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Springer Methods of the Alignment-Relay Technique for Nanosystems

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Description

Explore advanced nanotechnology research with this Springer thesis focused on the Alignment-Relay Technique (ART) for nanosystems. This academic work addresses the critical challenge of improving carbon nanotube (CNT) alignment within transistor applications. By utilizing a unique approach involving iptycenes as molecular tweezers combined with a liquid crystal solvent, the research provides deep insights into the optimization and innovation of these processes. This publication contributes significant evidence regarding the selectivity and stability of the ART method. It provides the first proof-of-concept for using ART to create carbon nanotube field-effect transistors (FETs). The text effectively explains and illustrates the chemical processes involved, making it a valuable resource for researchers and professionals in the field of nanotechnology and transistor development. This thesis is part of the prestigious Springer Theses series, ensuring high academic standards for technical reference.

Key Features

Addresses carbon nanotube alignment problems in transistor applications through innovative methods.

Provides a unique approach using iptycenes acting as molecular tweezers with liquid crystal solvents.

Offers evidence for the selectivity and stability of the Alignment-Relay Technique (ART).

Delivers the first proof-of-concept for using ART to create CNT field-effect transistors (FETs).

Contains detailed explanations and illustrations of the chemical processes involved in nanosystems.

Part of the Springer Theses series for high-level technical and academic research.

Product Specifications

Colour
Sd-mo22
Size
7' X 8'
Format
paperback
Domain
Amazon UK
Release Date
10 November 2022
Listed Since
20 August 2020

Barcode

No barcode data available

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