株式会社極東書店トップ商品一覧Gyroid Optical Metamaterials: Solvent Vapour Annealing, Confined Crystallisation, and Optical Anisotropy. 1st ed. 2018

商品詳細

Gyroid Optical Metamaterials: Solvent Vapour Annealing, Confined Crystallisation, and Optical Anisotropy. 1st ed. 2018

Gyroid Optical Metamaterials: Solvent Vapour Annealing, Confined Crystallisation, and Optical Anisotropy. 1st ed. 2018

・ISBN 978-3-030-03010-0 hard EUR 99.99

¥26,726.- (税込) (※)価格はご注文時の参考価格となります。
納品価格につきましては書籍の入荷時点で確定となります。
版元の原価改定、外国為替の変動等により異なる場合がございますので、予めご了承下さい。

お気に入り
著者・編者Dolan, James A.,
シリーズ (Springer Theses)
出版社 (Springer Nature Switzerland AG, SZ)
出版年月2018
ページ数132 pp.
言語ENG
ニュース番号<A02-79004>

解説

This thesis explores the fabrication of gyroid-forming block copolymer templates and the optical properties of the resulting gyroid optical metamaterials, significantly contributing to our understanding of both. It demonstrates solvent vapour annealing to improve the long-range order of the templates, and investigates the unique crystallisation behaviour of their semicrystalline block. Furthermore, it shows that gyroid optical metamaterials that exhibit only short-range order are optically equivalent to nanoporous gold, and that the anomalous linear dichroism of gyroid optical metamaterials with long-range order is the result of the surface termination of the bulk gyroid morphology.

Optical metamaterials are artificially engineered materials that, by virtue of their structure rather than their chemistry, may exhibit various optical properties not otherwise encountered in nature (e.g. a negative refractive index). However, these structures must be significantly smaller than the wavelength of visible light and are therefore challenging to fabricate using traditional "top down" techniques. Instead, a "bottom up" approach can be used, whereby optical metamaterials are fabricated via templates created by the self-assembly of block-copolymers. One such morphology is the gyroid, a chiral, continuous and triply periodic cubic network found in a range of natural and synthetic self-assembled systems.