Inorganic Nanoarchitectures by Organic Self-Assembly

Inorganic nanoarchitectures by organic self assembly
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Click on the cover image above to read some pages of this book! Macromolecular self-assembly - driven by weak, non-covalent, intermolecular forces - is a common principle of structure formation in natural and synthetic organic materials. The variability in material arrangement on the nanometre length scale makes this an ideal way of matching the structure-function demands of photonic and optoelectronic devices.

However, suitable soft matter systems typically lack the appropriate photoactivity, conductivity or chemically stability. This thesis explores the implementation of soft matter design principles for inorganic thin film nanoarchitectures.

Novel fabrication and characterization methods allow unprecedented control of material formation on the 10 - nm length scale, allowing the design of material architectures with interesting photonic and optoelectronic properties. Help Centre. My Wishlist Sign In Join. Be the first to write a review. Add to Wishlist. Citations Publications citing this paper. Nanopatterned protein-polysaccharide thin films by humidity regulated phase separation.

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Russell A Banta , Timothy W. Process measurement and control for exposure controlled projection lithography Xiayun Zhao. Phillips , Atef M. Design and implementation of an x-ray reflectometer system for testing x-ray optics coatings Danielle N. Gurgew , David M.

Broadway , Mikhail V. Gubarev , Brian D. References Publications referenced by this paper.

Inorganic nanoarchitectures by organic self assembly

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CHM 204 - Molecular representations

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Macromolecular self-assembly - driven by weak, non-covalent, intermolecular forces - is a common principle of structure formation in natural and synthetic. Guldin, S. (). Inorganic Nanoarchitectures by Organic Self Assembly ( Doctoral thesis). giuliettasprint.konfer.eu