Ordered Porous Nanostructures and Applications

Ordered porous nanostructures have emerged in the last ten years in different kinds of materials and with different pore diameters and interpore spacing. This book reviews in the first part which kinds of materials exhibit ordered nanopores and what are the physico-chemical reasons for it. In the se...

Description complète

Enregistré dans:
Détails bibliographiques
Auteur principal : Wehrspohn Ralf B. (Auteur)
Format : Livre
Langue : anglais
Titre complet : Ordered Porous Nanostructures and Applications / by Ralf B. Wehrspohn.
Édition : 1st ed. 2005.
Publié : New York, NY : Springer US , [20..]
Cham : Springer Nature
Collection : Nanostructure science and technology (Internet)
Titre de l'ensemble : Nanostructure Science and Technology
Accès en ligne : Accès Nantes Université
Accès direct soit depuis les campus via le réseau ou le wifi eduroam soit à distance avec un compte @etu.univ-nantes.fr ou @univ-nantes.fr
Note sur l'URL : Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Condition d'utilisation et de reproduction : Conditions particulières de réutilisation pour les bénéficiaires des licences nationales : https://www.licencesnationales.fr/springer-nature-ebooks-contrat-licence-ln-2017
Contenu : Materials and Preparations. Electrochemical Pore Array Fabrication on n-Type Silicon Electrodes. Macropores in p-Type Silicon. Highly Ordered Nanohole Arrays in Anodic Porous Alumina. The Way to Uniformity in Porous III V Compounds via Self-Organization and Lithography Patterning. Microporous Honeycomb-Structured Polymer Films. From Nanosize Silica Spheres to Three-Dimensional Colloidal Crystals. Applications. Macroporous Silicon Photonic Crystals. High-Density Nickel Nanowire Arrays. Porous Silicon for Micromachining
Sujets :
Documents associés : Autre format: Ordered Porous Nanostructures and Applications
Autre format: Ordered Porous Nanostructures and Applications
Autre format: Total quality management
Autre format: Ordered Porous Nanostructures and Applications
Autre format: Ordered Porous Nanostructures and Applications
Autre format: Total quality management
Autre format: Ordered Porous Nanostructures and Applications
LEADER 05107clm a2200721 4500
001 PPN123070694
003 http://www.sudoc.fr/123070694
005 20241002155900.0
010 |a 978-0-387-25193-6 
017 7 0 |a 10.1007/b106900  |2 DOI 
035 |a (OCoLC)647109984 
035 |a Springer978-0-387-25193-6 
035 |a SPRINGER_EBOOKS_LN_PLURI_10.1007/b106900 
035 |a Springer-11644-978-0-387-25193-6 
100 |a 20080409f20 u y0frey0103 ba 
101 0 |a eng  |2 639-2 
102 |a US 
135 |a dr||||||||||| 
181 |6 z01  |c txt  |2 rdacontent 
181 1 |6 z01  |a i#  |b xxxe## 
182 |6 z01  |c c  |2 rdamedia 
182 1 |6 z01  |a b 
183 |6 z01  |a ceb  |2 RDAfrCarrier 
200 1 |a Ordered Porous Nanostructures and Applications  |f by Ralf B. Wehrspohn. 
205 |a 1st ed. 2005. 
214 0 |a New York, NY  |c Springer US 
214 2 |a Cham  |c Springer Nature  |d [20..] 
225 1 |a Nanostructure Science and Technology  |x 2197-7976 
327 1 |a Materials and Preparations  |a Electrochemical Pore Array Fabrication on n-Type Silicon Electrodes  |a Macropores in p-Type Silicon  |a Highly Ordered Nanohole Arrays in Anodic Porous Alumina  |a The Way to Uniformity in Porous III V Compounds via Self-Organization and Lithography Patterning  |a Microporous Honeycomb-Structured Polymer Films  |a From Nanosize Silica Spheres to Three-Dimensional Colloidal Crystals  |a Applications  |a Macroporous Silicon Photonic Crystals  |a High-Density Nickel Nanowire Arrays  |a Porous Silicon for Micromachining 
