about
A multivariate approach to correlate bacterial surface properties to biofilm formation by lipopolysaccharide mutants of Pseudomonas aeruginosa.Self-Assembled PCBM Nanosheets: A Facile Route to Electronic Layer-on-Layer Heterostructures.Ultralow Percolation Threshold in Nanoconfined Domains.In situ probing of the crystallization kinetics of rr-P3HT on single layer graphene as a function of temperature.SWNT nano-engineered networks strongly increase charge transport in P3HT.Graphene induced electrical percolation enables more efficient charge transport at a hybrid organic semiconductor/graphene interface.Influence of Sb5+ as a Double Donor on Hematite (Fe3+) Photoanodes for Surface-Enhanced Photoelectrochemical Water Oxidation.Nano-engineering of SWNT networks for enhanced charge transport at ultralow nanotube loading
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P50
description
researcher ORCID ID = 0000-0002-3881-6764
@en
name
Nicolas Boulanger
@ast
Nicolas Boulanger
@en
Nicolas Boulanger
@es
Nicolas Boulanger
@nl
type
label
Nicolas Boulanger
@ast
Nicolas Boulanger
@en
Nicolas Boulanger
@es
Nicolas Boulanger
@nl
prefLabel
Nicolas Boulanger
@ast
Nicolas Boulanger
@en
Nicolas Boulanger
@es
Nicolas Boulanger
@nl
P21
P31
P496
0000-0002-3881-6764