications. Polymer m- branes comprised of entirely synthetic or hybrid (synthetic polymer/biopolymer) block copolymersappeared to be an attractive alternative to the lipid-based models. Generally, the synthetic block copolymer membranes are thicker and more stable and the versatility of polymer chemistry allows the adoption of relevant properties for a wide range of applications. This volume provides a vast overview of the physico-chemical and synthetic - pectsofarti?cial membranes. Numerousmembranemodelsaredescribed,including their properties(i. e. swelling, drying,lateral mobility,stability, electrical conduct- ity, etc. ), advantages, and drawbacks. The potential applications of these models are discussed and supported by real examples. Chapter 1 summarizesmethodsfor the stabilizationof arti?cial lipid membranes.

Odorant Binding and Chemosensory Proteins, Volume 642 (Hardcover): Paolo Pelosi, Wolfgang Knoll Odorant Binding and Chemosensory Proteins, Volume 642 (Hardcover)
Paolo Pelosi, Wolfgang Knoll
R5,230 R4,483 Discovery Miles 44 830 Save R747 (14%) Ships in 12 - 17 working days

This new volume of Methods in Enzymology continues the legacy of this premier serial with quality chapters authored by leaders in the field.

Polymer Membranes/Biomembranes (Paperback, 2010 ed.): Wolfgang Peter Meier, Wolfgang Knoll Polymer Membranes/Biomembranes (Paperback, 2010 ed.)
Wolfgang Peter Meier, Wolfgang Knoll
R8,054 Discovery Miles 80 540 Ships in 10 - 15 working days

Themulticomponentnatureofbiologicalmembranesandtheirintra- andextracel- lar interactions make direct investigations on the membrane structure and processes nearly impossible. Clearly, a better understanding of the membrane properties and the mechanisms determining membrane protein functions is crucial to the imp- mentation of biosensors, bioreactors and novel platforms for medical therapy. For this reason, the interest in model systems suitable for the construction and study of complex lipid/protein membrane architectures has increased steadily over the years. The classical portfolio of model membranes used for biophysical and - terfacial studies of lipid (bi)layers and lipid/protein composites includes Langmuir monolayers assembled at the water/air interface, (uni- and multi-lamellar) vesicles in bulk (liposomal) dispersion, bimolecular lipid membranes (BLMs), and various types of solid-supported membranes. All these have speci?c advantages but also suffer from serious drawbacksthat limit their technical applications. Polymer m- branes comprised of entirely synthetic or hybrid (synthetic polymer/biopolymer) block copolymersappeared to be an attractive alternative to the lipid-based models. Generally, the synthetic block copolymer membranes are thicker and more stable and the versatility of polymer chemistry allows the adoption of relevant properties for a wide range of applications. This volume provides a vast overview of the physico-chemical and synthetic - pectsofarti?cial membranes. Numerousmembranemodelsaredescribed,including their properties(i. e. swelling, drying,lateral mobility,stability, electrical conduct- ity, etc. ), advantages, and drawbacks. The potential applications of these models are discussed and supported by real examples. Chapter 1 summarizesmethodsfor the stabilizationof arti?cial lipid membranes.

Photoreactive Organic Thin Films (Hardcover): Zouheir Sekkat, Wolfgang Knoll Photoreactive Organic Thin Films (Hardcover)
Zouheir Sekkat, Wolfgang Knoll; Contributions by Lev M. Blinov, Tsuyoshi Kawai, Mikhail V. Kozlovsky, …
R4,203 Discovery Miles 42 030 Ships in 12 - 17 working days

Photoreactive thin films have been investigated extensively due to the advances in photonics, and the coupling between photochemistry and nonlinear optics has developed into a new discipline since the 1990s. Light can manipulate the orientation of optically sensitive chromophores containing polymeric thin films, and this phenomena has important applications to the field of opto-electronics and photonics especially in such areas as liquid crystals and optical storage of information.;Scientists from different communities have been working in this area representing such fields as chemistry, chemical engineering, polymer science and optics. The purpose of this books is to provide a comprehensive reference covering the basic fundamentals of the interdisciplinary research as well as the applications in photonics.

Graphene Field-Effect Transistors - Advanced Bioelectronic Devices for Sensing Applications (Hardcover): Omar Azzaroni,... Graphene Field-Effect Transistors - Advanced Bioelectronic Devices for Sensing Applications (Hardcover)
Omar Azzaroni, Wolfgang Knoll
R3,865 R3,212 Discovery Miles 32 120 Save R653 (17%) Ships in 9 - 15 working days

In-depth resource on making and using graphene field effect transistors for point-of-care diagnostic devices Graphene Field-Effect Transistors focuses on the design, fabrication, characterization, and applications of graphene field effect transistors, summarizing the state-of-the-art in the field and putting forward new ideas regarding future research directions and potential applications. After a review of the unique electronic properties of graphene and the production of graphene and graphene oxide, the main part of the book is devoted to the fabrication of graphene field effect transistors and their sensing applications. Graphene Field-Effect Transistors includes information on: Electronic properties of graphene, production of graphene oxide and reduced graphene oxide, and graphene functionalization Fundamentals and fabrication of graphene field effect transistors, and nanomaterial/graphene nanostructure-based field-effect transistors Graphene field-effect transistors integrated with microfluidic platforms and flexible graphene field-effect transistors Graphene field-effect transistors for diagnostics applications, and DNA biosensors and immunosensors based on graphene field-effect transistors Graphene field-effect transistors for targeting cancer molecules, brain activity recording, bacterial detection, and detection of smell and taste Providing both fundamentals of the technology and an in-depth overview of using graphene field effect transistors for fabricating bioelectronic devices that can be applied for point-of-care diagnostics, Graphene Field-Effect Transistors is an essential reference for materials scientists, engineering scientists, laboratory medics, and biotechnologists.

Organic Bioelectronics for Life Science and Healthcare (Paperback): Akio Yasuda, Wolfgang Knoll Organic Bioelectronics for Life Science and Healthcare (Paperback)
Akio Yasuda, Wolfgang Knoll
R2,813 Discovery Miles 28 130 Ships in 10 - 15 working days
Handbook of Biofunctional Surfaces (Hardcover): Wolfgang Knoll Handbook of Biofunctional Surfaces (Hardcover)
Wolfgang Knoll
R10,834 Discovery Miles 108 340 Ships in 12 - 17 working days

The design and synthesis of molecularly or supramolecularly defined interfacial architectures have seen in recent years a remarkable growth of interest and scientific research activities for various reasons. On the one hand, it is generally believed that the construction of an interactive interface between the living world of cells, tissue, or whole organisms and the (inorganic or organic) materials world of technical devices such as implants or medical parts requires proper construction and structural (and functional) control of this organism machine interface. It is still the very beginning of generating a better understanding of what is needed to make an organism tolerate implants, to guarantee bidirectional communication between microelectronic devices and living tissue, or to simply construct interactive biocompatibility of surfaces in general.
This exhaustive book lucidly describes the design, synthesis, assembly and characterization, and bio-(medical) applications of interfacial layers on solid substrates with molecularly or supramolecularly controlled architectures. Experts in the field share their contributions that have been developed in recent years.

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