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Plasmonic Components Fabricated by Two-Photon Polymerization and Nanoimprint Lithography

Plasmonic Components Fabricated by Two-Photon Polymerization and Nanoimprint Lithography is een boek van Seidel, Andreas;

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Advanced Nanofabrication Procedures and Applications

of nanolithography. It covers various aspects related to electron and ion beam, nanoimprint, interference, two-photon, UV and X-ray lithography. Most;

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Nanoimprint Lithography

Nanoimprint Lithography: An enabling process for nanofabrication presents a comprehensive description of nanotechnology that is one of the;

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Quantum Metrology, Imaging, and Communication

and by reference to experiments which demonstrate their principles in practice. The particular techniques explored include two-photon;

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Polymerization

of vinyl monomers; plant cell wall polymers; block and graft copolymerization by living/controlled polymerization; emulsion polymerization;

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Advances in Nanotechnology

environmental risk; the polymer filling process in nanoimprint lithography performed by molecular dynamics simulation; the optical properties and sizes;

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Nanoimprint Technology

, nanoimprint lithography and micro contact printing are also discussed. Cutting-edge nanotransfer technologies and applications are also considered and;

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Surface Plasmon Resonance Based Mems Displacement Sensors

techniques (nanoimprint, electron beam and optical lithography) are used to nanofabricate those certainly defined gratings. MEMS displacement sensor;

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Nontraditional Approaches to Patterning

-assembly, two-photon absorption and interference lithography) with tailored shape, size, and chemistry provides unparalleled control over material;

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Adhesives

; electrically conductive adhesives; anti-adhesive layers for nanoimprint lithography; the static and fatigue strength of interference fitted connections;

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Three-Dimensional Microfabrication Using Two-Photon Polymerization

Three-Dimensional Microfabrication Using Two-Photon Polymerization, Second Edition offers a comprehensive guide to TPP microfabrication;

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Lithography

Lithography is now a complex tool at the heart of a technological process for manufacturing micro and nanocomponents. A multidisciplinary;

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Microlithography

of theoretical and operational considerations, from fundamental principles to advanced topics of nanoscale lithography. The book is divided into chapters;

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Fabrication of Micro-Axicons by Laser Lithography

, a diffractive optical approach to axicons is suggested, which can be fabricated by using laser direct writing lithography. The manufactured;

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Nano Lithography

-ray and NanoImprint lithography, as well as techniques using scanning probe microscopy and the optical properties of metal nanostructures;

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Singular and Chiral Nanoplasmonics

Plasmonics has already revolutionized molecular imaging, cancer research, optical communications, sensing, spectroscopy, and metamaterials;

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Plasmonic Sensors and their Applications

sensitive and selective plasmonic sensing platforms in chemistry, biotechnology, and medicine. Contributions by an international panel of experts;

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Fundamental Principles Of Optical Lithography

insulators are used to connect and isolate transistors and their components. By creating structures of these various components millions;

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Reversible Deactivation Radical Polymerization

polymerization have been announced and it is anticipated that new products made by controlled/living radical polymerization will soon be on the market.;

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Reversible Deactivation Radical Polymerization

polymerization have been announced and it is anticipated that new products made by controlled/living radical polymerization will soon be on the market.;

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Solution and Surface Polymerization

Comprising one volume of Functional and Modified Polymeric Materials, Two-Volume Set, this well-organized collection of papers by Professor;

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Plasma Etching Processes for CMOS Devices Realization

with new patterning techniques such as multiple patterning, EUV lithography, Direct Self Assembly, ebeam lithography or nanoimprint lithography;

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Two-Dimensional Periodic Nanoscale Patterning of Solid Surfaces by Four-Beam Standing Wave Excimer Laser Lithography

solid surfaces by direct two- and four-beam standing wave pulsed laser modification. This method being developed extensively at present is very;

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Quantum Plasmonics

, including waveguide quantum electrodynamics, quantum emitters, strong-coupling phenomena and lasing in plasmonic structures. Different approaches;

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Modified Au Based Nanomaterials Studied by Surface Plasmon Resonance Spectroscop

of surface plasmon resonance and X-rays. SPR spectroscopy is employed to study Au-based plasmonic nanostructures fabricated by novel methods, and a;

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Handbook of Radical Polymerization

functions as a single reference of the conventional and controlled/living radical polymerization methods. Two expert editors collect and present;

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Three-Dimensional Microfabrication Using Two-Photon Polymerization

Three-Dimensional Microfabrication Using Two-Photon Polymerization (TPP) is the first comprehensive guide to TPP microfabrication;

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