Fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions

10.1039/c6ra27280k

Saved in:
Bibliographic Details
Main Authors: Senthil Kumar K., Jiang L., Nijhuis C.A.
Other Authors: CHEMISTRY
Format: Article
Published: 2020
Subjects:
Online Access:https://scholarbank.nus.edu.sg/handle/10635/173967
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: National University of Singapore
id sg-nus-scholar.10635-173967
record_format dspace
spelling sg-nus-scholar.10635-1739672024-11-14T14:46:30Z Fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions Senthil Kumar K. Jiang L. Nijhuis C.A. CHEMISTRY Atomic force microscopy Fabrication Ferromagnetic materials Ferromagnetism Interfaces (materials) Molecular electronics Nickel Self assembled monolayers Substrates Surface roughness Alkanethiolates Ambient environment Laboratory conditions Molecular spintronics Root Mean Square Template stripping Tunneling junctions Tunneling rates X ray photoelectron spectroscopy 10.1039/c6ra27280k RSC Advances 7 24 14544-14551 2020-09-02T06:43:13Z 2020-09-02T06:43:13Z 2017 Article Senthil Kumar K., Jiang L., Nijhuis C.A. (2017). Fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions. RSC Advances 7 (24) : 14544-14551. ScholarBank@NUS Repository. https://doi.org/10.1039/c6ra27280k 20462069 https://scholarbank.nus.edu.sg/handle/10635/173967 Unpaywall 20200831
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic Atomic force microscopy
Fabrication
Ferromagnetic materials
Ferromagnetism
Interfaces (materials)
Molecular electronics
Nickel
Self assembled monolayers
Substrates
Surface roughness
Alkanethiolates
Ambient environment
Laboratory conditions
Molecular spintronics
Root Mean Square
Template stripping
Tunneling junctions
Tunneling rates
X ray photoelectron spectroscopy
spellingShingle Atomic force microscopy
Fabrication
Ferromagnetic materials
Ferromagnetism
Interfaces (materials)
Molecular electronics
Nickel
Self assembled monolayers
Substrates
Surface roughness
Alkanethiolates
Ambient environment
Laboratory conditions
Molecular spintronics
Root Mean Square
Template stripping
Tunneling junctions
Tunneling rates
X ray photoelectron spectroscopy
Senthil Kumar K.
Jiang L.
Nijhuis C.A.
Fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions
description 10.1039/c6ra27280k
author2 CHEMISTRY
author_facet CHEMISTRY
Senthil Kumar K.
Jiang L.
Nijhuis C.A.
format Article
author Senthil Kumar K.
Jiang L.
Nijhuis C.A.
author_sort Senthil Kumar K.
title Fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions
title_short Fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions
title_full Fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions
title_fullStr Fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions
title_full_unstemmed Fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions
title_sort fabrication of ultra-smooth and oxide-free molecule-ferromagnetic metal interfaces for applications in molecular electronics under ordinary laboratory conditions
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/173967
_version_ 1821226752117047296