„Patterning“
Suchergebnisse
3.996 Treffer
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Inkjet Printing of Oxidants for Patterning of Nanometer‐Thick Conducting Polymer Electrodes †
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Patterning a Poly (3,4‐ethylenedioxythiophene) Thin Film Using a Liquid Crystalline Network †
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Contact Electrochemical Replication of Electrochemically Printed Monolayer Patterns †
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Directed Assembly of Nanoparticles onto Polymer‐Imprinted or Chemically Patterned Templates Fabricated by Nanoimprint Lithography †
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Patterning of Conducting Polymers Based on a Random Copolymer Strategy: Toward the Facile Fabrication of Nanosensors Exclusively Based on Polymers †
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Fugitive Inks for Direct‐Write Assembly of Three‐Dimensional Microvascular Networks †
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Nanostructured Polyelectrolyte Multilayer Organic Thin Films Generated via Parallel Dip‐Pen Nanolithography †
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Titelbild: Patterning through Controlled Submolecular Motion: Rotaxane‐Based Switches and Logic Gates that Function in Solution and Polymer Films (Angew. Chem. 20/2005)
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Site‐Directed Immobilization of Proteins Through Electrochemical Deprotection on Electroactive Self‐Assembled Monolayers
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Patterning of Semiconductor Nanoparticles via Microcontact Printing
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Patterning microbeads inside poly (dimethylsiloxane) microfluidic channels and its application for immobilized microfluidic enzyme reactors
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Improvement of the Electrical Conductivity between Electrode and Sheet in Spot Welding Process by Direct Laser Interference Patterning
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Photo‐Controllable Persistent Luminescence in Doped Polymers for Reversible High‐Resolution Patterning and Multiple Stimuli‐Response
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Positive‐ and Negative‐Tone CVD Polyacrylic Electron‐Beam Resists Developable by Supercritical CO 2 †
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pH Tunable Patterning of Quantum Dots
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Orientation‐Controlled Growth of Single‐Crystal Silicon‐Nanowire Arrays †
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Photolithographic Patterning of Ring‐Opening Metathesis Catalysts on Silicon †
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Self‐Assembly and Micropatterning of Spherical‐Particle Assemblies †
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Microarrays of Peptide Fibrils Created by Electrostatically Controlled Deposition †
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Biologically Active Protein Nanoarrays Generated Using Parallel Dip‐Pen Nanolithography †