activity
20172020
most citedWide-field spectral super-resolution mapping of optically active defects in hBN

90 citations · 145 across the 3 of their papers we have counts for

collaborators

5 papers

physics.app-ph2020

Super-resolved optical mapping of reactive sulfur-vacancy in 2D transition metal dichalcogenides

Miao Zhang, Martina Lihter, Michal Macha +8

Transition metal dichalcogenides (TMDs) represent an entire new class of semiconducting 2D materials with exciting properties. Defects in 2D TMDs can crucially affect their physica…

cond-mat.soft2019

Nanorheology of interfacial water during ice gliding

L. Canale, J. Comtet, A. Nigues +4

The slipperiness of ice is an everyday-life phenomenon which, surprisingly, remains controversial despite a long scientific history. The very small friction measured on ice is clas…

cond-mat.mes-hall2019

Direct observation of water mediated single proton transport between hBN surface defects

Jean Comtet, Benoit Grosjean, Evgenii Glushkov +6

Aqueous proton transport at interfaces is ubiquitous and crucial for a number of fields, ranging from cellular transport and signaling, to catalysis and membrane science. However,…

physics.optics201990 cited

Wide-field spectral super-resolution mapping of optically active defects in hBN

Jean Comtet, Evgenii Glushkov, Vytautas Navikas +6

Point defects can have significant impacts on the mechanical, electronic and optical properties of materials. The development of robust, multidimensional, high-throughput and large…

physics.bio-ph201755 cited

Passive phloem loading and long-distance transport in a synthetic tree-on-a-chip

Jean Comtet, Kaare H. Jensen, Robert Turgeon +2

Vascular plants rely on differences of osmotic pressure to export sugars from regions of synthesis (mature leaves) to sugar sinks (roots, fruits). In this process, known as Münch p…