Article
Publicly Available
Control of deposition processes and structures of fibroin nanofilms by IR pulsed laser ablation
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Mamoru Senna
Mamoru SennaFaculty of Science and Technology, Keio University, 3-14-1 Hiyoshi, Yokohama 223-8522, JapanSearch for this author in:Sayuri NakayamaTechnofarm Axesz Co. Ltd., 3-45-4 Kamiishihara, Chofu, Tokyo 182-0035, JapanSearch for this author in:
Published/Copyright:
January 1, 2009
Published Online: 2009-01-01
Published in Print: 2008-01-01
© 2013 Walter de Gruyter GmbH, Berlin/Boston
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- Organic thin-film transistors of phthalocyanines
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- Development of novel linear, block, and branched oligoelectrolytes and functionally targeting nanoparticles
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- Energy from photobioreactors: Bioencapsulation of photosynthetically active molecules, organelles, and whole cells within biologically inert matrices
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- Catalytic behavior of unsupported Co materials in the reformation of ethanol to hydrogen: An in situ diffuse reflectance infrared Fourier transform (DRIFT)-mass spectrometry study
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- Cellular responses to novel, micropatterned biomaterials
- Electrochromics for energy efficiency and indoor comfort
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- Nanocrystalline silicon and carbon nanotube nanocomposites prepared by pulsed laser fragmentation
- Synthesis and electrochemical studies on surface-modified LiCoVO4 with La2O3 and malonic acid for cathode material of Li-ion cells
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Keywords for this article
fibroin;
nanostructure;
optical breakdown;
pulsed laser deposition;
thin films
Articles in the same Issue
- Preface
- Organic thin-film transistors of phthalocyanines
- Progress on the electrolytes for dye-sensitized solar cells
- Development of biodegradable nanosheets as nanoadhesive plaster
- Catalysis at the interface of nano-oxides and nanozeolites
- Nanostructured anode materials for Li-ion batteries
- Single-chain magnets constructed with a twisting arrangement of the easy-plane of iron(II) ions
- Development of novel linear, block, and branched oligoelectrolytes and functionally targeting nanoparticles
- Nanostructured manganese oxides and their composites with carbon nanotubes as electrode materials for energy storage devices
- Energy from photobioreactors: Bioencapsulation of photosynthetically active molecules, organelles, and whole cells within biologically inert matrices
- Polyaniline-carbon nanotube composites
- Catalytic behavior of unsupported Co materials in the reformation of ethanol to hydrogen: An in situ diffuse reflectance infrared Fourier transform (DRIFT)-mass spectrometry study
- Organic field-effect transistors based on tetrathiafulvalene derivatives
- Novel strategies for preparation and characterization of functional polymer-metal nanocomposites for electrochemical applications
- In situ transient study of polymer film growth via simultaneous correlation of charge, mass, and ellipsometric measurements
- Microemulsion route to the synthesis of nanoparticles
- Cellular responses to novel, micropatterned biomaterials
- Electrochromics for energy efficiency and indoor comfort
- Control of deposition processes and structures of fibroin nanofilms by IR pulsed laser ablation
- Nanocrystalline silicon and carbon nanotube nanocomposites prepared by pulsed laser fragmentation
- Synthesis and electrochemical studies on surface-modified LiCoVO4 with La2O3 and malonic acid for cathode material of Li-ion cells
- Novel-shaped LiNi1/3Co1/3Mn1/3O2 prepared by a hydroxide coprecipitation method
- B-site substituted lanthanum strontium ferrites as electrode materials for electrochemical applications
- Research on a gel polymer electrolyte for Li-ion batteries