330 |a Ordered porous nanostructures have emerged in the last ten years in different kinds of materials and with different pore diameters and interpore spacing. This book reviews in the first part which kinds of materials exhibit ordered nanopores and what are the physico-chemical reasons for it. In the second part, this book discusses the possible applications from photonic crystals via high-throughput screening to metallic and polymer-nanowire arrays and their use in the case of ferromagnetic wires as high-density magnetic storage medium. This book reviews the most interesting materials on the market concerning self-ordering, including: macroporous silicon, porous alumina, MCM41 and photonic bandgap materials, which is one of the hottest topics in optics and nano-technology in the last five years, according to Science magazine. In computer applications, these structures enable significantly higher storage densities than are possible with thin film media. Moreover, these structures find uses in template fabrication for nanowire-arrays, high-throughput screening, lab-on-a-chip, ULSI circuitry for trenches and capacitors 
371 0 |a Accès en ligne pour les établissements français bénéficiaires des licences nationales 
371 0 |a Accès soumis à abonnement pour tout autre établissement 
371 1 |a Conditions particulières de réutilisation pour les bénéficiaires des licences nationales  |c https://www.licencesnationales.fr/springer-nature-ebooks-contrat-licence-ln-2017 
410 | |0 174289189  |t Nanostructure science and technology (Internet)  |x 2197-7976 
452 | |t Ordered Porous Nanostructures and Applications  |b Texte imprimé  |y 9780387235417 
452 | |t Ordered Porous Nanostructures and Applications  |b Texte imprimé  |y 9781441936370 
452 | |0 105660353  |t Total quality management  |o an IFS executive briefing  |f edited by Rory L. Chase  |c Kempston, Bedford, England  |n IFS Publications  |n Springer-Verlag  |d 1988  |p 208 p.  |y 1-85423-000-X 
452 | |t Ordered Porous Nanostructures and Applications  |b Texte imprimé  |y 9780387235417 
452 | |t Ordered Porous Nanostructures and Applications  |b Texte imprimé  |y 9781441936370 
452 | |0 105660353  |t Total quality management  |o an IFS executive briefing  |f edited by Rory L. Chase  |c Kempston, Bedford, England  |n IFS Publications  |n Springer-Verlag  |d 1988  |p 208 p.  |y 1-85423-000-X 
452 | |t Ordered Porous Nanostructures and Applications  |b Texte imprimé  |y 9780387235417 
610 1 |a Chemistry 
610 2 |a Optics, Optoelectronics, Plasmonics and Optical Devices 
610 2 |a Biotechnology 
610 2 |a Nanotechnology 
610 2 |a Optical and Electronic Materials 
610 2 |a Physical Chemistry 
610 2 |a Optics, Lasers, Photonics, Optical Devices 
615 |a @Chemistry and Materials Science  |n 11644; ZDB-2-CMS  |2 Springer 
676 |a 660.6  |v 23 
680 |a TP248.13-248.65 
700 1 |a Wehrspohn  |b Ralf B.  |4 070 
801 3 |a FR  |b Abes  |c 20240911  |g AFNOR 
801 1 |a DE  |b Springer  |c 20211203  |g AACR2 
856 4 |q PDF  |u https://doi.org/10.1007/b106900  |z Accès sur la plateforme de l'éditeur 
856 4 |u https://revue-sommaire.istex.fr/ark:/67375/8Q1-G3DLGHTH-3  |z Accès sur la plateforme Istex 
856 4 |5 441099901:830926445  |u https://budistant.univ-nantes.fr/login?url=https://doi.org/10.1007/b106900 
915 |5 441099901:830926445  |b SPRING4-00016 
930 |5 441099901:830926445  |b 441099901  |j g 
979 |a NUM 
991 |5 441099901:830926445  |a Exemplaire créé en masse par ITEM le 01-10-2024 15:44 
997 |a NUM  |b SPRING4-00016  |d NUMpivo  |e EM  |s d 
998 |a 980032