Login
EN
[EN] English
[FR] Français
Login
EN
[EN] English
[FR] Français
Give us feedback
Search and explore
Search
Explore ORBilu
Open Science
Open Science
Open Access
Research Data Management
Definitions
OS Working group
Open Access Week 24
Statistics
Help
User Guide
FAQ
Publication list
Document types
Reporting
Training
Legal Information
Data protection
Legal notices
About
About ORBilu
Deposit Mandate
ORBilu team
Impact and visibility
About statistics
About metrics
OAI-PMH
Project history
Back
Home
Detailled Reference
Download
Article (Scientific journals)
Enhanced Optical Spectroscopy for Multiplexed DNA and Protein-Sequencing with Plasmonic Nanopores: Challenges and Prospects
Li, Wang
;
Zhou, Juan
;
MACCAFERRI, Nicolò
et al.
2022
•
In
Analytical Chemistry, 94
(2), p. 503-514
Peer Reviewed verified by ORBi
Permalink
https://hdl.handle.net/10993/49801
DOI
10.1021/acs.analchem.1c04459
PubMed
34974704
Files (1)
Send to
Details
Statistics
Bibliography
Similar publications
Files
Full Text
acs.analchem.1c04459.pdf
Publisher postprint (7.84 MB)
Download
All documents in ORBilu are protected by a
user license
.
Send to
RIS
BibTex
APA
Chicago
Permalink
X
Linkedin
copy to clipboard
copied
Details
Disciplines :
Physical, chemical, mathematical & earth Sciences: Multidisciplinary, general & others
Author, co-author :
Li, Wang
Zhou, Juan
MACCAFERRI, Nicolò
;
University of Luxembourg
Krahne, Roman
Wang, Kang
Garoli, Denis
External co-authors :
yes
Language :
English
Title :
Enhanced Optical Spectroscopy for Multiplexed DNA and Protein-Sequencing with Plasmonic Nanopores: Challenges and Prospects
Publication date :
2022
Journal title :
Analytical Chemistry
ISSN :
0003-2700
eISSN :
1520-6882
Publisher :
American Chemical Society, Washington, United States - District of Columbia
Volume :
94
Issue :
2
Pages :
503-514
Peer reviewed :
Peer Reviewed verified by ORBi
Additional URL :
https://pubs.acs.org/doi/full/10.1021/acs.analchem.1c04459
FnR Project :
FNR13624497 - Ultrafast Coherent Hybridization Of Photons And Spins In Multi-functional Magnetoplasmonic Metamaterials, 2019 (01/01/2020-31/12/2022) - Daniele Brida
Available on ORBilu :
since 20 January 2022
Statistics
Number of views
76 (4 by Unilu)
Number of downloads
182 (1 by Unilu)
More statistics
Scopus citations
®
47
Scopus citations
®
without self-citations
27
OpenCitations
5
OpenAlex citations
36
WoS citations
™
32
Bibliography
Similar publications
Contact ORBilu